The use of the GEST method to estimate greenhouse gases uptake or emissions in the absence of data for a raised bog

Q2 Social Sciences
Roman Cieśliński
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引用次数: 0

Abstract

The paper is designed to present a method to estimate greenhouse gases (GHG) uptake or emissions in the absence of data for peat bog areas (GEST method). The paper presents the research results produced by a project on “Limiting CO2 emissions via the renaturalisation of peat bogs on the Eastern and Central European Plain”. The study area consisted of three peat bogs: Kluki, Ciemińskie Błota, and Wielkie Bagno (Słowiński National Park). The GEST method relies on the estimation of gas emissions on the basis of vegetation and water levels and greenhouse gas coefficients for each given habitat type provided in the research literature. The greenhouse gas balance was calculated for a baseline scenario assuming the lack of human impact and for a scenario taking into account human impact in the form of peat bog preservation. Initial research results indicate that there is a total of 41 GESTs in the studied bog areas and that a reduction in CO2 emissions of approximately 12% will occur following what is known as renaturalisation by raising the groundwater level, felling of trees across the bog, and making changes in habitats.
在没有凸起沼泽数据的情况下,使用 GEST 方法估算温室气体吸收量或排放量
本文旨在介绍一种在缺乏泥炭沼泽地区数据的情况下估算温室气体(GHG)吸收量或排放量的方法(GEST 方法)。本文介绍了 "通过东欧和中欧平原泥炭沼泽再自然化限制二氧化碳排放 "项目的研究成果。研究区域包括三个泥炭沼泽:Kluki、Ciemińskie Błota 和 Wielkie Bagno(斯沃夫斯基国家公园)。GEST 方法是根据植被和水位以及研究文献中提供的每种特定生境类型的温室气体系数来估算气体排放量。温室气体平衡是根据假定没有人类影响的基线方案和考虑到以泥炭沼泽保护形式存在的人类影响的方案计算得出的。初步研究结果表明,在所研究的沼泽地区总共有 41 个 GESTs,在通过提高地下水位、砍伐沼泽中的树木和改变栖息地进行所谓的重新自然化之后,二氧化碳排放量将减少约 12%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Water and Land Development
Journal of Water and Land Development Social Sciences-Development
CiteScore
2.10
自引率
0.00%
发文量
0
审稿时长
14 weeks
期刊介绍: Journal of Water and Land Development - is a peer reviewed research journal published in English. Journal has been published continually since 1998. From 2013, the journal is published quarterly in the spring, summer, autumn, and winter. In 2011 and 2012 the journal was published twice a year, and between 1998 and 2010 it was published as a yearbook. . Papers may report the results of experiments, theoretical analyses, design of machines and mechanization systems, processes or processing methods, new materials, new measurements methods or new ideas in information technology. Topics: engineering and development of the agricultural environment, water managment in rural areas and protection of water resources, natural and economic functions of grassland.
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