Deforestation in Bolivia, in June 2014
Deforestation in the Maranhão state, Brazil, in July 2016

The Amazon rainforest, spanning an area of 3,000,000 km2 (1,200,000 sq mi), is the world's largest rainforest. It encompasses the largest and most biodiverse tropical rainforest on the planet, representing over half of all rainforests. The Amazon region includes the territories of nine nations, with Brazil containing the majority (60%), followed by Peru (13%), Colombia (10%), and smaller portions in Venezuela, Ecuador, Bolivia, Guyana, Suriname, and French Guiana.

Over one-third of the Amazon rainforest is designated as formally acknowledged indigenous territory, amounting to more than 3,344 territories. Historically, indigenous Amazonian peoples have relied on the forest for various needs such as food, shelter, water, fiber, fuel, and medicines. The forest holds significant cultural and cosmological importance for them. Despite external pressures, deforestation rates are comparatively lower in indigenous territories.[1]

By the year 2022 around 26% of the forest was considered as deforested or highly degraded.[2]

Cattle ranching in the Brazilian Amazon has been identified as the primary cause of deforestation,[3] accounting for about 80% of all deforestation in the region.[4][5] This makes it the world's largest single driver of deforestation, contributing to approximately 14% of the global annual deforestation.[6] Government tax revenue has subsidized much of the agricultural activity leading to deforestation.[7] By 1995, 70% of previously forested land in the Amazon and 91% of land deforested since 1970 had been converted for cattle ranching.[8] The remaining deforestation primarily results from small-scale subsistence agriculture[9] and mechanized cropland producing crops such as soy and palm.[10]

Satellite data from 2018 revealed a decade-high rate of deforestation in the Amazon,[11] with approximately 7,900 km2 (3,100 sq mi) destroyed between August 2017 and July 2018. The states of Mato Grosso and Pará experienced the highest levels of deforestation during this period. Illegal logging was cited as a cause by the Brazilian environment minister, while critics highlighted the expansion of agriculture as a factor encroaching on the rainforest.[12] Researchers warn that the forest may reach a tipping point where it cannot generate sufficient rainfall to sustain itself.[13] In the first 9 months of 2023 deforestation rate declined by 49.5% due to the policy of Lula's government and international help.[14]

History

In the pre-Columbian era, certain parts of the Amazon rainforest were densely populated and cultivated. However, European colonization in the 16th century, driven by the pursuit of gold and later by the rubber boom, depopulated the region due to diseases and slavery, leading to forest regrowth.[15]

Until the 1970s, access to the largely roadless interior of the forest was challenging, and it remained mostly intact apart from partial clearing along the rivers.[16] Deforestation escalated after the construction of highways penetrating deep into the forest, such as the Trans-Amazonian Highway in 1972.

Challenges arose in parts of the Amazon where poor soil conditions made plantation-based agriculture unprofitable. The crucial turning point in deforestation occurred when colonists began establishing farms within the forest during the 1960s. Their farming practices relied on crop cultivation and the slash-and-burn method. However, due to soil fertility loss and weed invasion, the colonists struggled to effectively manage their fields and crops.[17]

Indigenous areas in the Peruvian Amazon, like the Urarina's Chambira River Basin,[18] experience limited soil productivity, leading to the continual clearing of new lands by indigenous horticulturalists.[17] Cattle raising dominated Amazonian colonization as it required less labor, generated acceptable profits, and involved land under state ownership.[19] While promoted as a reforestation measure, the privatization of land was criticized for potentially encouraging further deforestation[20] and disregarding the rights of Peru's indigenous people, who typically lack formal title to land.[21][22] The associated law, known as Law 840, faced significant resistance and was eventually repealed as unconstitutional.[21]

Illegal deforestation in the Amazon increased in 2015 after decades of decline, driven primarily by consumer demand for products like palm oil.[23] Brazilian farmers clear land to accommodate the growing demand for crops such as palm oil and soy.[24] Deforestation releases significant amounts of carbon, and if current levels continue, the remaining forests worldwide could disappear within 100 years.[23] The Brazilian government implemented the RED (reducing emissions from deforestation and forest degradation) program to combat deforestation,[25] providing support to various African countries through education programs and financial contributions.[25]

In January 2019, Brazil's president, Jair Bolsonaro, issued an executive order granting the agriculture ministry oversight over certain Amazon lands.[26] This decision has been supported by cattle ranchers and mining companies but criticized for endangering indigenous populations and contributing to Brazil's relative contribution to global climate change.

Reports from the year 2021 indicated a 22% increase in deforestation from the previous year, reaching the highest level since 2006.[27][28]

Causes of deforestation

Drivers of forest loss in the Brazilean Amazon. The expansion of agricultural land to raise cattle is by far the most important driver.
Deforestation in Colombia
One consequence of forest clearing in the Amazon: thick smoke that hangs over the forest
Illegal gold mining in the Amazon in Madre de Dios, Peru, 2019

The deforestation of the Amazon rainforest is influenced by various factors at local, national, and international levels. The rainforest is sought after for purposes such as cattle ranching, the extraction of valuable hardwoods, land for housing and farming (especially soybeans), the construction of roads (including highways and smaller roads), and the collection of medicinal resources. Deforestation in Brazil is also linked to an economic growth model focused on accumulating factors, primarily land, rather than enhancing overall productivity.[29] It is important to note that illegal logging is a common practice in tree removal during deforestation.

Cattle ranching

According to a 2004 World Bank paper and a 2009 Greenpeace report, cattle ranching in the Brazilian Amazon, supported by the international beef and leather trades, has been identified as responsible for approximately 80% of deforestation in the region.[5][4] This accounts for about 14% of the world's total annual deforestation, making it the largest driver of deforestation globally.[6] The Food and Agriculture Organization of the United Nations reported in 2006 that 70% of previously forested land in the Amazon, as well as 91% of land deforested since 1970, is now used for livestock pasture.[30][31] The 2019 European Union-Mercosur Free Trade Agreement, which establishes one of the world's largest free trade areas, has faced criticism from environmental activists and advocates for indigenous rights.[32][33] They argue that the trade agreement will contribute to further deforestation of the Amazon rainforest by expanding market access for Brazilian beef.[34]

During Jair Bolsonaro's government, certain environmental laws were weakened, accompanied by reductions in funding and personnel in key government agencies[35] and the dismissal of agency heads and state bodies.[36] The deforestation of the Amazon rainforest accelerated during the COVID-19 pandemic in Brazil.[37][38] According to Brazil's National Institute for Space Research (INPE), deforestation in the Brazilian Amazon increased by more than 50% in the first three months of 2020 compared to the same period in 2019.[39]

Soy bean

Deforestation in the Amazon has occurred as a result of farmers clearing land for mechanized cropland. A study based on NASA satellite data in 2006 revealed that the clearing of land for mechanized cropland had become a significant factor in deforestation in the Brazilian Amazon. This change in land use has had an impact on the region's climate. Researchers discovered that in 2004, a peak year for deforestation, over 20% of the forests in the state of Mato Grosso were converted to cropland.[10] In 2005, when soybean prices decreased by more than 25%, certain areas of Mato Grosso showed a decline in large-scale deforestation events, suggesting that price fluctuations of other crops, beef, and timber could also have a notable influence on future land use in the region.[10]

