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首页> 外文期刊>Environmental technology reviews >Microbial cell immobilization: a renaissance to bioaugmentation inadequacies. A review
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Microbial cell immobilization: a renaissance to bioaugmentation inadequacies. A review

机译:微生物细胞固定化:生物强化不足的复兴。回顾

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Soil pollution by petroleum hydrocarbons no doubt has become an issue of contemporary concern. Different remediation technologies have been used to tackle these hydrocarbon spillage problems each regrettably with its own shortcomings. Hydrocarbon removal by bioremediation has become the most suitable alternative spill clean-up strategy. Biostimulation, natural attenuation and bioaugmentation are three practical approaches most frequently used to respond to oil spillage cases. Bioaugmentation technology has significantly recorded numerous successes and has also been proven most reliable and most effective. Bioaugmentation though as efficient and most reliable as stated is however not without its own limitations including the problem of initial adaptation of the introduced microbial species in the soil microcosms, temperature, pH and other abiotic factors. Other factors such as predation and competition between the autochthonous and allochthonous microbial communities thus resulting in poor remediation output also abound. Interestingly, the process of cell immobilization has been used to avert these bioaugmentation inadequacies. Several reports of success story by researchers with cell immobilization-bioaugmentation have been recorded in recent years. Herein, we discussed various immobilization techniques that have been employed towards successful bioaugmentation technology while we also critically analyzed and nominated the most reliable techniques for application in hydrocarbon spill events.
机译:毫无疑问,石油碳氢化合物对土壤的污染已成为当代关注的问题。遗憾的是,已经采用了不同的补救技术来解决这些碳氢化合物溢漏问题,每种技术都有其自身的缺点。通过生物修复去除碳氢化合物已成为最合适的替代性溢油清理策略。生物刺激,自然衰减和生物强化是最常用于应对溢油事故的三种实用方法。生物增强技术已经取得了许多成功,并且已经被证明是最可靠,最有效的。生物强化虽然如上所述一样有效和最可靠,但并非没有其自身的局限性,包括引入的微生物物种在土壤微观,温度,pH和其他非生物因素中的初始适应性问题。其他因素,例如导致本地微生物和异源微生物群落之间的捕食和竞争,也导致补救产出不佳。有趣的是,细胞固定过程已被用于避免这些生物增强不足。近年来,已经有研究人员进行了细胞固定-生物强化的成功案例报道。在这里,我们讨论了已成功应用于生物强化技术的各种固定技术,同时我们也严格分析并提名了用于烃泄漏事件的最可靠技术。

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