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首页> 外文期刊>Applied Microbiology and Biotechnology >Cunninghamella elegans biomass optimisation for textile wastewater biosorption treatment: An analytical and ecotoxicological approach
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Cunninghamella elegans biomass optimisation for textile wastewater biosorption treatment: An analytical and ecotoxicological approach

机译:秀丽线虫生物量优化用于纺织废水生物吸附处理:一种分析和生态毒理学方法

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The effect of pre-treatments on the composition of Cunninghamella elegans biomass and on its biosorption yields in the treatment of simulated textile wastewaters was investigated. The inactivated biomass was subjected to physical treatments, such as oven drying and lyophilisation, and chemical treatments using acid or alkali. The wastewater colour, COD and toxicity variations were evaluated. The lyophilisation sped up the biosorption process, whereas the chemical pre-treatment changed the affinity of biomass for different dyes. The alkali per-treated biomass achieved the highest COD reduction in the treatment of alkali wastewaters, probably because no release of alkali-soluble biomass components occurred under the alkaline pH conditions. Accordingly, only the acid pre-treated biomass decreased the COD of the acidic effluent. The ecotoxicity test showed significant toxicity reduction after biosorption treatments, indicating that decolourisation corresponds to an actual detoxification of the treated wastewaters. Fourier transform infrared spectroscopy, differential scanning calorimetry and thermogravimetric analyses of biomasses allowed highlighting their main chemical and physical properties and the changes induced by the different pre-treatments, as well as the effect of the chemical species adsorbed from wastewaters.
机译:研究了预处理对秀丽线虫生物量组成及其在模拟纺织品废水处理中的生物吸附量的影响。将灭活的生物质进行物理处理,例如烤箱干燥和冻干,以及使用酸或碱进行化学处理。评价了废水的颜色,化学需氧量和毒性变化。冻干加速了生物吸附过程,而化学预处理改变了生物质对不同染料的亲和力。在碱性废水的处理中,用碱处理过的生物质实现了最高的COD减少,这可能是因为在碱性pH条件下没有发生碱溶性生物质组分的释放。因此,仅酸预处理的生物质降低了酸性流出物的COD。生态毒性测试表明,生物吸附处理后毒性显着降低,表明脱色对应于处理后废水的实际脱毒。对生物质进行傅里叶变换红外光谱,差示扫描量热法和热重分析可以突出显示其主要化学和物理性质以及不同预处理引起的变化,以及废水中吸附的化学物质的影响。

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