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黑曲霉死菌体生物量去除六价铬的机制

Mechanism of hexavalent chromium removal by dead fungal biomass of Aspergillus niger.

作者信息

Park Donghee, Yun Yeoung-Sang, Jo Ji Hye, Park Jong Moon

机构信息

Advanced Environmental Biotechnology Research Center, Department of Chemical Engineering, School of Environmental Science and Engineering, Pohang University of Science and Technology, San 31, Hyoja-dong, Pohang, Republic of Korea.

出版信息

Water Res. 2005 Feb;39(4):533-40. doi: 10.1016/j.watres.2004.11.002. Epub 2004 Dec 24.

Abstract

When synthetic wastewater containing Cr(VI) was placed in contact with the dead fungal biomass of Aspergillus niger, the Cr(VI) was completely removed from aqueous solution, whereas Cr(III), which was not initially present, appeared in aqueous solution. Desorption and X-ray photoelectron spectroscopy (XPS) studies showed that most of the Cr bound on the biomass was in trivalent form. These results indicated that the main mechanism of Cr(VI) removal was a redox reaction between Cr(VI) and the dead fungal biomass, which is quite different from previously reported mechanisms. The influences of contact time, pH, Cr(VI) concentration, biomass concentration and temperature on Cr(VI) removal were also evaluated. The Cr(VI) removal rate increased with a decrease in pH and with increases in Cr(VI) concentration, biomass concentration and temperature. Although removal kinetics was dependent on the experimental conditions, Cr(VI) was completely removed in the aqueous solution. In conclusion, a new mechanism of Cr(VI) removal by the dead fungal biomass has been proposed. From a practical viewpoint, this abundant and inexpensive dead fungal biomass has potential application in the conversion of toxic Cr(VI) into less toxic or nontoxic Cr(III).

摘要

当含有六价铬的合成废水与黑曲霉的死亡真菌生物质接触时,六价铬从水溶液中被完全去除,而最初不存在的三价铬则出现在水溶液中。解吸和X射线光电子能谱(XPS)研究表明,结合在生物质上的大部分铬呈三价形式。这些结果表明,六价铬去除的主要机制是六价铬与死亡真菌生物质之间的氧化还原反应,这与先前报道的机制有很大不同。还评估了接触时间、pH值、六价铬浓度、生物质浓度和温度对六价铬去除的影响。六价铬去除率随着pH值的降低以及六价铬浓度、生物质浓度和温度的升高而增加。尽管去除动力学取决于实验条件,但六价铬在水溶液中被完全去除。总之,提出了一种由死亡真菌生物质去除六价铬的新机制。从实际角度来看,这种丰富且廉价的死亡真菌生物质在将有毒的六价铬转化为毒性较小或无毒的三价铬方面具有潜在应用价值。

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