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生物炭在可持续农业应用中的生命周期评估:综述。

Life cycle assessment of biochar for sustainable agricultural application: A review.

机构信息

School of Environment and Architecture, University of Shanghai for Science and Technology, 516 Jungong Road, 200093 Shanghai, China.

State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.

出版信息

Sci Total Environ. 2024 Nov 15;951:175448. doi: 10.1016/j.scitotenv.2024.175448. Epub 2024 Aug 11.

Abstract

Biochar application is an effective strategy to address Agro-climatic challenges. However, the agro-environmental impacts of different biochar technology models are lacking of systematic summaries and reviews. Therefore, this paper comprehensively reviews recent developments derived from published literature, delving into the economic implications and environmental benefits of three distinct process namely technologies-pyrolysis, gasification, and hydrothermal carbonization. This paper specifically focuses on the agricultural life cycle assessment (LCA) methodology, and the influence of biochar preparation technologies and products on energy consumption and agricultural carbon emissions. LCA analysis shows that process and feedstock pose a predominant role on the properties and production rate of biochar, while gasification technology exhibits excellent economic attributes compared to the other two technologies. Biochar applications in agricultural has the beneficial effect of sequestering carbon and reducing emissions, especially in the area of mitigating the carbon footprint of farmland. However, the complexity of the composition of the prepared feedstock and the mismatch between the biochar properties and the application scenarios are considered as potential sources of risks. Notably, mechanism of carbon sequestration and emission reduction by soil microorganisms and agro-environmental sequestration by biochar application remains unclear, calling for in-depth studies. We review novel aspects that have not been covered by previous reviews by comparing the technical, economic, and environmental benefits of pyrolysis, gasification, and hydrothermal carbonization systematically. Overall, this study will provide a valuable framework to environmental implications of biochar preparation, application, and life cycle assessments.

摘要

生物炭的应用是应对农业气候挑战的有效策略。然而,不同生物炭技术模型的农业环境影响缺乏系统的总结和评价。因此,本文通过综合分析已发表文献,全面回顾了生物炭技术的最新发展,深入探讨了三种不同工艺(热解、气化和水热碳化)的经济意义和环境效益。本文特别关注农业生命周期评估(LCA)方法,以及生物炭制备技术和产品对能源消耗和农业碳排放的影响。LCA 分析表明,工艺和原料对生物炭的性质和生产速率起着主要作用,而与其他两种技术相比,气化技术具有优异的经济属性。生物炭在农业中的应用具有固碳减排的有益效果,特别是在减轻农田碳足迹方面。然而,制备原料的组成复杂性以及生物炭性质与应用场景之间的不匹配被认为是潜在的风险来源。值得注意的是,土壤微生物固碳减排和生物炭应用的农业环境固碳的机制仍不清楚,需要深入研究。我们通过系统比较热解、气化和水热碳化的技术、经济和环境效益,综述了以前的综述中未涵盖的新方面。总的来说,本研究将为生物炭制备、应用和生命周期评估的环境影响提供有价值的框架。

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