The cultivation of soybeans, primarily for export and the production of biodiesel and animal feed, has been a significant driver of forest loss in the Amazon.[40] As soybean prices have risen, soy farmers have expanded their activities into forested areas of the Amazon.[41] However, the implementation of a private sector agreement known as the Soy Moratorium has played a crucial role in significantly reducing deforestation associated with soy production in the region. In 2006, several major commodity trading companies, including Cargill, pledged not to purchase soybeans produced in recently deforested areas of the Brazilian Amazon. Prior to the moratorium, 30% of soy field expansion was linked to deforestation, contributing to record-high deforestation rates. After eight years of the moratorium, a study conducted in 2015 found that although the soy production area had expanded by 1.3 million hectares, only about 1% of the new soy expansion had occurred at the expense of forests. In response to the moratorium, farmers opted to plant crops on already cleared land.[41]

The perceived needs of soy farmers have been used to justify certain controversial transportation projects that have been developed in the Amazon.[16] The Belém-Brasília highway (1958) and the Cuiabá-Porto Velho highway (1968) were the only federal highways in the Legal Amazon region that were paved and accessible year-round before the late 1990s. These two highways are considered to be central to the "arc of deforestation," which is presently the primary area of deforestation in the Brazilian Amazon. The Belém-Brasília highway attracted nearly two million settlers in its first twenty years. The success of this highway in opening up the forest was replicated as additional paved roads were constructed, leading to an unstoppable wave of settlement. The completion of these roads was followed by a significant influx of settlers, who also had a substantial impact on the forest.[42]

Deforestation for cattle production in Venezuela, 2015.

Logging

Logging in deforestation refers to the practice of cutting down trees for commercial purposes, primarily for the timber industry, which contributes to the overall deforestation of an area.[43][44][45] Deforestation is the permanent removal of forests and vegetation cover from an area, often resulting in ecological, social, and economic impacts.[46]

The logging process typically involves the following steps:

  1. Tree selection: Loggers identify and select specific trees for harvesting based on their species, size, and commercial value. Valuable tree species often targeted for logging include mahogany, teak, oak, and other hardwoods.
  2. Access and infrastructure development: Loggers establish infrastructure such as roads and trails within the forest to reach the targeted trees. This infrastructure facilitates the transportation of heavy machinery, logging equipment, and harvested timber.
  3. Clearing vegetation: Prior to logging, loggers often clear the understory vegetation and smaller trees surrounding the target trees to enhance access and maneuverability for machinery.
  4. Tree felling: The selected trees are cut down using chainsaws, harvesters, or other mechanized equipment. The felled trees are then prepared for further processing.
  5. Timber extraction: Once the trees are felled, loggers extract the timber from the forest by removing branches and cutting the tree trunks into logs of appropriate sizes for transport.
  6. Log transportation: Extracted logs are transported from the logging site to processing facilities or storage areas using trucks, barges, or helicopters, depending on the accessibility of the area.
  7. Processing and utilization: At processing facilities, the harvested logs are further processed into lumber, plywood, or other wood products. These products find applications in various industries, such as construction, furniture manufacturing, or paper production.

The impacts of logging on deforestation are significant and wide-ranging.

  1. Loss of biodiversity: Logging often leads to the destruction of forest ecosystems, resulting in the loss of habitat for numerous plant and animal species. Deforestation disrupts the intricate web of biodiversity and can contribute to the extinction or endangerment of various species.
  2. Carbon emissions and climate change: Trees play a crucial role in mitigating climate change by absorbing carbon dioxide through photosynthesis. When trees are logged, the stored carbon is released back into the atmosphere as carbon dioxide, contributing to greenhouse gas emissions and climate change.
  3. Soil erosion and degradation: Forests provide a protective cover for the soil, preventing erosion by wind and water. The removal of trees makes the exposed soil more vulnerable to erosion, leading to the loss of fertile topsoil and the degradation of the land.
  4. Disruption of water cycles: Forests act as natural water catchments, regulating water flow and maintaining water quality. Deforestation can disrupt the water cycle, resulting in reduced water availability, altered rainfall patterns, and an increased risk of droughts or floods.
  5. Indigenous and local community impacts: Many indigenous peoples and local communities depend on forests for their livelihoods, cultural practices, and sustenance. Deforestation and logging can displace these communities, undermine their traditional way of life, and create social conflicts.
  6. Economic considerations: While logging can provide economic benefits in terms of employment and revenue generation, unsustainable logging practices can deplete forest resources and undermine long-term economic sustainability. Overexploitation of forests can lead to the loss of potential future income and economic opportunities.

Efforts to address the impacts of logging on deforestation include implementing sustainable forest management practices, promoting reforestation and afforestation, establishing protected areas, enforcing regulations and policies, and supporting alternative livelihood options for local communities dependent on forests.[47]

A 2013 paper found a correlation between rainforest logging in the Amazon and reduced precipitation in the area, resulting in lower yields per hectare. This suggests that, on a broader scale, there is no economic gain for Brazil through logging, selling trees, and using the cleared land for pastoral purposes.[48]

Crude oil

According to a September 2016 report by Amazon Watch, the importation of crude oil by the US is linked to about 20,000 sq mi (~50,000 km2) of rainforest destruction in the Amazon and the emission of substantial greenhouse gases.[49][50] These impacts are mostly focused in the western Amazon countries of Ecuador, Peru, and Colombia. The report also indicates that oil exploration is occurring in an additional ~100,000 sq mi (~250,000 km2) of rainforest.[50]

Roads

95% of the deforestation in the Amazon Rainforest "happens within 3.4 miles of a roadway". Forest clearing always begins near new roads, after expands further. In December 2023 the lower house of the Brazilian Congress approved a bill aiming to pave again the high way BR-319 (Brazil highway), what can threaten the existence of the rainforest. The bill defines the road as “critical infrastructure, indispensable to national security, requiring the guarantee of its trafficability,”[51]

Other

During August 2019, a prolonged forest fire occurred in the Amazon, contributing significantly to deforestation during that summer. Approximately 519 sq mi (1,340 km2) of the Amazon forest was lost.[52] It is worth noting that certain instances of deforestation in the Amazon have been attributed to farmers clearing land for small-scale subsistence agriculture.[9]

Loss rates

Home to much of the Amazon rainforest, Brazil's tropical primary (old-growth) forest loss greatly exceeds that of other countries.[53]
Overall, 20% of the Amazon rainforest has been "transformed" (deforested) and another 6% has been "highly degraded", causing Amazon Watch to warn that the Amazonia is in the midst of a tipping point crisis.[2]

During the early 2000s, deforestation in the Amazon rainforest showed an increasing trend, with an annual rate of 27,423 km2 (10,588 sq mi) of forest loss recorded in 2004. Subsequently, the annual rate of forest loss generally slowed between 2004 and 2012, although there were spikes in deforestation rates in 2008,[54] 2013,[55] and 2015.[56]

