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利用本地嗜酸异养菌在单级反应器中进行重金属生物浸出和污泥稳定化处理。

Heavy metal bioleaching and sludge stabilization in a single-stage reactor using indigenous acidophilic heterotrophs.

作者信息

Mehrotra Akanksha, Sreekrishnan T R

机构信息

a Department of Biochemical Engineering and Biotechnology , Indian Institute of Technology Delhi , New Delhi , India.

出版信息

Environ Technol. 2017 Nov;38(21):2709-2724. doi: 10.1080/09593330.2016.1275821. Epub 2017 Jan 10.

Abstract

Simultaneous sludge digestion and metal leaching (SSDML) have been reported at mesophilic temperature. It is generally perceived that while sludge stabilization is effected by heterotrophs at neutral pH, metal bioleaching is done by acidophilic autotrophs. However, little information is available on the microbial communities involved in the process. This study carried out SSDML in a single-stage reactor using sludge indigenous microorganisms and looked at the bacterial communities responsible for the process. Volatile suspended solids were reduced by more than 40%. The concentration of zinc, copper, chromium, cadmium and nickel decreased by more than 45% in the dry sludge. Acidophilic species of Alicyclobacillus genus were the dominant heterotrophs. A few heterotrophic bacteria were detected which can oxidize iron (Alicyclobacillus ferrooxydans, Alicyclobacillus ferripilum and Ferrimicrobium acidiphilum). Acidithiobacillus ferrooxidans (autotroph) was responsible for the oxidation of both iron and sulfur which lead to a change in the pH from neutral to acidic. The presence of acidophilic heterotrophs, which can oxidize either iron or sulfur, enhanced the efficiency of SSDML process with respect to sludge stabilization and metal leaching. This study shows that it is possible to carry out the SSDML in a single-stage reactor with indigenous microorganisms.

摘要

据报道,在中温条件下可实现同步污泥消化和金属浸出(SSDML)。一般认为,在中性pH值下,污泥稳定化由异养菌完成,而金属生物浸出则由嗜酸自养菌进行。然而,关于该过程中涉及的微生物群落的信息却很少。本研究使用污泥本地微生物在单级反应器中进行了SSDML,并研究了负责该过程的细菌群落。挥发性悬浮固体减少了40%以上。干污泥中锌、铜、铬、镉和镍的浓度降低了45%以上。 Alicyclobacillus属的嗜酸菌种是主要的异养菌。检测到一些能够氧化铁的异养细菌(氧化亚铁 Alicyclobacillus、嗜铁 Alicyclobacillus 和嗜酸亚铁微菌)。嗜酸氧化亚铁硫杆菌(自养菌)负责铁和硫的氧化,这导致pH值从中性变为酸性。能够氧化铁或硫的嗜酸异养菌的存在提高了SSDML过程在污泥稳定化和金属浸出方面的效率。本研究表明,使用本地微生物在单级反应器中进行SSDML是可行的。

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