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用于可持续生物燃料生产的食物垃圾水热碳化:进展、挑战与未来展望。

Hydrothermal carbonization of food waste for sustainable biofuel production: Advancements, challenges, and future prospects.

作者信息

Wu Shuang, Wang Qing, Fang Minghui, Wu Dongyang, Cui Da, Pan Shuo, Bai Jingru, Xu Faxing, Wang Zhenye

机构信息

Engineering Research Centre of Oil Shale Comprehensive Utilization, Ministry of Education, Northeast Electric Power University, Jilin 132012, Jilin, PR China; School of Energy and Power Engineering, Northeast Electric Power University, Jilin 132012, Jilin, PR China.

Engineering Research Centre of Oil Shale Comprehensive Utilization, Ministry of Education, Northeast Electric Power University, Jilin 132012, Jilin, PR China; School of Energy and Power Engineering, Northeast Electric Power University, Jilin 132012, Jilin, PR China.

出版信息

Sci Total Environ. 2023 Nov 1;897:165327. doi: 10.1016/j.scitotenv.2023.165327. Epub 2023 Jul 6.

Abstract

With the improvement of living standards, food waste (FW) has become one of the most important organic solid wastes worldwide. Owing to the high moisture content of FW, hydrothermal carbonization (HTC) technology that can directly utilize the moisture in FW as the reaction medium, is widely used. Under mild reaction conditions and short treatment cycle, this technology can effectively and stably convert high-moisture FW into environmentally friendly hydrochar fuel. In view of the importance of this topic, this study comprehensively reviews the research progress of HTC of FW for biofuel synthesis, and critically summarizes the process parameters, carbonization mechanism, and clean applications. Physicochemical properties and micromorphological evolution of hydrochar, hydrothermal chemical reactions of each model component, and potential risks of hydrochar as a fuel are highlighted. Furthermore, carbonization mechanism of the HTC treatment process of FW and the granulation mechanism of hydrochar are systematically reviewed. Finally, potential risks and knowledge gaps in the synthesis of hydrochar from FW are presented and new coupling technologies are pointed out, highlighting the challenges and prospects of this study.

摘要

随着生活水平的提高,食物垃圾已成为全球最重要的有机固体废物之一。由于食物垃圾含水量高,能直接利用其中水分作为反应介质的水热碳化(HTC)技术被广泛应用。在温和的反应条件和较短的处理周期下,该技术能有效且稳定地将高水分食物垃圾转化为环境友好型生物炭燃料。鉴于此课题的重要性,本研究全面综述了用于生物燃料合成的食物垃圾水热碳化的研究进展,并批判性地总结了工艺参数、碳化机理及清洁应用。重点介绍了生物炭的物理化学性质和微观形态演变、各模型组分的水热化学反应以及生物炭作为燃料的潜在风险。此外,系统综述了食物垃圾水热碳化处理过程的碳化机理和生物炭的造粒机理。最后,阐述了从食物垃圾合成生物炭的潜在风险和知识空白,并指出了新的耦合技术,突出了本研究的挑战与前景。

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