However, recent data suggests that the loss of forest cover is once again accelerating. Between August 2017 and July 2018, approximately 7,900 km2 (3,100 sq mi) of forest were deforested in Brazil, representing a 13.7% increase compared to the previous year and the largest area cleared since 2008.[57] Deforestation in the Brazilian Amazon rainforest experienced a significant surge in June 2019, rising more than 88% compared to the same month in 2018.[58][59][60] and more than doubling in January 2020 compared to January 2019.[61]

In August 2019, a substantial number of forest fires, totaling 30,901 individual fires, were reported, marking a threefold increase compared to the previous year. However, the number of fires decreased by one-third in September, and by October 7, it had dropped to approximately 10,000. It is important to note that deforestation is considered to have more severe consequences than burning. The National Institute for Space Research (INPE) in Brazil estimated that at least 7,747 km2 (2,991 sq mi) of the Brazilian Amazon rainforest were cleared during the first half of 2019.[62] INPE subsequently reported that deforestation in the Brazilian Amazon reached a 12-year high between August 2019 and July 2020.[63]

Deforestation figures in Brazil are annually provided by the Instituto Nacional de Pesquisas Espaciais (INPE), based on satellite images captured during the dry season in the Amazon by the Landsat satellite. It's important to note that these estimates may focus solely on the loss of the Amazon rainforest and may not include the loss of natural fields or savannah within the Amazon biome.[64]

Estimated loss by year

Period[65]Estimated remaining forest cover
in the Brazilian Amazon (km2)
Annual forest
loss (km2)
Percent of 1970
cover remaining
Total forest
loss (km2)
Pre–1970 4,100,001
1977 3,955,870 21,130 96.5% 144,130
1978–1987 3,744,570 211,300 91.3% 355,430
1988 3,723,520 21,050 90.8% 376,480
1989 3,705,750 17,770 90.4% 394,250
1990 3,692,020 13,730 90.0% 407,980
1991 3,680,990 11,030 89.8% 419,010
1992 3,667,204 13,786 89.4% 432,796
1993 3,652,308 14,896 89.1% 447,692
1994 3,637,412 14,896 88.7% 462,588
1995 3,608,353 29,059 88.0% 491,647
1996 3,590,192 18,161 87.6% 509,808
1997 3,576,965 13,227 87.2% 523,035
1998 3,559,582 17,383 86.8% 540,418
1999 3,542,323 17,259 86.4% 557,677
2000 3,524,097 18,226 86.0% 575,903
2001 3,505,932 18,165 85.5% 594,068
2002 3,484,281 21,651 85.0% 615,719
2003 3,458,885 25,396 84.4% 641,115
2004 3,431,113 27,772 83.7% 668,887
2005 3,412,099 19,014 83.2% 687,901
2006 3,397,814 14,285 82.9% 702,186
2007 3,386,163 11,651 82.6% 713,837
2008 3,373,252 12,911 82.3% 726,748
2009 3,365,788 7,464 82.1% 734,212
2010 3,358,788 7,000 81.9% 741,212
2011 3,352,370 6,418 81.8% 747,630
2012 3,347,799 4,571 81.7% 752,201
2013 3,341,908 5,891 81.5% 758,092
2014 3,336,896 5,012 81.4% 763,104
2015 3,330,689 6,207 81.2% 769,311
2016 3,322,796 7,893 81.0% 777,204
2017 3,315,849 6,947 80.9% 784,151
2018 3,308,313 7,536 80.7% 791,687
2019 3,298,551 9,762 80.5% 801,449
2020 3,290,125 8,426 80.2% 809,875
2021 3,279,649 10,476 80.0% 820,351
2022 3,268,049 11,600 79.7% 831,951

Value calculated from estimated forest loss, not directly known.

Impacts

Amazon rainforest fire in Brazil's indigenous territory in 2017

Deforestation and biodiversity loss in the Amazon rainforest have resulted in significant risks of irreversible changes. Modeling studies have suggested that deforestation may be approaching a critical "tipping point" where large-scale "savannization" or desertification could occur,[66] leading to catastrophic consequences for the global climate. This tipping point could trigger a self-perpetuating collapse of biodiversity and ecosystems in the region.[67] Failing to prevent this tipping point could have severe impacts on the economy, natural capital, and ecosystem services.[68] A study published in Nature Climate Change in 2022 provided empirical evidence that more than three-quarters of the Amazon rainforest has experienced a decline in resilience since the early 2000s, posing risks of dieback that would impact biodiversity, carbon storage, and climate change.[69]

To maintain a high level of biodiversity, research suggests that a threshold of 40% forest cover in the Amazon should be maintained.[70]

Impact on global warming

Climate change disturbances of rainforests.[71]

Deforestation, along with other forms of ecosystem destruction such as peatbog degradation, can have multiple effects. It can reduce the carbon sink capacity of the land and contribute to increased emissions through factors like wildfires, land-use change, and reduced ecosystem health. These impacts can disrupt the normal carbon-absorbing processes of ecosystems, leading to stress and imbalance.

Historically, the Amazon Basin has played a significant role as a carbon sink, absorbing approximately 25% of the carbon captured by terrestrial land.[72]

However, a scientific review article published in 2021 indicates that current evidence suggests the Amazon basin is currently emitting more greenhouse gases than it absorbs overall.[71] This shift is attributed to climate change impacts and human activities in the region, particularly wildfires, current land-use practices, and deforestation. These factors contribute to the release of forcing agents that are likely to result in a net warming effect.[73][71] Warming temperatures and changing weather patterns also lead to physiological responses in the forest, further hindering the absorption of CO2.[71]

Impacts on water supply

The deforestation of the Amazon rainforest has had a significant impact on Brazil's freshwater supply, particularly affecting the agricultural industry, which has been involved in clearing the forests. In 2005, certain regions of the Amazon basin experienced the most severe drought in over a century.[74] This can be attributed to two key factors:

1. The rainforest plays a crucial role in contributing to rainfall across Brazil, even in distant areas. Deforestation has exacerbated the effects of droughts in 2005, 2010, and 2015–2016.[75][76]

2. The rainforest contributes to rainfall and facilitates water storage, which in turn provides freshwater to the rivers that supply Brazil and other countries with water.[77][78]

Impact on local temperature

In 2019, a group of scientists conducted research indicating that under a "business as usual" scenario, the deforestation of the Amazon rainforest will lead to a temperature increase of 1.45 degrees in Brazil. They stated that this temperature rise could have various consequences, including increased human mortality rates and electricity demands, reduced agricultural yields and water resources, and the potential collapse of biodiversity, especially in tropical regions. Additionally, local warming may cause shifts in species distributions, including those involved in the transmission of infectious disease. The authors of the paper assert that deforestation is already contributing to the observed temperature rise.[79]

Impact on indigenous people

Members of an uncontacted tribe encountered in the Brazilian state of Acre in 2009

