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从城市垃圾焚烧厂的飞灰和底灰等低品位废物中生物浸出回收资源:SWOT 分析。

Bioleaching for resource recovery from low-grade wastes like fly and bottom ashes from municipal incinerators: A SWOT analysis.

机构信息

Food, Water, Waste Research Group, Faculty of Engineering, University of Nottingham, University Park, Nottingham NG7 2RD, UK.

ISMAR-CNR, National Research Council, via P. Gobetti, 101, 40129 Bologna, Italy; Biotechnology Division, Stazione Zoologica Anton Dohrn SZN, Villa Comunale I, Napoli, Italy.

出版信息

Sci Total Environ. 2020 May 1;715:136945. doi: 10.1016/j.scitotenv.2020.136945. Epub 2020 Jan 25.

Abstract

Bioleaching (or microbial leaching) is a biohydrometallurgical technology that can be applied for metal recovery from anthropogenic waste streams. In particular, fly ashes and bottom ashes of municipal solid waste incineration (MSWI) can be used as a target material for biomining. Globally, approximately 46 million tonnes of MSWI ashes are produced annually. Currently landfilled or used as aggregate, these contain large amounts of marketable metals, equivalent to low-grade ores. There is opportunity to recover critical materials as the circular economy demands, using mesophile, moderately thermophile, and extremophile microorganisms for bioleaching. A Strengths, Weaknesses, Opportunities and Threats (SWOT) analysis was developed to assess the potential of this biotechnology to recover critical metals from MSWI wastes. Bioleaching has potential as a sustainable technology for resource recovery and enhanced waste management. However, stakeholders can only reap the full benefits of bioleaching by addressing both the technical engineering challenges and regulatory requirements needed to realise and integrated approach to resource use.

摘要

生物浸出(或微生物浸出)是一种生物冶金技术,可用于从人为废物流中回收金属。特别是,城市固体废物焚烧(MSWI)的飞灰和底灰可以用作生物采矿的目标材料。全球每年大约产生 4600 万吨 MSWI 灰。目前,这些灰被填埋或用作骨料,其中含有大量有市场价值的金属,相当于低品位矿石。有机会根据循环经济的要求回收关键材料,使用中温菌、中高温菌和极端微生物进行生物浸出。为了评估该生物技术从 MSWI 废物中回收关键金属的潜力,开发了一种优势、劣势、机会和威胁(SWOT)分析。生物浸出作为一种可持续的资源回收和加强废物管理技术具有潜力。然而,利益相关者只有通过解决实现资源利用综合方法所需的技术工程挑战和监管要求,才能充分受益于生物浸出。

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