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钝顶螺旋藻干燥及复水生物质对铜的去除

Copper removal by dry and re-hydrated biomass of Spirulina platensis.

作者信息

Solisio C, Lodi A, Torre P, Converti A, Del Borghi M

机构信息

Department of Chemical and Process Engineering, G.B. Bonino, Genoa University, Via Opera Pia 15, I-16145 Genoa, Italy.

出版信息

Bioresour Technol. 2006 Sep;97(14):1756-60. doi: 10.1016/j.biortech.2005.07.018. Epub 2005 Sep 12.

Abstract

Dried and re-hydrated biomass of Spirulina platensis was employed as a sorbent in tests of copper removal from water. Biomass re-hydrated for 24 h before use exhibited a shorter adsorption time as well as an increased percentage removal when compared with simply dried biomass. The combined effects of the concentrations of re-hydrated biomass (from 1.0 to 4.0 g l-1) and copper (from 0.1 to 0.4 g l-1) were then investigated. Copper was almost entirely removed (91% removal) at relatively high biomass levels (X0>or=2.0 gDM l-1), while 1.0 gDM l-1 removed only 81% of copper present initially, suggesting a situation of excess metal with respect to the adsorption capacity of biomass. Additional tests performed with biomass re-hydrated for variable time demonstrated that no less than 48 h of this treatment are needed to ensure a satisfactory copper removal, while no significant improvement was detected using biomass re-hydrated for longer times.

摘要

钝顶螺旋藻的干燥及复水生物质被用作从水中去除铜的吸附剂。与简单干燥的生物质相比,使用前复水24小时的生物质表现出更短的吸附时间以及更高的去除率。然后研究了复水生物质浓度(从1.0至4.0 g l-1)和铜浓度(从0.1至0.4 g l-1)的综合影响。在相对较高的生物质水平(X0≥2.0 gDM l-1)下,铜几乎被完全去除(去除率91%),而1.0 gDM l-1仅去除了初始存在的铜的81%,这表明相对于生物质的吸附容量存在金属过量的情况。对不同复水时间的生物质进行的额外测试表明,需要不少于48小时的这种处理才能确保令人满意的铜去除效果,而使用复水时间更长的生物质未检测到显著改善。

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