More than one-third of the Amazon forest is designated as Indigenous territory, encompassing over 4,466 formally recognized territories. Until 2015, approximately 8% of deforestation in the Amazon occurred within forests inhabited by indigenous peoples, while 88% occurred in areas outside of indigenous territories and protected areas, despite these areas comprising less than 50% of the total Amazon region. Indigenous communities have historically relied on the forest for sustenance, shelter, water, materials, fuel, and medicinal resources. The forest holds significant cultural and spiritual importance for them. Consequently, deforestation rates tend to be lower within Indigenous Territories, even though pressures to clear land for other purposes persist.[1]

During the deforestation of the Amazon, native tribes have often faced mistreatment and abuse. Encroachments by loggers onto indigenous lands have led to conflicts resulting in fatalities.[80] Some uncontacted indigenous groups have emerged from the forests and interacted with mainstream society due to threats from outsiders.[81] When uncontacted tribes come into contact with outsiders, they are vulnerable to diseases against which they have little immunity. As a result, entire tribes can be severely impacted by epidemics, leading to significant population declines within a few years.[82][83]

A long-standing struggle has taken place over the control of indigenous territories in the Amazon, primarily involving the Brazilian government. The demand for these lands has stemmed, in part, from the aim of enhancing Brazil's economic standing. Various individuals, including ranchers and land speculators from the southeast, have sought to claim these lands for personal financial gain. In early 2019, Brazil's newly elected president, Jair Bolsonaro, issued an executive order empowering the agriculture ministry to regulate the land occupied by indigenous tribes in the Amazon.[26]

In the past, mining operations were permitted within the territory of an isolated indigenous group called the Yanomami. The conditions endured by these indigenous peoples resulted in many health issues, including tuberculosis. If their lands are utilized for further development, numerous tribal communities will be forcibly displaced, potentially leading to the loss of lives. In addition to the mistreatment of indigenous peoples, the exploitation of the forest itself will result in the depletion of vital resources necessary for their daily lives.[84]

Efforts to stop and reverse deforestation

Norwegian Prime Minister Jens Stoltenberg announced on September 16, 2008, that the Norwegian government would contribute a donation of US$1 billion to the newly established Amazon Fund. The funds from this initiative would be allocated to projects aimed at mitigating the deforestation of the Amazon rainforest.[85]

In September 2015, Brazilian President Dilma Rousseff addressed the United Nations, reporting that Brazil had effectively reduced the deforestation rate in the Amazon by 82%. She also outlined Brazil's goals for the next 15 years, which included eliminating illegal deforestation, restoring and reforesting an area of 120,000 km2 (46,000 sq mi), and rehabilitating 150,000 km2 (58,000 sq mi) of degraded pastures.[86]

In August 2017, Brazilian President Michel Temer revoked the protected status of an Amazonian nature reserve, which spanned an area equivalent to Denmark in the northern states of Pará and Amapá.[87]

In April 2019, an Ecuadorian court issued an order to cease oil exploration activities in an area of 1,800 square kilometers (690 sq mi) within the Amazon rainforest.[88]

In May 2019, eight former environment ministers in Brazil expressed concerns about escalating deforestation in the Amazon during Jair Bolsonaro's first year as president.[89] Carlos Nobre, an expert on the Amazon and climate change, warned in September 2019 that if deforestation rates continued at their current pace, the Amazon forest could reach a tipping point within 20 to 30 years, potentially resulting in large portions of the forest transforming into a dry savanna, particularly in the southern and northern regions.[90][91][13]

Bolsonaro has rebuffed European politicians' attempts to intervene in the matter of Amazon rainforest deforestation, citing it as Brazil's internal affairs.[92] He has advocated for the opening of more areas, including those in the Amazon, for mining activities and mentioned discussions with US President Donald Trump about a joint development program for the Brazilian Amazon region.[93]

Brazil promised to halt and reverse deforestation by 2030.

Brazilian Economy Minister Paulo Guedes has expressed the belief that other countries should compensate Brazil for the oxygen produced within its borders but used elsewhere.[94]

In late August 2019, following an international outcry and warnings from experts about the escalating fires, the Brazilian government, led by Jair Bolsonaro, implemented measures to combat the fires. These measures included a 60-day ban on forest clearance using fires, deploying 44,000 soldiers to fight the fires, receiving four planes from Chile for firefighting purposes, accepting a $12 million aid package from the UK government, and softening his stance on aid from the G7. Bolsonaro also called for a Latin American conference to address the preservation of the Amazon.[95][96]

On November 2, 2021, during the COP26 climate summit, over 100 countries, representing approximately 85% of the world's forests, reached a significant agreement to end deforestation by 2030. This agreement, an improvement on the 2014 New York Declaration on Forests, which initially aimed to reduce deforestation by 50% by 2020 and end it by 2030, now includes Brazil as a signatory.[97][98] It is worth noting that deforestation increased during the 2014–2020 period despite the previous agreement.[99]

In August 2023, Brazilian President Luiz Inacio Lula da Silva hosts a summit in Belem with eight South American countries to coordinate policies for the Amazon basin and develop a roadmap to save the world's largest rainforest, also serving as a preparatory event for the COP30 UN climate talks in 2025.[100]

In the first 8 months of 2023 deforestation rate in the Brazilian Amazon declined by 48% what prevented the release of 196 million tons CO2 to the atmosphere. Financing from the Amazon Fund and cooperation between the Amazonian nations played a significant role in it.[101] In the first 9 months of 2023 deforestation rate declined by 49.5% despite the worst drought in the last 40 years. Wildfires in September 2023 declined by 36% in comparison to September 2022. Switzerland and United States gave 8.4 million dollars to the Amazon fund for preventing deforestation.[14]

According to Amazon Conservation's MAAP forest monitoring program, the deforestation rate in the Amazon rainforest as a whole from the 1 of January to the 8 of November 2023, in comparison to the same period in 2022, declined by 55.8%. This trend gives hope to Amazon. Deforestation reduction in Brazil (59%) which is the main cause of the trend is probably due to Lula's environmental policy. In Columbia, the rate of deforestation fell by 66.5% probably due to the policies of Gustavo Petro and a change in the policies of former guerrilla fighters that control part of the forest. It is not clear, still, what caused the decline in Bolivia (60%) and Peru (37%). Bolivia has a relatively high forest loss rate due to wildfires, but those are not occurring in the Amazon.[102]

Cost of rainforest conservation

According to the Woods Hole Research Institute (WHRC) in 2008, it was estimated that halting deforestation in the Brazilian rainforest would require an annual investment of US$100–600 million.[103] A more recent study in 2022 suggested that the conservation of approximately 80% of the Brazilian rainforest remains achievable, with an estimated annual cost of US$1.7–2.8 billion to conserve an area of 3.5 million km2.[104][105] By preventing deforestation, it would be possible to avoid carbon emissions at a cost of US$1.33 per ton of CO2, which is lower compared to the cost of reducing emissions through renewable fuel subsidies (US$100 per ton) or weatherization assistance programs such as building insulation (US$350/ton).[106][107]

