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东南亚泥炭地的减少导致美国生物燃料的温室气体排放。

Peatland Loss in Southeast Asia Contributing to U.S. Biofuel's Greenhouse Gas Emissions.

机构信息

School of Atmospheric Sciences, Guangdong Province Key Laboratory for Climate Change and Natural Disaster Studies, Sun Yat-sen University; Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Zhuhai 519000, China.

Energy Systems and Infrastructure Analysis Division, Argonne National Laboratory, Lemont, Illinois 60439, United States.

出版信息

Environ Sci Technol. 2022 Sep 20;56(18):13284-13293. doi: 10.1021/acs.est.2c01561. Epub 2022 Aug 30.

Abstract

Land use change (LUC) induced by biofuel production could lead to greenhouse gas (GHG) emissions, which potentially increase biofuel's carbon intensity. Among the sources of LUC-related emissions for soy biodiesel, the contribution from peatland loss to agricultural plantations in Southeast Asia remains uncertain. Here, we analyzed LUC in Malaysia and Indonesia and modeled its impacts on the GHG emissions of soy biodiesel produced in the United States. It shows that oil palm plantations have more than doubled over 2001-2016 and the area of palm-on-peatlands (PoP) has expanded 3.7 times. Over new palm plantations, the share of PoP is about 19% regardless of time and location and the emission factor (EF) for peatland-to-palm conversion is estimated to be 41.5 Mg CO ha yr. With these updates on PoP and EF, the contribution of peatland loss (0.7-5.1 g COe MJ) to biodiesel emissions is only 40-65% of previous estimates, which reduces discrepancies among model simulations used by different agencies. Based on emerging evidence on LUC and related carbon changes, our analysis reexamines regional peatland loss and its impacts on LUC emissions modeling and provides new insights into the estimation of LUC impacts on biofuels' carbon intensity.

摘要

生物燃料生产导致的土地利用变化(LUC)可能导致温室气体(GHG)排放,从而增加生物燃料的碳强度。在大豆生物柴油的 LUC 相关排放源中,东南亚泥炭地向农业种植园的损失对其的贡献仍不确定。在这里,我们分析了马来西亚和印度尼西亚的 LUC 情况,并对其对美国生产的大豆生物柴油的温室气体排放的影响进行了建模。结果表明,2001 年至 2016 年间,油棕种植园的面积增加了一倍以上,而棕榈油种植园的面积扩大了 3.7 倍。在新的油棕种植园中,无论时间和地点如何,PoP 的比例约为 19%,泥炭地到油棕的转换排放因子(EF)估计为 41.5 Mg CO ha yr。随着 PoP 和 EF 的这些更新,泥炭地损失(0.7-5.1 g COe MJ)对生物柴油排放的贡献仅为先前估计值的 40-65%,从而减少了不同机构使用的模型模拟之间的差异。基于 LUC 和相关碳变化的新证据,我们的分析重新审视了区域泥炭地损失及其对 LUC 排放建模的影响,并为生物燃料碳强度的 LUC 影响估计提供了新的见解。

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