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Removal of Cr from tannery sludge by bioleaching method
作者姓名:ZHOU Shun-gui  ZHOU Li-xiang  WANG Shi-mei  FANG Di
作者单位:College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China
基金项目:国家自然科学基金;教育部新世纪优秀人才支持计划
摘    要:Bioleaching of Cr(Ⅲ) from tannery sludge using the mixture of ingenuous iron- and sulfur-oxidizing bacteria was investigated in batch flasks. Experiments involved the adaptation of indigenous iron-and sulfur-oxidizing bacteria, the pre-acidification the sludge to pH 6.0 and the addition of energy substrates. Results showed the inoculation of mixture of ingenuous iron- and sulfur-oxidizing bacteria and co-addition of Fe^2 and elemental sulfur accelerated acid production and increase of oxidation-reduction potential originating from the bio-oxidation of Fe2^+ and elemental sulfur. Dissolved Cr concentration increased concomitant with pH decreased in the sludge and reached its maximum removal of 95.6%. The amelioration of the odor of bioleached sludge could be noted. However, 20.4%o of N, 24.5% of P and 14.3% of organic matter were lost in the bioleaching process. The residual Cr content in the leached tannery sludge was acceptable for use in agriculture. This study had shown the feasibility of applying the bioleaching process, developed for sewage sludge, to tannery sludge with high Cr.

关 键 词:制革行业  淤泥    生物浸取  氧化工艺
文章编号:1001-0742(2006)05-0885-06
收稿时间:2005-09-29
修稿时间:2006-02-25

Removal of Cr from tannery sludge by bioleaching method
ZHOU Shun-gui,ZHOU Li-xiang,WANG Shi-mei,FANG Di.Removal of Cr from tannery sludge by bioleaching method[J].Journal of Environmental Sciences,2006,18(5):885-890.
Authors:ZHOU Shun-gui  ZHOU Li-xiang  WANG Shi-mei and FANG Di
Institution:College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China
Abstract:Bioleaching of Cr(III) from tannery sludge using the mixture of ingenuous iron- and sulfur-oxidizing bacteria was inves- tigated in batch flasks. Experiments involved the adaptation of indigenous iron- and sulfur-oxidizing bacteria, the pre-acidification the sludge to pH 6.0 and the addition of energy substrates. Results showed the inoculation of mixture of ingenuous iron- and sulfur-oxidizing bacteria and co-addition of Fe2 and elemental sulfur accelerated acid production and increase of oxidation-reduction potential originating from the bio-oxidation of Fe2 and elemental sulfur. Dissolved Cr concentration increased concomitant with pH decreased in the sludge and reached its maximum removal of 95.6%. The amelioration of the odor of bioleached sludge could be noted. However, 20.4% of N, 24.5% of P and 14.3% of organic matter were lost in the bioleaching process. The residual Cr content in the leached tannery sludge was acceptable for use in agriculture. This study had shown the feasibility of applying the bioleaching process, developed for sewage sludge, to tannery sludge with high Cr.
Keywords:tannery sludge  Cr  removal  bioleaching
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