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水热法从市政污泥中制备水炭:形成、特性和增值的研究进展。

Hydrochar derived from municipal sludge through hydrothermal processing: A critical review on its formation, characterization, and valorization.

机构信息

UBC Bioreactor Technology Group, School of Engineering, The University of British Columbia, Okanagan Campus, 1137 Alumni Avenue, Kelowna, British Columbia, V1V 1V7, Canada.

Université de Toulouse, IMT Mines Albi, RAPSODEE CNRS UMR-5302, Campus Jarlard, Albi, 81013 Cedex 09, France.

出版信息

Water Res. 2021 Jul 1;199:117186. doi: 10.1016/j.watres.2021.117186. Epub 2021 Apr 24.

Abstract

Additional options for the sustainable treatment of municipal sludge are required due to the significant amounts of sludge, high levels of nutrients (e.g., C, N, and P), and trace constituents it contains. Hydrothermal processing of municipal sludge has recently been recognized as a promising technology to efficiently reduce waste volume, recover bioenergy, destroy organic contaminants, and eliminate pathogens. However, a considerable amount of solid residue, called hydrochar, could remain after hydrothermal treatment. This hydrochar can contain abundant amounts of energy (with a higher heating value up to 24 MJ/kg, dry basis), nutrients, and trace elements, as well as surface functional groups. The valorization of sludge-derived hydrochar can facilitate the development and application of hydrothermal technologies. This review summarizes the formation pathways from municipal sludge to hydrochar, specifically, the impact of hydrothermal conditions on reaction mechanisms and product distribution. Moreover, this study comprehensively encapsulates the described characteristics of hydrochar produced under a wide range of conditions: Yield, energy density, physicochemical properties, elemental distribution, contaminants of concern, surface functionality, and morphology. More importantly, this review compares and evaluates the current state of applications of hydrochar: Energy production, agricultural application, adsorption, heterogeneous catalysis, and nutrient recovery. Ultimately, along with the identified challenges and prospects of valorization approaches for sludge-derived hydrochar, conceptual designs of sustainable municipal sludge management are proposed.

摘要

由于市政污泥数量巨大、养分(如 C、N 和 P)含量高以及痕量成分,因此需要额外的可持续处理市政污泥的选择方案。水热处理市政污泥最近被认为是一种很有前途的技术,可以有效地减少废物量、回收生物能源、破坏有机污染物和消除病原体。然而,水热处理后仍会留下相当数量的固体残留物,称为水热炭。这种水热炭可以含有丰富的能量(高位热值高达 24 MJ/kg,干基)、养分和痕量元素,以及表面官能团。污泥衍生水热炭的增值利用可以促进水热技术的开发和应用。本综述总结了从市政污泥到水热炭的形成途径,特别是水热条件对反应机制和产物分布的影响。此外,本研究全面总结了在广泛条件下产生的水热炭的描述特性:产率、能量密度、物理化学性质、元素分布、关注的污染物、表面官能团和形态。更重要的是,本综述比较和评估了水热炭的当前应用状态:能源生产、农业应用、吸附、多相催化和养分回收。最终,提出了污泥衍生水热炭增值方法的确定挑战和前景,并提出了可持续市政污泥管理的概念设计。

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