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在中性pH值下从海洋结核中溶解钴——一种新型生物工艺。

Solubilization of cobalt from ocean nodules at neutral pH-a novel bioprocess.

作者信息

Mukherjee Amitava, Raichur Ashok M, Modak Jayant M, Natarajan K A

机构信息

Department of Metallurgy, Indian Institute of Science, 560012 Bangalore, India.

出版信息

J Ind Microbiol Biotechnol. 2003 Oct;30(10):606-12. doi: 10.1007/s10295-003-0092-7. Epub 2003 Oct 16.

Abstract

A marine organism ( Bacillus M1) isolated from Indian Ocean manganese nodules was characterized. The organism grew well in artificial seawater medium, at near neutral pH, 30 degrees C and 0.25 M NaCl, and showed MnO(2)-reducing activity. Growing cultures of Bacillus M1 as well as cell-free spent liquor from fully-grown cultures were employed to extract metals from the nodules. The spent liquor of cultures of the organism could dissolve around 45% cobalt (Co) at a pH of 8.2 in 2 h. Co recovery by this treatment was comparable to that in acidic leaching with 2.5 M hydrochloric acid solutions, and was independent of pulp density (w/v ratio). The amount of Co dissolved was beyond the thermodynamic solubility limit in aqueous solution at a pH of 8.2. It is inferred that the metabolites present in the spent liquor played a pivotal role in complexing the Fe (III) phase, solubilizing Co in the process. Partial characterization of spent liquor by spot tests, UV visible spectroscopy and FTIR spectroscopy, showed the presence of siderophore-like phenolic compound(s) with an attached carboxyl group that might form soluble organic complexes with Fe (III).

摘要

对从印度洋锰结核中分离出的一种海洋生物(芽孢杆菌M1)进行了特性鉴定。该生物在人工海水培养基中、接近中性的pH值、30摄氏度和0.25 M氯化钠条件下生长良好,并表现出二氧化锰还原活性。利用芽孢杆菌M1的生长培养物以及完全生长培养物的无细胞废液从结核中提取金属。该生物培养物的废液在pH值为8.2的条件下2小时内可溶解约45%的钴(Co)。通过这种处理回收的钴与用2.5 M盐酸溶液进行酸性浸出的回收量相当,且与矿浆密度(w/v比)无关。在pH值为8.2时,溶解的钴量超出了其在水溶液中的热力学溶解度极限。据推测,废液中存在的代谢产物在络合铁(III)相、在此过程中溶解钴方面发挥了关键作用。通过斑点试验、紫外可见光谱和傅里叶变换红外光谱对废液进行的部分特性鉴定表明,存在带有羧基的类似铁载体的酚类化合物,其可能与铁(III)形成可溶性有机络合物。

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