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首页> 外文期刊>International Biodeterioration & Biodegradation >Use of DEAE cellulose adsorbed and crosslinked white radish (Raphanus sativus) peroxidase for the removal of alpha -naphthol in batch and continuous process
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Use of DEAE cellulose adsorbed and crosslinked white radish (Raphanus sativus) peroxidase for the removal of alpha -naphthol in batch and continuous process

机译:使用DEAE纤维素吸附和交联的白萝卜(Raphanus sativus)过氧化物酶分批和连续过程去除α-萘酚

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DEAE cellulose bound white radish peroxidase was employed for the treatment of wastewater contaminated with alpha -naphthol in batch as well as in continuous reactor. Immobilized enzyme could effectively remove about 79%, 87%, 65% alpha -naphthol in stirred batch process at 30 degrees C, 40 degrees C and 50 degrees C after 5 h treatment, respectively. However, its soluble counterpart under similar experimental conditions could remove 73%, 75%, 53% alpha -naphthol. FTIR spectra of the obtained product showed the occurrence of polymerization reaction involving C-O-C bond, Immobilized WRP could remove 64% alpha -naphthol in presence of 3.0 mM CdCl2; however, its soluble counterpart oxidized only 44% of the contaminant. Immobilized preparation after its 6th repeated use was able to oxidize 58% alpha -naphthol. Immobilized enzyme present in the column was used for the continuous removal of alpha -naphthol and the column retained 57% alpha -naphthol removal efficiency after one month operation. The absorption spectra of the treated and untreated alpha -naphthol containing wastewater exhibited a marked difference in the absorption at various wavelengths. Hence, the designed column reactor could be used successfully at a large scale for treatment of water contaminated with various aromatic compounds.
机译:DEAE纤维素结合的白萝卜过氧化物酶用于分批以及连续反应器中处理被α-萘酚污染的废水。固定化酶处理5 h后,在30℃,40℃和50℃搅拌分批过程中分别可有效去除约79%,87%,65%的α-萘酚。但是,在相似的实验条件下,其可溶性对应物可以去除73%,75%,53%的α-萘酚。所得产物的FTIR光谱表明发生了涉及C-O-C键的聚合反应,固定化的WRP可以在3.0 mM CdCl 2 存在下去除64%的α-萘酚。但是,它的可溶性对应物仅氧化了44%的污染物。第六次重复使用后,固定化制剂能够氧化58%的α-萘酚。色谱柱中存在的固定化酶用于连续去除α-萘酚,一个月的操作后,色谱柱保留了57%的α-萘酚去除效率。处理过的和未处理过的含α-萘酚的废水的吸收光谱在各种波长下显示出明显的吸收差异。因此,设计的塔式反应器可以成功地大规模用于处理被各种芳香化合物污染的水。

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