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Review of the immobilized microbial cell systems for bioremediation of petroleum hydrocarbons polluted environments

机译:综述石油烃污染环境生物修复的固定化微生物细胞系统

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Petroleum hydrocarbon contamination is widespread and has easily accumulated in various ecosystems due to hydrophobicity and limited bioavailability. Until now, the primary bioremediation techniques have used free cell (FC) cultures to remove these recalcitrant compounds from contaminated areas. The use of immobilized microbial cell systems is a promising technique, which has been recently applied in various environmental studies. The primary objective of this review is to give an overview of the key scientific aspects related to bioremediation of hydrocarbons using immobilized cell (IC), with a particular focus on the techniques to entrap the cells. The most effective cell immobilization technique was cell entrapping inside a porous matrix. This review also examines and compares the performance of ICs in biodegradation of petroleum hydrocarbons with those of FC systems. It has been observed that the biodegradation rate can be enhanced using immobilization technique, especially in harsh environments. Moreover, several advantages of using ICs compared to FCs are also discussed. For example, due to the easier separation, possible reutilization of microorganisms, and more tolerance to pH and temperature changes, ICs are generally preferred to FC systems. Finally, examples of some limitations of IC systems and new viewpoints in this field are presented.
机译:由于疏水性和有限的生物利用度,石油碳氢化合物污染是普遍的并且容易积累在各种生态系统中。到目前为止,原发性生物修复技术使用自由细胞(Fc)培养物从污染区域中除去这些醋酸化合物。固定化的微生物细胞系统的使用是一项有前途的技术,最近应用于各种环境研究。本综述的主要目的是概述使用固定化细胞(IC)的烃生物修复相关的关键科学方面,特别关注捕获细胞的技术。最有效的细胞固定技术是多孔基质内部的细胞诱捕。本综述还研究了与FC系统的石油烃生物降解中ICS的性能。已经观察到使用固定技术可以增强生物降解率,尤其是在恶劣环境中。此外,还讨论了与FCS相比使用IC的若干优点。例如,由于分离更容易,可能的微生物的再利用以及更高的pH和温度变化的耐受性,IC通常优选于FC系统。最后,介绍了IC系统的一些限制和该字段中的新观点的示例。

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