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从城市固体废物焚烧飞灰中去除金属:化学浸出与生物浸出的比较。

Metal removal from Municipal Solid Waste Incineration fly ash: A comparison between chemical leaching and bioleaching.

作者信息

Funari V, Mäkinen J, Salminen J, Braga R, Dinelli E, Revitzer H

机构信息

Department of Biological Geological and Environmental Sciences, University of Bologna, Bologna, Italy.

VTT Technical Research Centre of Finland Ltd, Espoo, Finland.

出版信息

Waste Manag. 2017 Feb;60:397-406. doi: 10.1016/j.wasman.2016.07.025. Epub 2016 Jul 28.

Abstract

Bio- and hydrometallurgical experimental setups at 2-l reactor scale for the processing of fly ash from municipal waste incinerators were explored. We aimed to compare chemical HSO leaching and bioleaching; the latter involved the use of HSO and a mixed culture of acidophilic bacteria. The leaching yields of several elements, including some of those considered as critical (Mg, Co, Ce, Cr, Ga, Nb, Nd, Sb and Sm), are provided. At the end of the experiments, both leaching methods resulted in comparable yields for Mg and Zn (>90%), Al and Mn (>85%), Cr (∼65%), Ga (∼60%), and Ce (∼50%). Chemical leaching showed the best yields for Cu (95%), Fe (91%), and Ni (93%), whereas bioleaching was effective for Nd (76%), Pb (59%), and Co (55%). The two leaching methods generated solids of different quality with respect to the original material as we removed and significantly reduced the metals amounts, and enriched solutions where metals can be recovered for example as mixed salts for further treatment. Compared to chemical leaching the bioleaching halved the use of HSO, i.e., a part of agent costs, as a likely consequence of bio-produced acid and improved metal solubility.

摘要

探索了用于处理城市垃圾焚烧炉飞灰的2升反应器规模的生物和湿法冶金实验装置。我们旨在比较化学HSO浸出和生物浸出;后者涉及使用HSO和嗜酸细菌的混合培养物。提供了几种元素的浸出率,包括一些被视为关键元素的元素(Mg、Co、Ce、Cr、Ga、Nb、Nd、Sb和Sm)。在实验结束时,两种浸出方法对Mg和Zn(>90%)、Al和Mn(>85%)、Cr(65%)、Ga(60%)和Ce(~50%)的浸出率相当。化学浸出对Cu(95%)、Fe(91%)和Ni(93%)的浸出率最高,而生物浸出对Nd(76%)、Pb(59%)和Co(55%)有效。两种浸出方法产生的固体相对于原始材料质量不同,因为我们去除并显著减少了金属量,并富集了可以回收金属的溶液,例如作为混合盐进行进一步处理。与化学浸出相比,生物浸出将HSO的使用量减半,即部分试剂成本,这可能是生物产生的酸和提高的金属溶解度的结果。

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