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首页> 外文期刊>Chemosphere >Bioleaching of metal from municipal waste incineration fly ash using a mixed culture of sulfur-oxidizing and iron-oxidizing bacteria
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Bioleaching of metal from municipal waste incineration fly ash using a mixed culture of sulfur-oxidizing and iron-oxidizing bacteria

机译:使用硫氧化菌和铁氧化菌的混合培养物对市政垃圾焚烧飞灰中的金属进行生物浸出

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摘要

We investigated the behavior and characteristics of metal leaching from municipal solid waste incineration (MSWI) fly ash among pure cultures of a sulfur-oxidizing bacterium (SOB) and an iron-oxidizing bacterium (IOB) and a mixed culture. The IOB has a high metal-leaching ability, though its tolerability against the ash addition is low. The SOB might better tolerate an increase in ash addition than the IOB, though metal leaching ability of the SOB is limited. Mixed culture could compensate for these deficiencies, and high metal leachability was exhibited in the 1% ash culture, i.e., 67% and 78% of leachabilities for Cu and Zn, respectively, and 100% for Cr and Cd. Furthermore, comparably high leachabilities such as 42% and 78% for Cu and Zn were observed even in the 3% ash cultures. Characterization of metal leaching by the mixed culture revealed that the acidic and oxidizing condition had remained stable thorough the experimental period. Ferric iron remained in the mixed culture, and the metal leaching was enhanced by redox mechanisms coupling with the leaching by sulfate. An increase of ferrous iron enhanced the Cr, Cu, and As leaching. The optimum concentration of sulfur existed for As and Cr (5 g l(-1)) and Cu (2 g l(-1)). The presence of the degradable and non-degradable organic compound that must be existed in the natural environment or waste landfills made no significant change in the leachability of metals other than Zn. These results suggested that bioleaching using a mixed culture of SOB and IOB is a promising technology for recovering the valuable metals from MSWI fly ash. (C) 2005 Elsevier Ltd. All rights reserved.
机译:我们调查了纯氧化硫细菌(SOB)和铁氧化细菌(IOB)的纯培养物以及混合培养物中城市垃圾焚烧(MSWI)飞灰中金属浸出的行为和特征。 IOB具有高的金属浸出能力,尽管其对灰分添加的耐受性低。尽管SOB的金属浸出能力受到限制,但SOB可能比IOB更好地耐受灰分的增加。混合培养可以弥补这些不足,在1%的灰分培养物中表现出较高的金属浸出率,即Cu和Zn浸出率分别为67%和78%,Cr和Cd浸出率均为100%。此外,甚至在3%的灰分培养物中也观察到了较高的浸出率,例如Cu和Zn的浸出率分别为42%和78%。混合培养物浸出金属的特征表明,在整个实验期间,酸性和氧化性条件保持稳定。三价铁保留在混合培养物中,金属的浸出通过氧化还原机制与硫酸盐的浸出结合而得以增强。亚铁的增加增加了Cr,Cu和As的浸出。对于As和Cr(5 g l(-1))和Cu(2 g l(-1)),存在最佳的硫浓度。自然环境或垃圾填埋场中必须存在的可降解和不可降解有机化合物的存在,对锌以外的其他金属的浸出性没有重大影响。这些结果表明,使用SOB和IOB的混合培养物进行生物浸出是从MSWI粉煤灰中回收有价值金属的有前途的技术。 (C)2005 Elsevier Ltd.保留所有权利。

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