Future of the Amazon rainforest

Based on the deforestation rates observed in 2005, projections indicated that the Amazon rainforest would experience a 40% reduction within two decades.[108] While the rate of deforestation has slowed since the early 2000s, the forest continues to shrink annually, and satellite data analysis reveals a significant increase in deforestation since 2018.[109][110][111]

See also

Fauna

Bibliography

  • Bradford, Alina. "Deforestation: Facts, Causes, & Effects." Live Science. Deforestation: Facts, Causes & Effects. March 4, 2015. Web. July 16, 2017.
  • Monbiot, George (1991). Amazon watershed: the new environmental investigation. London, UK: Michael Joseph. ISBN 978-0-7181-3428-0.
  • Scheer, Roddy, and Moss, Doug. "Deforestation and its Extreme Effects on Global Warming." Scientific America. Deforestation and Its Extreme Effect on Global Warming. 2017. Web. July 16, 2017.
  • Schleifer, Philip (2023). "Global Shifts: Business, Politics, and Deforestation in a Changing World Economy". Cambridge MA / USA: MIT Press (open access). ISBN 9780262374439.
  • Tabuchi, Hiroko, Rigby, Claire, and White, Jeremy. "Amazon Deforestation, Once Tamed, now Comes Roaring Back." The New York Times. Amazon Deforestation, Once Tamed, Comes Roaring Back. Feb 24, 2017. Web. July 16, 2017.

