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Bioremediation techniques-classification based on site of application: principles, advantages, limitations and prospects

机译:基于应用地点的生物修复技术分类:原则,优势,局限性和前景

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Environmental pollution has been on the rise in the past few decades owing to increased human activities on energy reservoirs, unsafe agricultural practices and rapid industrialization. Amongst the pollutants that are of environmental and public health concerns due to their toxicities are: heavy metals, nuclear wastes, pesticides, green house gases, and hydrocarbons. Remediation of polluted sites using microbial process ( bioremediation) has proven effective and reliable due to its eco-friendly features. Bioremediation can either be carried out ex situ or in situ, depending on several factors, which include but not limited to cost, site characteristics, type and concentration of pollutants. Generally, ex situ techniques apparently are more expensive compared to in situ techniques as a result of additional cost attributable to excavation. However, cost of on-site installation of equipment, and inability to effectively visualize and control the subsurface of polluted sites are of major concerns when carrying out in situ bioremediation. Therefore, choosing appropriate bioremediation technique, which will effectively reduce pollutant concentrations to an innocuous state, is crucial for a successful bioremediation project. Furthermore, the two major approaches to enhance bioremediation are biostimulation and bioaugmentation provided that environmental factors, which determine the success of bioremediation, are maintained at optimal range. This review provides more insight into the two major bioremediation techniques, their principles, advantages, limitations and prospects.
机译:在过去的几十年中,由于人类在储能上的活动增加,不安全的农业作法和快速的工业化,环境污染一直在增加。由于其毒性而引起环境和公共健康关注的污染物包括:重金属,核废料,农药,温室气体和碳氢化合物。由于其生态友好的特性,使用微生物过程(生物修复)对污染部位的修复已被证明是有效和可靠的。生物修复可以异地或就地进行,具体取决于几个因素,包括但不限于成本,场地特征,污染物的类型和浓度。通常,由于开挖产生的额外成本,与原位技术相比,异位技术显然更昂贵。然而,当进行原位生物修复时,设备的现场安装成本以及无法有效地可视化和控制污染场所的地下表面是主要问题。因此,选择合适的生物修复技术将有效地将污染物浓度降低到无害状态,对于成功的生物修复项目至关重要。此外,增强生物修复的两种主要方法是生物刺激和生物强化,前提是将决定生物修复成功的环境因素保持在最佳范围内。这篇综述提供了对两种主要生物修复技术,其原理,优势,局限性和前景的更多见解。

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