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首页> 外文期刊>Journal of Applied Polymer Science >Carboxymethyl sago pulp/chitosan hydrogel as an immobilization medium for activated sludge for p-nitrophenol biodegradation
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Carboxymethyl sago pulp/chitosan hydrogel as an immobilization medium for activated sludge for p-nitrophenol biodegradation

机译:羧甲基Sago纸浆/壳聚糖水凝胶作为P-硝基苯酚生物降解的活性污泥的固定介质

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摘要

In this study, carboxymethyl sago pulp (CMSP) derived from sago waste was successfully crosslinked with ferric ions in the presence of chitosan forming a novel immobilization matrix for p-nitrophenol (PNP)-acclimated activated sludge. On the basis of the shortest biodegradation time of PNP, the optimized operational conditions of immobilization were found to be: 7w/v% CMSP, 9 gL(-1) of activated sludge, 0.1 M ferric ion, and 15min of crosslinking time. Observable inhibited PNP biodegradation was exhibited by the suspended activated sludge at the initial PNP concentration of 400mgL(-1). In contrast, complete mineralization was achieved by the CMSP/chitosan-immobilized activated sludge (CMSP/Ch-AS) beads. The results revealed the important role of CMSP/Ch hydrogel in protecting activated sludge from the toxicity of PNP. The CMSP/Ch-AS beads could be reused consecutively up to three and two cycles, respectively, for the biodegradation of PNP at 200 and 400mgL(-1), with the attainment of more than 99% of PNP removal at each cycle. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47531.
机译:在本研究中,在壳聚糖存在下成功地与Sago废物衍生的羧甲基Sago纸浆(CMSP)成功地交联,形成了对p-硝基苯酚(PNP) - 晶状体活性污泥的新型固定基质。在PNP的最短生物降解时间的基础上,发现固定化的优化操作条件是:7W / V%CMSP,9GL(-1)活性污泥,0.1M FIRRIC离子和15分钟的交联时间。可观察到的抑制PNP生物降解通过悬浮的活性污泥在400mg1(-1)的初始PNP浓度下表现出来。相比之下,CMSP /壳聚糖固定化活化污泥(CMSP / CH-AS)珠粒实现了完全的矿化。结果表明,CMSP / CH水凝胶在保护活性污泥免受PNP毒性的重要作用。 CMSP / Ch-as珠子可以分别在200和400mg1(-1)的生物降解中,分别连续地重复使用3和两个循环,以达到每循环在每个循环处的99%以上的PNP去除。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47531。

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