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用于火灾管理和减排的稀树草原燃烧方法:影响因素的批判性综述

Savanna burning methodology for fire management and emissions reduction: a critical review of influencing factors.

作者信息

Maraseni Tek Narayan, Reardon-Smith Kathryn, Griffiths Greg, Apan Armando

机构信息

Institute for Agriculture and the Environment, University of Southern Queensland, Toowoomba, 4350 Australia.

Natural Resources Management and Parks, South Burnett Regional Council, Queensland, 4610 Australia.

出版信息

Carbon Balance Manag. 2016 Nov 16;11(1):25. doi: 10.1186/s13021-016-0067-4. eCollection 2016 Dec.

Abstract

Savanna fire is a major source of global greenhouse gas (GHG) emissions. In Australia, savanna fire contributes about 3% of annual GHG emissions reportable to the Kyoto Protocol. In order to reduce GHG emissions from savanna burning, the Australian government has developed and approved a Kyoto compliant savanna controlled burning methodology-the first legal instrument of this kind at a global level-under its Emission Reduction Fund. However, this approved methodology is currently only applicable to nine vegetation fuel types across northern parts of Australia in areas which receive on average over 600 mm rainfall annually, covering only 15.4% of the total land area in Australia. Savanna ecosystems extend across a large proportion of mainland Australia. This paper provides a critical review of ten key factors that need to be considered in developing a savanna burning methodology applicable to the other parts of Australia. It will also inform discussion in other countries intent on developing similar emissions reduction strategies.

摘要

稀树草原火灾是全球温室气体排放的一个主要来源。在澳大利亚,稀树草原火灾约占根据《京都议定书》应报告的年度温室气体排放量的3%。为了减少稀树草原燃烧产生的温室气体排放,澳大利亚政府在其减排基金下制定并批准了一种符合《京都议定书》的稀树草原控制燃烧方法——这是全球首个此类法律文书。然而,目前这种已批准的方法仅适用于澳大利亚北部年平均降雨量超过600毫米地区的九种植被燃料类型,仅覆盖澳大利亚陆地总面积的15.4%。稀树草原生态系统覆盖了澳大利亚大陆的很大一部分。本文对在制定适用于澳大利亚其他地区的稀树草原燃烧方法时需要考虑的十个关键因素进行了批判性审视。它还将为其他有意制定类似减排战略的国家的讨论提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbb1/5241595/553476b0d160/13021_2016_67_Fig1_HTML.jpg

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