4.7 Article

Missed carbon emissions from forests: comparing countries' estimates submitted to UNFCCC to biophysical estimates

期刊

ENVIRONMENTAL RESEARCH LETTERS
卷 14, 期 2, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1748-9326/aafc6b

关键词

land cover; land use; REDD; deforestation; carbon emissions; forest reference emission levels; UNFCCC

资金

  1. Japan Student Services Organization's postgraduate scholarship for overseas education
  2. NERC [NE/P008755/1]
  3. ERC Starting Grant FODEX

向作者/读者索取更多资源

Reducing forest loss has the potential to reduce global carbon emissions, but paying countries to do so will only work if activities are targeting areas with rapid deforestation or high threat. As of December 2017, 25 countries reported their benchmark greenhouse gas emissions from forests ('reference levels') under the United Nations Framework Convention on Climate Change, with the aim of receiving payments if they end up releasing less or removing more. There remains however a question as to whether the eventual emission trajectories compared to these reference levels represent real emission reductions, as the benchmarks rely on a variety of different methods and limited datasets. To examine whether the forest areas historically associated with significant emissions are targeted in the reference levels, we compared the forest area estimates submitted by seven countries in Asia and the Pacific (Cambodia, Indonesia, Malaysia, Nepal, Papua New Guinea, Sri Lanka, and Vietnam) with forest area estimates using the Global Forest Change v1.4 (GFC) dataset from 2000-2016, processed to closely match national forest definitions. GFC provides standardised tree cover change data based on biophysical characteristics using an extensive collection of satellite images. We found consistent differences, with most countries reporting considerably less forest loss than the GFC-based analysis. These differences are due to the countries' selection of activities to report, as well as their choice of forest types and land use, defining the forest areas to be monitored. Our study highlights an urgent need to address the gap between the forests monitored by countries and those sources of emissions. The current approaches, even successfully implemented, may not lead to emission reductions, thereby challenging the effectiveness of carbon payments.

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