References

  1. 1 2 Josse, Carmen (6 February 2019). "Indigenous peoples are key stakeholders". D+C, Development and cooperation. Archived from the original on 2019-04-10. Retrieved 2019-04-10.
  2. 1 2 "Amazon Against the Clock: A Regional Assessment on Where and How to Protect 80% by 2025" (PDF). Amazon Watch. September 2022. p. 8. Archived (PDF) from the original on 10 September 2022. Graphic 2: Current State of the Amazon by country, by percentage / Source: RAISG (Red Amazónica de Información Socioambiental Georreferenciada) Elaborated by authors.
  3. Siegle, Lucy (9 August 2015). "Has the Amazon rainforest been saved, or should I still worry about it?". The Guardian. Archived from the original on 15 March 2023. Retrieved 21 October 2015.
  4. 1 2 Adam, David (May 31, 2009). "British supermarkets accused over destruction of Amazon rainforest" Archived 2016-06-10 at the Wayback Machine. The Guardian. Retrieved October 21, 2015.
  5. 1 2 Liotta, Edoardo (August 23, 2019). "Feeling Sad About the Amazon Fires? Stop Eating Meat". Vice. Archived from the original on August 24, 2019. Retrieved August 25, 2019.
  6. 1 2 "Slaughtering the Amazon" Archived 2018-01-20 at the Wayback Machine. Greenpeace. June 1, 2009. Retrieved October 21, 2015.
  7. "Government Subsidies for Agriculture May Exacerbate Deforestation, says new UN report". Sustainable Development Goals. UN. 3 September 2015. Archived from the original on 3 August 2016. Retrieved 27 June 2020.
  8. Margulis, Sergio (2004). Causes of Deforestation of the Brazilian Amazon (PDF). Washington D.C.: The World Bank. p. 9. ISBN 0-8213-5691-7. Archived (PDF) from the original on September 10, 2008. Retrieved September 4, 2008. {{cite book}}: |work= ignored (help)
  9. 1 2 Butler, Rhett (July 9, 2014). "Deforestation in the Amazon" Archived 2016-04-15 at the Wayback Machine. Mongabay.com. Retrieved October 19, 2015.
  10. 1 2 3 "Growth in Amazon Cropland May Impact Climate and Deforestation Patterns" Archived 2019-03-21 at the Wayback Machine. NASA - Goddard Space Flight Center - News. September 19, 2006. Retrieved October 21, 2015.
  11. Prem, Mounu; Saavedra, Santiago; Vargas, Juan F. (May 2020). "End-of-conflict deforestation: Evidence from Colombia's peace agreement". World Development. 129: 104852. doi:10.1016/j.worlddev.2019.104852. ISSN 0305-750X. S2CID 155096333.
  12. "Amazon deforestation 'worst in 10 years'". 2018-11-24. Archived from the original on 2019-09-26. Retrieved 2019-05-10.
  13. 1 2 Lovejoy, Thomas E.; Nobre, Carlos (2019-12-20). "Amazon tipping point: Last chance for action". Science Advances. 5 (12): eaba2949. Bibcode:2019SciA....5A2949L. doi:10.1126/sciadv.aba2949. ISSN 2375-2548. PMC 6989302. PMID 32064324.
  14. 1 2 "Deforestation in Brazil's Amazon falls 57% in September". Reuters. 7 October 2023. Retrieved 30 October 2023.
  15. Simon, Romero (January 14, 2012). "Once Hidden by Forest, Carvings in Land Attest to Amazon's Lost World". The New York Times. Archived from the original on November 29, 2021. Retrieved February 26, 2017.
  16. 1 2 Kirby, Kathryn R.; Laurance, William F.; Albernaz, Ana K.; Schroth, Götz; Fearnside, Philip M.; Bergen, Scott; M. Venticinque, Eduardo; Costa, Carlos da (2006). "The future of deforestation in the Brazilian Amazon". Futures. 38 (4): 432–453. CiteSeerX 10.1.1.573.1317. doi:10.1016/j.futures.2005.07.011.
  17. 1 2 Watkins and Griffiths, J. (2000). Forest Destruction and Sustainable Agriculture in the Brazilian Amazon: a Literature Review (Doctoral dissertation, The University of Reading, 2000). Dissertation Abstracts International, 15–17
  18. Dean, Bartholomew 2009 Urarina Society, Cosmology, and History in Peruvian Amazonia, Gainesville: University Press of Florida ISBN 978-0-8130-3378-5 Archived 2011-07-17 at the Wayback Machine
  19. Vittor, Luis (January 30, 2008). "The law of the jungle, to sell the Amazon basin" Archived 2009-06-02 at the Wayback Machine. Agencia Latinoamericana de información.
  20. "Peru: Government intent on privatizing the Amazon for implementing tree plantations" Archived 2009-04-21 at the Wayback Machine. World Rainforest Movement, Bulletin 129. April 2008.
  21. 1 2 Polk, James (April 14, 2009). "Time to Strengthen Ties with Peru" Archived 2009-06-16 at the Wayback Machine. Foreign Policy In Focus.
  22. Salazar, Milagros (February 5, 2008). "ENVIRONMENT-PERU: 'For Sale' Signs in Amazon Jungle" Archived 2008-10-19 at the Wayback Machine. Inter Press Service.
  23. 1 2 Sarah Derouin (2022-01-06). "Deforestation: Facts, Causes & Effects". livescience.com. Archived from the original on 2021-02-03. Retrieved 2023-01-20.
  24. Tabuchi, Hiroko; Rigby, Claire; White, Jeremy (2017-02-24). "Amazon Deforestation, Once Tamed, Comes Roaring Back". The New York Times. ISSN 0362-4331. Archived from the original on 2021-02-26. Retrieved 2023-01-20.
  25. 1 2 "Deforestation and Its Extreme Effect on Global Warming". Scientific American. Archived from the original on 2022-12-05. Retrieved 2023-01-20.
  26. 1 2 Phillips, Dom (January 2, 2019). "Jair Bolsonaro Launches Assault on Amazon Rainforest Protections". The Guardian. Archived from the original on April 26, 2019. Retrieved April 29, 2019.
  27. "Deforestation in Brazil's Amazon at highest level since 2006". Reuters/The Guardian. 18 November 2021. Archived from the original on 18 November 2021. Retrieved 16 December 2021.
  28. "Brazil: Amazon sees worst deforestation levels in 15 years". BBC News. 19 November 2021. Archived from the original on 15 July 2022. Retrieved 16 December 2021.
  29. Hanusch, Marek (2023). Hanusch, Marek (ed.). Hanusch, M. (2023) A Balancing Act for Brazil's Amazonian States: An Economic Memorandum - World Bank Group. doi:10.1596/978-1-4648-1909-4. ISBN 978-1-4648-1909-4. S2CID 258536348.
  30. Steinfeld, Henning; Gerber, Pierre; Wassenaar, T. D.; Castel, Vincent (2006). Livestock's Long Shadow: Environmental Issues and Options. Food and Agriculture Organization of the United Nations. ISBN 978-92-5-105571-7. Archived from the original on July 26, 2008. Retrieved August 19, 2008.
  31. Margulis, Sergio (2004). Causes of Deforestation of the Brazilian Amazon (PDF). Washington D.C.: The World Bank. ISBN 978-0-8213-5691-3. Archived (PDF) from the original on September 10, 2008. Retrieved September 4, 2008. {{cite book}}: |work= ignored (help)
  32. "EU urged to halt trade talks with S. America over Brazil abuses". France24. 18 June 2019. Archived from the original on 25 August 2019. Retrieved 25 August 2019.
  33. "EU and Mercosur agree huge trade deal after 20-year talks". BBC News. 28 June 2019. Archived from the original on 23 September 2019. Retrieved 25 August 2019.
  34. "We must not barter the Amazon rainforest for burgers and steaks". The Guardian. 2 July 2019. Archived from the original on 24 August 2019. Retrieved 25 August 2019.
  35. Londoño, Ernesto; Casado, Letícia (18 November 2019). "Amazon Deforestation in Brazil Rose Sharply". The New York Times. Archived from the original on 2020-01-19. Retrieved 2020-02-03.
  36. "Brazil guts environmental agencies, clears way for unchecked deforestation". 10 June 2019. Archived from the original on 2020-01-20. Retrieved 2020-02-03.
  37. "Deforestation of Amazon rainforest accelerates amid COVID-19 pandemic". ABC News. 6 May 2020. Archived from the original on 8 July 2020. Retrieved 17 May 2020.
  38. "Deforestation of the Amazon has soared under cover of the coronavirus". NBC News. 11 May 2020. Archived from the original on 11 July 2020. Retrieved 17 May 2020.
  39. "Scientists fear deforestation, fires and Covid-19 could create a 'perfect storm' in the Amazon". CNN. 19 June 2020. Archived from the original on 25 July 2020. Retrieved 21 June 2020.
