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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simultaneous nitrate, nickel ions and phosphorus removal in a bioreactor containing a novel composite material
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Simultaneous nitrate, nickel ions and phosphorus removal in a bioreactor containing a novel composite material

机译:在含有新型复合材料的生物反应器中同时硝酸盐,镍离子和磷去除

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This study presents the novel composite material TMCC/PAA/SA@Fe(TPSA), a bacteria immobilized carrier for use in bioreactor systems to enhance the simultaneous removal efficiency of nitrate, Ni(II) and phosphorus. The influence of various operational factors were evaluated on the performance of nitrate, phosphorus and Ni(II) removal. Results demonstrate that under optimum conditions of an hydraulic retention time (HRT) of 8 h and pH 7.0, nitrate and phosphorus removal reached nearly 100% and 61.7%, respectively. When the initial Ni(II) concentration was 1 mg/L, approximately 100% Ni(II) removal efficiency was achieved. Furthermore, the morphology and components of the TPSA immobilized bacterial pellets were analyzed to investigate the mechanism of simultaneous nitrate, Ni(II) and phosphorus removal. Microbial metabolism was more active in the experimental reactor compared with control, although high concentrations of Ni(II) could inhibit bacterial activity.
机译:本研究介绍了新型复合材料TMCC / PAA / SA @ Fe(TPSA),用于生物反应器系统的细菌固定的载体,以增强硝酸盐,Ni(II)和磷的同时去除效率。 评估各种操作因子的影响对硝酸盐,磷和Ni(II)除去的性能。 结果表明,在8小时和pH7.0的液压保留时间(HRT)的最佳条件下,硝酸盐和磷除去分别达到近100%和61.7%。 当初始Ni(II)浓度为1mg / L时,实现了约100%Ni(II)的去除效率。 此外,分析了TPSA固定化细菌粒料的形态和组分,研究了同时硝酸盐,Ni(II)和去除的机制。 与对照相比,实验反应器中微生物代谢在实验反应器中更活跃,尽管高浓度的Ni(II)可以抑制细菌活性。

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