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通过Spi SORB去除和回收Cu2+:间歇搅拌和上流式填充床柱状反应器系统

Cu2+ removal and recovery by Spi SORB: batch stirred and up-flow packed bed columnar reactor systems.

作者信息

Vannela Raveender, Verma Sanjay Kumar

机构信息

Civil and Environmental Engineering, The University of Michigan, 1351 Beal Ave, 219 EWRE Bldg., Ann Arbor, MI 48109, USA.

出版信息

Bioprocess Biosyst Eng. 2006 Jun;29(1):7-17. doi: 10.1007/s00449-006-0049-0. Epub 2006 Feb 23.

Abstract

The biosorption of Cu(2+) by free and poly acrylamide gel (PAG) immobilized Spirulina platensis (SpiSORB) was characterized under batch and continuous packed bed columnar reaction systems. The biosorption of Cu(2+) was shown to be highest at pH of 6.0 for both types of biomass. The PAG immobilization process did not interfere with the Cu(2+) binding sites present on biomass leading to cent percent (ca. 250 mg g(-1) of dry biomass) retention of biosorption as compared to free cells. Transmission electron microscopy on Cu(2+) localization revealed that majority of metal is being sequestered by the cell wall only. The infrared spectrum of metal treated S. platensis biomass indicated the possible involvement of amide, amino, and carboxyl groups in metal binding. Up-flow packed bed columnar reactor containing 2.0 g of PAG immobilized S. platensis shown a maximum of 143-fold volume reduction factor at the residence time of 4.6 min for Cu(2+) alone and found to decrease dramatically when Zn(2+ )is present in a bimetallic solution.

摘要

在分批和连续填充床柱状反应系统中,对游离和聚丙烯酰胺凝胶(PAG)固定化的钝顶螺旋藻(SpiSORB)对Cu(2+)的生物吸附特性进行了表征。对于这两种类型的生物质,Cu(2+)的生物吸附在pH为6.0时最高。PAG固定化过程不会干扰生物质上存在的Cu(2+)结合位点,与游离细胞相比,导致生物吸附保留率达到百分之百(约250 mg g(-1)干生物质)。对Cu(2+)定位的透射电子显微镜观察表明,大部分金属仅被细胞壁螯合。金属处理后的钝顶螺旋藻生物质的红外光谱表明,酰胺、氨基和羧基可能参与了金属结合。装有2.0 g PAG固定化钝顶螺旋藻的上流填充床柱状反应器在仅Cu(2+)的停留时间为4.6分钟时,最大体积减少因子为143倍,并且当双金属溶液中存在Zn(2+)时,发现该因子会急剧下降。

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