  40. "U.S. ethanol may drive Amazon deforestation". mongabay.com. May 17, 2007. Archived from the original on July 13, 2012. Retrieved October 29, 2009.
  41. 1 2 Kelly April Tyrrell (January 22, 2015). "Study shows Brazil's Soy Moratorium still needed to preserve Amazon" Archived 2015-12-15 at the Wayback Machine. the University of Wisconsin-Madison News. Retrieved on October 21, 2015.
  42. Williams, M. (2006). Deforesting the Earth: From Prehistory to Global Crisis. Chicago, IL: The University of Chicago Press.
  43. Johns, Andrew Grieser; Burley, Jeffrey (1997-07-10). Timber Production and Biodiversity Conservation in Tropical Rain Forests. Cambridge University Press. doi:10.1017/cbo9780511525827. ISBN 978-0-521-57282-8.
  44. Megevand, Carole; Mosnier, Aline; Hourticq, Joël; Sanders, Klas; Doetinchem, Nina; Streck, Charlotte (2013-01-25). Deforestation Trends in the Congo Basin. doi:10.1596/978-0-8213-9742-8. ISBN 978-0-8213-9742-8.
  45. W.D., Sunderlin; Resosudarmo. I.A.P. (1996). Rates and causes of deforestation in Indonesia: towards a resolution of the ambiguities. Center for International Forestry Research (CIFOR). doi:10.17528/cifor/000056.
  46. Chidumayo, Emmanuel N.; Gumbo, Davison J. (April 2013). "The environmental impacts of charcoal production in tropical ecosystems of the world: A synthesis". Energy for Sustainable Development. 17 (2): 86–94. doi:10.1016/j.esd.2012.07.004. ISSN 0973-0826.
  47. M., Kanninen; D., Murdiyarso; F., Seymour; A., Angelsen; S., Wunder; L., German (2007). Do trees grow on money?: the implications of deforestation research for policies to promote REDD. Center for International Forestry Research (CIFOR). doi:10.17528/cifor/002347. S2CID 131645457.
  48. "Research paper of Leydimere Oliveira on the Amazon". Archived from the original on August 3, 2013.
  49. Milman, Oliver (28 September 2016). "US drives rainforest destruction by importing Amazon oil, study finds". The Guardian. London, UK. Archived from the original on 2019-04-14. Retrieved 2016-09-28.
  50. 1 2 Zuckerman, Adam; Koenig, Kevin (September 2016). From well to wheel: the social, environmental, and climate costs of Amazon crude (PDF). Oakland, CA, USA: Amazon Watch. Archived (PDF) from the original on 2019-09-02. Retrieved 2016-09-28.
  51. Hemingway Jaynes, Cristen (22 December 2023). "Brazil's Congress Passes Bill to Pave Highway Through Heart of Amazon Rainforest". Ecowatch. Retrieved 28 December 2023.
  52. Woodward, Aylin. "The Amazon Rainforest is burning. Here's why there are so many fires and what it all means for the planet". business insider. Archived from the original on 2019-12-09. Retrieved 2019-12-09.
  53. "Forest Pulse: The Latest on the World's Forests". WRI.org. World Resources Institute. 28 April 2022. Archived from the original on 28 April 2022. ● 2022 Global Forest Watch data quoted by McGrath, Matt; Poynting, Mark (27 June 2023). "Climate change: Deforestation surges despite pledges". BBC. Archived from the original on 29 June 2023.
  54. "Amazon Deforestation Rate Escalates". The Real Truth. February 7, 2008. Archived from the original on September 5, 2008. Retrieved August 19, 2008.
  55. "Amazon deforestation jumps 29%". The Guardian. 11 September 2014. Archived from the original on 4 March 2016. Retrieved 11 September 2014.
  56. "Amazon deforestation jumps in Brazil, but remains historically low". Mongabay Environmental News. 27 November 2015. Archived from the original on 2016-03-08. Retrieved 2016-03-08.
  57. "Brazil records worst annual deforestation for a decade". theguardian.com. 24 November 2018. Archived from the original on 2018-11-24. Retrieved 2018-11-23.
  58. "Brazil: huge rise in Amazon destruction under Bolsonaro, figures show". The Guardian. Reuters. 2019-07-03. ISSN 0261-3077. Archived from the original on 2019-07-03. Retrieved 2019-07-03.
  59. "Deforestation in Brazil has rocketed since Bolsonaro became president". www.newscientist.com. 22 July 2019. Archived from the original on 2019-08-15. Retrieved 2019-08-17.
  60. "Brazil deforestation soars in July, threatening EU trade deal". Reuters. 2019-07-19. Archived from the original on 2019-08-24. Retrieved 2019-08-17.
  61. "Amazon deforestation for January hits record". phys.org. 2020-02-08. Archived from the original on 2020-02-10. Retrieved 2020-02-10.
  62. Hughes, Roland (11 October 2019). "Amazon fires: What's the latest in Brazil?". BBC World News. Archived from the original on 14 November 2020. Retrieved 1 December 2020.
  63. Darlington, Shasta (1 December 2020). "Deforestation in Brazilian Amazon surges to 12-year high". CNN. Archived from the original on 1 December 2020. Retrieved 1 December 2020.
  64. National Institute for Space Research (INPE) (2005). The INPE deforestation figures for Brazil were cited on the WWF website in April 2006.
  65. Butler, Rhett A. "Calculating Deforestation Figures for the Amazon" Archived 2008-09-27 at the Wayback Machine. rainforests.mongabay.com, sourced from INPE and FAO figures.
  66. Tandon, Ayesha (2023-10-04). "Drying of Amazon could be early warning of 'tipping point' for the rainforest". Carbon Brief. Retrieved 2023-10-06.
  67. A. Nobre, Carlos; Sampaio, Gilvan; Borma, Laura; Carlos Castilla-Rubio, Juan; S. Silva, José; Cardoso, Manoel (September 27, 2016). "Land-use and climate change risks in the Amazon and the need of a novel sustainable development paradigm". Proceedings of the National Academy of Sciences of the United States of America. 113 (39): 10759–10768. Bibcode:2016PNAS..11310759N. doi:10.1073/pnas.1605516113. PMC 5047175. PMID 27638214.
  68. Banerjee, Onil; Cicowiez, Martin; Macedo, Marcia N; Malek, Žiga; Verburg, Peter H; Goodwin, Sean; Vargas, Renato; Rattis, Ludmila; Bagstad, Kenneth J; Brando, Paulo M; Coe, Michael T; Neill, Christopher; Marti, Octavio Damiani; Murillo, Josué Ávila (2022-12-01). "Can we avert an Amazon tipping point? The economic and environmental costs". Environmental Research Letters. 17 (12): 125005. Bibcode:2022ERL....17l5005B. doi:10.1088/1748-9326/aca3b8. hdl:1871.1/949d3af3-f463-40cc-90ab-1f9ff3060125. ISSN 1748-9326.
  69. Boulton, Chris A.; Lenton, Timothy M.; Boers, Niklas (2022-03-07). "Pronounced loss of Amazon rainforest resilience since the early 2000s". Nature Climate Change. 12 (3): 271–278. Bibcode:2022NatCC..12..271B. doi:10.1038/s41558-022-01287-8. ISSN 1758-6798.
  70. Decaëns, Thibaud; Martins, Marlúcia B.; Feijoo, Alexander; Oszwald, Johan; Dolédec, Sylvain; Mathieu, Jérôme; Arnaud De Sartre, Xavier; Bonilla, Diego; Brown, George G.; Cuellar Criollo, Yeimmy Andrea; Dubs, Florence; Furtado, Ivaneide S.; Gond, Valérie; Gordillo, Erika; Le Clec'h, Solen; Marichal, Raphaël; Mitja, Danielle; De Souza, Izildinha Miranda; Praxedes, Catarina; Rougerie, Rodolphe; Ruiz, Darío H.; Otero, Joel Tupac; Sanabria, Catalina; Velasquez, Alex; Zararte, Luz Elena M.; Lavelle, Patrick (December 2018). "Biodiversity loss along a gradient of deforestation in Amazonian agricultural landscapes" (PDF). Conservation Biology. 32 (6): 1380–1391. doi:10.1111/cobi.13206. PMID 30113727. S2CID 52011503. Archived (PDF) from the original on 2021-11-03. Retrieved 2021-02-28.
  71. 1 2 3 4 Covey, Kristofer; Soper, Fiona; Pangala, Sunitha; Bernardino, Angelo; Pagliaro, Zoe; Basso, Luana; Cassol, Henrique; Fearnside, Philip; Navarrete, Diego; Novoa, Sidney; Sawakuchi, Henrique; Lovejoy, Thomas; Marengo, Jose; Peres, Carlos A.; Baillie, Jonathan; Bernasconi, Paula; Camargo, Jose; Freitas, Carolina; Hoffman, Bruce; Nardoto, Gabriela B.; Nobre, Ismael; Mayorga, Juan; Mesquita, Rita; Pavan, Silvia; Pinto, Flavia; Rocha, Flavia; de Assis Mello, Ricardo; Thuault, Alice; Bahl, Alexis Anne; Elmore, Aurora (2021). "Carbon and Beyond: The Biogeochemistry of Climate in a Rapidly Changing Amazon". Frontiers in Forests and Global Change. 4. doi:10.3389/ffgc.2021.618401. ISSN 2624-893X. Available under CC BY 4.0 Archived 2017-10-16 at the Wayback Machine.
