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A novel magnetite-immobilized cell process for heavy metal removal from industrial effluent

机译:一种从工业废水中去除重金属的新型磁铁矿固定池工艺

摘要

The sorption and desorption of copper (II) (Cu[II]) ions from the wastewater by magnetite-immobilized cells of Pseudomonas putida 5-x with acidic pretreatment were studied. Pretreating cells with 0.6 N HCl was found to enhance greatly the adsorption capacity of biomass up to 85.6 mg/g and had no significant effect on the loss of P. putida 5-x cells during biosorbent pretreatment. The biosorption capacity to Cu 2+ of magnetite-immobilized cells of P. putida 5-x harvested during various growth phases was also investigated. The experimental results illustrated that the adsorption capacity to Cu 2+ of P. putida 5-x cultured in sulfate-limiting medium reached maximum during the late stationary growth phase or early death phase, and reached minimum during the log growth phase. The mechanism of copper sequestering by this type of biomass was studied via transmission electron microscopy. A degradation of the peptidoglycan layer of the cell wall was observed in the acidic pretreatment, but no further degradation appeared after the adsorption-desorption cycle. Cu(II) accumulated mostly on the surface of the cell walls and was effectively desorbed by the acidic treatment during the desorption process.
机译:研究了酸性预处理下磁铁矿固定的恶臭假单胞菌5-x细胞对废水中铜(II)(Cu [II])离子的吸附和解吸。发现用0.6 N HCl预处理细胞可大大提高高达85.6 mg / g的生物量吸附能力,并且对生物吸附剂预处理过程中恶臭假单胞菌5-x细胞的损失没有明显影响。还研究了在各个生长阶段收获的恶臭假单胞菌5-x固定在磁铁矿固定细胞上对Cu 2+的生物吸附能力。实验结果表明,在硫酸盐限制培养基中培养的恶臭假单胞菌5-x对Cu 2+的吸附能力在静止后期或死亡早期达到最大,而在对数生长期达到最小。通过透射电子显微镜研究了这种生物质螯合铜的机理。在酸性预处理中观察到细胞壁的肽聚糖层降解,但是在吸附-解吸循环后没有进一步降解出现。 Cu(II)大部分堆积在细胞壁的表面,在解吸过程中通过酸性处理有效地解吸。

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