工业废水对第三氧化塘岸沉积物菌群的影响及重金属的生物吸附。

Acta microbiologica Polonica Pub Date : 2002-01-01
Eman F Sharaf
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引用次数: 0

摘要

位于拉马丹沙漠10号的第三氧化池接收了大量被重金属离子Zn、Cd、Cu和Ni污染的工业废水。研究了7个不同地点的陆地沉积物和近海沉积物的物种多样性和真菌群落结构。真菌学分析结果分离出3912个菌落,其中11.7%来自沙漠中陆上沉积物点(4个点),88.3%来自近海沉积物点(3个点)。真菌数量和物种多样性随着远离废水输入的距离增加而增加。各采样点真菌总数和种类变异与有机质含量完全一致。在重金属含量和多样性的情况下,这一关系是相反的。所有研究点共分离到7属17种真菌。其中以曲霉属(Aspergillus spp.)最多,占总菌株的51.7%,其次为曲霉属(Curvularia)、头孢菌(cephalopsporium)和Humicola。9种分离曲霉中,葎草曲霉最占优势(占总捕获量的37.4%),在所有污染地点均有发现。因此,选择葎草为研究对象,研究其对污染废水出水重金属的吸附潜力。4日龄生物质颗粒吸附大量重金属的顺序为:Zn>Cd>Cu>Ni离子。搅拌对Zn和Cd的吸附有显著的促进作用,对Cu和Ni的吸附没有显著的促进作用。重金属的吸附在较宽的pH范围内发生,特别是在碱性pH下(8-9)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of industrial waste water effluents on mycoflora of the shore sediments of the 3rd oxidation pond, with reference to biosorption of heavy metals.

The third oxidation pond at 10th of Ramadan desert receives a number of industrial waste water effluents contaminated with the heavy metal ions Zn, Cd, Cu and Ni. The species diversity and fungal community structure of seven different sites at the onshore sediments and offshore were studied. Mycological analysis resulted in isolation of 3912 fungal colonies, 11.7% of this count were recovered from the onshore sediment sites (4 sites) whereas 88.3% were from the offshore sites (3 sites), in the desert. Fungal counts and species diversity at the onshore sites tend to increase with increasing distance far from the waste water input. A complete accordance was observed among the total fungal counts and species variabilities with organic matter content at each sampling site. This relationship was reversed in case of heavy metal contents with both counts and diversity. Seventeen fungal species belonging to seven genera were isolated from all sites under study. Aspergillus spp. constituted the majority of the isolates (51.7% of the total isolates), followed by Curvularia, Cephalosporium, and Humicola. Of nine isolated Aspergillus spp., A. humicola was the most dominant (37.4% of the total catch) and appeared at all polluted sites. Therefore, A. humicola was chosen to investigate its potential for heavy metals sorption from the contaminated waste water effluent. Four days old biomass pellets could sorb a large amount of heavy metals according to the following sequence: Zn>Cd>Cu>Ni ions. Agitation significantly increased Zn and Cd sorption, but not Cu and Ni. Heavy metals sorption took place at a wide pH range and particularly increased at alkaline pH (8-9).

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