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负载重金属的污水污泥的稳定化:综述实现能源可持续性的传统到最先进的热处理方法。

Stabilization of heavy metals loaded sewage sludge: Reviewing conventional to state-of-the-art thermal treatments in achieving energy sustainability.

机构信息

Department of Fundamental and Applied Sciences, HICoE-Centre for Biofuel and Biochemical Research, Institute of Self-Sustainable Building, Universiti Teknologi PETRONAS, 32610, Seri Iskandar, Perak Darul Ridzuan, Malaysia.

Department of Chemical Engineering, Faculty of Engineering and Industrial Technology, Silpakorn University, Nakhon Pathom, 73000, Thailand.

出版信息

Chemosphere. 2021 Aug;277:130310. doi: 10.1016/j.chemosphere.2021.130310. Epub 2021 Mar 17.

Abstract

Sewage sludge has long been regarded as a hazardous waste by virtue of the loaded heavy metals and pathogens. Recently, more advanced technologies are introduced to make use of the nutrients from this hazardous sludge. Successful recovery of sludge's carbon content could significantly convert waste to energy and promote energy sustainability. Meanwhile, the recovery of nitrogen and trace minerals allows the production of fertilizers. This review is elucidating the performances of modern thermal treatment technologies in recovering resources from sewage sludge while reducing its environmental impacts. Exhaustive investigations show that most modern technologies are capable of recovering sludge's carbon content for energy generation. Concurrently, the technologies could as well stabilize heavy metals, destroy harmful pathogens, and reduce the volume of sludge to minimize the environmental impacts. Nevertheless, the high initial investment cost still poses a huge hurdle for many developing countries. Since the initial investment cost is inevitable, the future works should focus on improving the profit margin of thermal technologies; so that it would be more financially attractive. This can be done through process optimization, improved process design as well as the use of suitable co-substrates, additives, and catalyst as propounded in the review.

摘要

污水污泥由于负载重金属和病原体而长期以来被视为危险废物。最近,更先进的技术被引入以利用这种危险污泥中的营养物质。成功回收污泥的碳含量可以显著地将废物转化为能源,并促进能源可持续性。同时,氮和痕量矿物质的回收可生产肥料。本综述阐述了现代热处理技术在从污水污泥中回收资源同时减少其环境影响的性能。详尽的调查表明,大多数现代技术都能够回收污泥的碳含量用于能源生产。同时,这些技术还可以稳定重金属、破坏有害病原体,并减少污泥体积以最小化环境影响。然而,高初始投资成本仍然对许多发展中国家构成巨大障碍。由于初始投资成本是不可避免的,未来的工作应侧重于提高热技术的利润率;使其在财务上更具吸引力。这可以通过工艺优化、改进工艺设计以及使用合适的共底物、添加剂和催化剂来实现,正如综述中所提出的那样。

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