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施用生物炭对土壤真的是碳负排放吗?生命周期评价中方法学决策的影响。

Is application of biochar to soil really carbon negative? The effect of methodological decisions in Life Cycle Assessment.

机构信息

Faculty of Environmental Technology, University of Chemistry and Technology Prague, Technická 5, 160 00 Prague, Czech Republic.

Faculty of Environmental Technology, University of Chemistry and Technology Prague, Technická 5, 160 00 Prague, Czech Republic; Institute of Chemical Process Fundamentals of the Czech Academy of Sciences, v. v. i., Rozvojová 135, 165 02 Prague 6, Czech Republic.

出版信息

Sci Total Environ. 2022 Feb 10;807(Pt 3):151058. doi: 10.1016/j.scitotenv.2021.151058. Epub 2021 Oct 19.

Abstract

One of the proposed solutions for improving soil conditions and mitigating climate change, two of the urgent environmental issues of today, is application of biochar to soil. This carbonaceous material made from a large variety of biomass feedstocks, by several different processes, and at various conditions is envisaged to remain stable in soil for centuries and thus effectively keep carbon out of the atmosphere. Nevertheless, a careful analysis of the entire system of biochar production and application is necessary, before such solutions are applied at a large scale, to avoid creating an even bigger environmental problem. One well-established method to do so is Life Cycle Assessment (LCA). This method has already been applied by many authors to assess biochar-to-soil projects, and based on this literature it appears that biochar application indeed contributes to climate change mitigation. However, even with such a standardized and widely used method like LCA, there are vast methodological differences between the LCA studies. Furthermore, whether the climate impact of biogenic carbon should be considered is an unresolved issue common to all assessments of biomass-utilizing projects. The effects of those and other methodological issues are investigated in the case study of the gasifier in Zlatá Olešnice. The results show that whether a project of biochar application to soil is deemed environmentally beneficial largely depends both on the context of the project as well as the methodological decisions, especially regarding biogenic carbon. Nevertheless, it can be concluded that biochar production from waste feedstock in most cases leads to climate change mitigation.

摘要

一种改善土壤条件和缓解气候变化的方案,这是当今两个紧迫的环境问题之一,是将生物炭应用于土壤。这种由各种生物质原料通过几种不同的工艺,在不同的条件下制成的碳素材料,预计在数百年内将在土壤中稳定存在,从而有效地将碳保留在大气之外。然而,在大规模应用这些解决方案之前,必须对生物炭生产和应用的整个系统进行仔细分析,以避免造成更大的环境问题。一种行之有效的方法是生命周期评估(LCA)。许多作者已经使用这种方法来评估生物炭-土壤项目,根据这些文献,生物炭的应用确实有助于缓解气候变化。然而,即使是像 LCA 这样标准化和广泛使用的方法,在 LCA 研究之间也存在着巨大的方法差异。此外,生物源碳的气候影响是否应该被考虑,这是所有评估生物质利用项目都存在的一个未解决的问题。在 Zlatá Olešnice 气化炉的案例研究中,研究了这些和其他方法问题的影响。结果表明,生物炭应用于土壤的项目是否被认为具有环境效益,在很大程度上取决于项目的背景和方法学决策,特别是关于生物源碳的决策。然而,可以得出结论,在大多数情况下,利用废物原料生产生物炭会导致气候变化的缓解。

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