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PHANEORCHAETE CHYRSOSPOSIUM IMMOBILIZATION FOR CONTINUOUS TREATMENT OF ION EXCHANGE RESINS EFFLUENT

机译:植氏素氯氏磷酸铵固定,用于连续处理离子交换树脂污水

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Adhesion of Phanerochaete chrysosporium to various solid carriers was studied. Amount of immobilized mycelium was higher for porous and rough (polyurethane foam; Scotch-Brite~(TM) and Poraver~(TM)) than for nonporous and smooth carriers (polyvinylchloride and stainless steel). Mycelia were significantly more active when immobilized on porous/rough carriers. These results were attributed to the roughness effects of solid surfaces as well as porosity, which protect cells against the detrimental effects of shear stress. The ability of P. chrysosporium immobilized on polyurethane foam (PUF) and on Scotch-Brite?(SB) to treat the effluent efficiently for a long-term operation was confirmed. Decolorization efficiencies of 67% and 63% and phenolics reduction of 65% and 63% were achieved for PUF and SB, respectively, during the repeated-batch tests conducted for 31 days.
机译:研究了Phanerochaete Chrysporium对各种固体载体的粘附性。多孔和粗糙度(聚氨酯泡沫;苏格兰泡沫泡沫〜(TM)和Poraver〜(TM)的菌丝体的量高于无孔和光滑的载体(聚氯乙烯和不锈钢)。在固定在多孔/粗载体上时,菌丝体显着更活跃。这些结果归因于固体表面以及孔隙率的粗糙度效应,其保护细胞免受剪切应力的不利影响。确保了P. Chrysporium在聚氨酯泡沫(PUF)上和苏格兰菌氏菌丝α(SB)上有效地处理流出物的能力。在进行31天的重复批量试验期间,Puf和Sb分别对脱色效率为67%和63%,酚减少65%和63%,实现了65%和63%。

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