  72. "Amazon Deforestation and Climate Change". National Geographic Society. 2016-11-30. Archived from the original on 2021-05-27. Retrieved 2021-05-28.
  73. Fox, Alex. "The Amazon Rainforest Now Emits More Greenhouse Gases Than It Absorbs". Smithsonian Magazine. Archived from the original on 7 April 2021. Retrieved 19 April 2021.
  74. "Amazon Drought Worst in 100 Years". ENS Newswire. 24 October 2005. Archived from the original on 14 May 2019. Retrieved 14 May 2019.
  75. Welch, Craig (19 November 2018). "How Amazon forest loss may affect water—and climate—far away". National Geographic Magazine. Archived from the original on 19 April 2019. Retrieved 19 April 2019.
  76. Loomis, Ilima (August 4, 2017). "Trees in the Amazon make their own rain". Science. doi:10.1126/science.aan7209. Archived from the original on 2 November 2021. Retrieved 30 April 2019.
  77. McCarthy, Joe; Sanchez, Erica (20 November 2018). "World's Water Could Become Scarce if the Amazon Rainforest Is Destroyed". Global Citizen. Archived from the original on 19 April 2019. Retrieved 19 April 2019.
  78. Larson, Christina; Savarese, Mauricio. "Scientists warn new Brazil president may smother rainforest". Fhys.org. Science X Network. Archived from the original on 19 April 2019. Retrieved 19 April 2019.
  79. A. Prevedello, Jayme; R. Winck, Gisele; M. Weber, Marcelo; Nichols, Elizabeth; Sinervo, Barry (March 20, 2019). "Impacts of forestation and deforestation on local temperature across the globe". PLOS ONE. 14 (3): e0213368. Bibcode:2019PLoSO..1413368P. doi:10.1371/journal.pone.0213368. PMC 6426338. PMID 30893352.
  80. "Uncontacted Indians killed by loggers". Survival International. Archived from the original on June 21, 2018. Retrieved June 20, 2018.
  81. "Amazon tribe under threat". CNN. Archived from the original on February 1, 2015. Retrieved January 27, 2015.
  82. Wilson, E.O.; Peter, F.M., eds. (1988). "Deforestation and Indians in Brazilian Amazonia". Chapter 15, Deforestation and Indians in Brazilian Amazonia. National Academies Press (US). Archived from the original on 2020-11-11. Retrieved 2020-11-24.
  83. "Amazon Deforestation Falls Where Land Is under Indigenous Control". Scientific American. Archived from the original on 26 November 2020. Retrieved 24 November 2020.
  84. "The Brazilian Indians". Survival. 2019. Archived from the original on 2019-04-16. Retrieved 2019-04-29.
  85. "NOK 5.8 billion to the Amazon fund" Archived 2011-07-08 at the Wayback Machine. The Norwegian Mail. September 17, 2008.
  86. Megan Rowling (September 30, 2015). "How to stop deforestation? Make 'good stuff' cheaper" Archived 2023-04-04 at the Wayback Machine. Reuters. Retrieved on October 19, 2015.
  87. "Brazil abolishes huge Amazon reserve in 'biggest attack' in 50 years Archived 2017-10-31 at the Wayback Machine". The Guardian. 24 August 2017.
  88. "Ecuador Amazon tribe win first victory against oil companies". Devdiscourse. 27 April 2019. Archived from the original on 25 July 2020. Retrieved 28 April 2019.
  89. Casado, Letícia; Londoño, Ernesto (2019-07-28). "Under Brazil's Far Right Leader, Amazon Protections Slashed and Forests Fall". The New York Times. ISSN 0362-4331. Archived from the original on 2019-08-23. Retrieved 2019-07-28.
  90. Montaigne, Fen (2019-09-04). "Will Deforestation and Warming Push the Amazon to a Tipping Point?". Yale E360. Archived from the original on 2019-09-30. Retrieved 2019-10-05.
  91. Lovejoy, Thomas E.; Nobre, Carlos (2018-02-01). "Amazon Tipping Point". Science Advances. 4 (2): eaat2340. Bibcode:2018SciA....4.2340L. doi:10.1126/sciadv.aat2340. ISSN 2375-2548. PMC 5821491. PMID 29492460.
  92. Tom Phillips (2019-08-07). "Bolsonaro rejects 'Captain Chainsaw' label as data shows deforestation 'exploded'". The Guardian. Archived from the original on 2019-08-12. Retrieved 2019-08-12.
  93. Eduardo Simões (2019-04-08). "Brazil's Bolsonaro wants U.S. to join development plan for the Amazon". Reuters. Archived from the original on 2019-08-12. Retrieved 2019-08-12.
  94. Dorah Feliciano (2019-07-28). "Bolsonaro Favors Developing Parts of Amazon Forest, Even Selling its Oxygen". riotimesonline.com. Archived from the original on 2019-08-12. Retrieved 2019-08-12.
  95. Rosane, Olivia (August 30, 2019). "Brazil Announces 60-Day Ban on Clearing Land With Fire". Ecowatch. Archived from the original on 1 September 2019. Retrieved 1 September 2019.
  96. Darlington, Shasta (August 29, 2019). "Bolsonaro bans land-clearing fires in Amazon for 60 days". CNN. Archived from the original on 31 August 2019. Retrieved 1 September 2019.
  97. "COP26: Don't Be Fooled by Bolsonaro's Pledges". Human Rights Watch. 2 November 2021. Archived from the original on 11 November 2021. Retrieved 12 November 2021.
  98. "COP26 deforestation: Brazil backtracks on forests pledge before conference is even over". i. 10 November 2021. Archived from the original on 11 November 2021. Retrieved 12 November 2021.
  99. "COP26: World leaders promise to end deforestation by 2030". BBC News. 2 November 2021. Archived from the original on 6 November 2021. Retrieved 12 November 2021.
  100. "Two-day Amazon summit to focus on climate change and human rights". Euronews. 2023-08-08. Retrieved 2023-08-15.
  101. Prange de Oliveira, Astrid. "The Amazon: Once again a Model of Climate Protection, even Beyond Brazil?". WELTHUNGERHILFE.ORG. Retrieved 30 October 2023.
  102. Spring, Jake. "Climate boost: 2023 Amazon deforestation drops 55.8%, study finds". The NRI Nation. Reuters. Retrieved 3 December 2023.
  103. "How much would it cost to end Amazon deforestation?". 27 January 2008. Archived from the original on 20 March 2023. Retrieved 20 March 2023.
  104. "The cost to preserve the Amazon". Archived from the original on 2023-03-20. Retrieved 2023-03-20.
  105. Silva, José Maria Cardoso da; Barbosa, Luís Claudio Fernandes; Topf, Julie; Vieira, Ima Célia G.; Scarano, Fabio R. (July 2022). "Minimum costs to conserve 80% of the Brazilian Amazon". Perspectives in Ecology and Conservation. 20 (3): 216–222. doi:10.1016/j.pecon.2022.03.007. S2CID 248959685. Archived from the original on 2022-07-31. Retrieved 2023-04-04.
  106. "Amazon Deforestation Damage and Recovery in Numbers – Amazon Investor Coalition". Archived from the original on 2023-03-20. Retrieved 2023-03-20.
  107. "The Cost of Reducing Greenhouse Gas Emissions" (PDF). August 2, 2018. Archived (PDF) from the original on 21 December 2020. Retrieved 20 March 2023.
  108. Wallace, Scott (January 2007) "Last of the Amazon" Archived 2014-09-24 at the Wayback Machine. National Geographic magazine. pp. 40–71.
  109. INPE figures Archived 2012-01-19 at the Wayback Machine August to July.
  110. Rowlatt, Justin (January 2, 2012) Saving the Amazon: Winning the war on deforestation Archived 2018-11-05 at the Wayback Machine. BBC
  111. "Desmatamento na Amazônia em junho é 88% maior do que no mesmo período de 2018". G1 (in Brazilian Portuguese). 3 July 2019. Archived from the original on 2019-08-21. Retrieved 2019-07-28.
  112. "MAAP #112: Mennonite colonies - new deforestation driver in the Amazon". Amazon Conservation Association. 18 October 2019. Archived from the original on 23 March 2023.
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