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Stabilization of fly ash using cementing bacteria. Assessment of cementation and trace element mobilization

机译:使用固井细菌稳定粉煤灰。胶结和微量元素动员评估

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Fly ash from municipal solid waste incineration (MSWI) was treated with microorganisms (Sporosarcina pasteurii and Myxococcus xanthus) to assess their capacity for cementing this waste material. Leaching tests on the samples treated with bacteria were also performed to assess the possibility of recovering and recycling trace elements from the fly ash. Sequential extractions combined with mineralogical studies demonstrated that Pb is mobile in water when associated with portlandite. Also, Cd, Pb, and Zn are primarily associated with carbonates and are mobile in acidic environments (up to 4.8, 13.9 and 248 mg/I of Cd, Pb and Zn, respectively, extracted with acetic acid). Microbial treatment of the fly ash, especially with Sporosarcina pasteurii, led to its cementation and stabilization, preventing its dispersion into the environment. But samples treated with bacteria exhibited a higher capacity for trace element leaching than did untreated fly ash. The ability of these bacteria to mobilize metals can be applied to recover those of economic interest. The use of low cost biotechnologies can be an alternative to chemical treatments currently utilized for the recovery and reuse of these wastes. (C) 2016 Elsevier B.V. All rights reserved.
机译:用微生物(Sporosarcina pasteurii和Myxococcus xanthus)处理了城市垃圾焚烧厂(MSWI)的粉煤灰,以评估其固结这种垃圾的能力。还对用细菌处理过的样品进行了浸出测试,以评估从粉煤灰中回收和回收微量元素的可能性。顺序萃取结合矿物学研究表明,铅与波特兰石结合后在水中可移动。而且,Cd,Pb和Zn主要与碳酸盐有关,并且在酸性环境中可移动(分别用乙酸萃取的Cd,Pb和Zn分别高达4.8、13.9和248 mg / I)。对粉煤灰进行微生物处理,尤其是用巴氏孢子菌进行处理,可使其胶结和稳定,防止其散布到环境中。但是,用细菌处理过的样品比未经处理的粉煤灰显示出更高的微量元素浸出能力。这些细菌动员金属的能力可用于恢复那些具有经济价值的细菌。低成本生物技术的使用可以替代目前用于回收和再利用这些废物的化学处理。 (C)2016 Elsevier B.V.保留所有权利。

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