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Study on Degradation of OilyWastewater by Immobilized Microorganisms with Biodegradable Polyacrylamideand Sodium Alginate Mixture

机译:油性降解研究固定化微生物与可生物降解聚丙烯酰胺的废水和海藻酸钠混合物

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摘要

In this work, four immobilized kinds of mixed microorganisms were prepared by uploading oil-degradation bacteria into the cross-linked biodegradable polyacrylamide and sodium alginate mixture supporting material, which were employed for efficient degradation of oily wastewater. The morphology of immobilized microbial pellets was characterized by scanning electron microscopy after 7d and 14d of duration. The components of residual crude oil were determined by gas chromatography–mass spectrometry, and the microbial degradation and evolution of n-alkanes, terpenoids, and steroids were studied. The results show that the oil degradation rate for experimental group I (sample containing 1% crude oil) and experimental group II (sample containing 3% crude oil) reaches as high as 70 and 40%, respectively, after 14d of degradation of saturated hydrocarbon total petroleum hydrocarbons. For different oil components, the degradation degree is in the order of tricycoloditerpanes > homohopanes > norhopanes. The order of the degradation degree of steroids with different carbon atoms is C27 > C28 > C29. In terms of evolution characteristics,it can be seen from the biological evolution parameters of n-alkanes that only a slight degradation for odd-even carbonby biodegradable bacteria was achieved, whereas high degradation forisoprene alkanes was observed. According to the biological evolutionparameters of hopane and sterane, hopane C31α β-22S/22S+ R and sterane C29α α20S/20(S + R) were all greater than0.4, that is, they are all strongly degraded by microorganisms.
机译:在这项工作中,通过将石油降解细菌上载到交联的可生物降解聚丙烯酰胺和海藻酸钠混合物支持材料中,制备了四种固定化的混合微生物,这些微生物被用于有效降解含油废水。持续7d和14d后,通过扫描电子显微镜对固定化的微生物颗粒的形态进行表征。通过气相色谱-质谱法测定残留原油的成分,并研究了正构烷烃,萜类化合物和类固醇的微生物降解和演化。结果表明,在饱和烃降解14天后,实验组I(含1%原油的样品)和实验组II(含3%原油的样品)的油降解率分别高达70%和40%。总石油烃。对于不同的油成分,其降解程度为三叶二十碳二萜>高庚烷>正庚烷。具有不同碳原子的类固醇的降解程度的顺序为C27> C28> C29。就进化特征而言从正构烷烃的生物演化参数可以看出,对于奇偶碳只有轻微的降解通过可生物降解的细菌实现,而观察到异戊二烯烷烃。根据生物进化hop烷和甾烷的参数,hop烷C31αβ-22S/ 22S+ R和甾烷C29αα20S/ 20(S + R)均大于0.4,即它们都被微生物强烈降解。

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