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Treatment of Produced Water with Photocatalysis: Recent Advances,Affecting Factors and Future Research Prospects

机译:用光催化治疗水分:最近的进展,影响因素和未来研究前景

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摘要

Produced water is the largest byproduct of oil and gas production. Due to the complexity of produced water, especially dissolved petroleum hydrocarbons and high salinity, efficient water treatment technologies are required prior to beneficial use of such waste streams. Photocatalysis has been demonstrated to be effective at degrading recalcitrant organic contaminants, however, there is limited understanding about its application to treating produced water that has a complex and highly variable water composition. Therefore, the determination of the appropriate photocatalysis technique and the operating parameters are critical to achieve the maximum removal of recalcitrant compounds at the lowest cost. The objective of this review is to examine the feasibility of photocatalysis-involved treatment for the removal of contaminants in produced water. Recent studies revealed that photocatalysis was effective at decomposing recalcitrant organic compounds but not for mineralization. The factors affecting decontamination and strategies to improve photocatalysis efficiency are discussed. Further, recent developments and future research prospects on photocatalysis-derived systems for produced water treatment are addressed. Photocatalysis is proposed to be combined with other treatment processes, such as biological treatments, to partially reduce total organic carbon, break down macromolecular organic compounds, increase biodegradability, and reduce the toxicity of produced water.
机译:生产的水是石油和天然气生产的最大副产物。由于产生的水的复杂性,特别是溶解的石油烃和高盐度,在有益使用此类废物流之前需要有效的水处理技术。已经证明了光催化在降解核批准有机污染物中有效,但是有限地理解其应用于处理具有复杂和高度可变的水组合物的产生的水。因此,确定适当的光催化技术和操作参数对于实现最低成本的最大去除核批分化合物至关重要。本综述的目的是研究摄影涉及治疗的可行性,以便在生产的水中去除污染物。最近的研究表明,光催化在分解醋酸顽固的有机化合物中是有效的,但不能用于矿化。讨论了影响净化和改善光催化效率的策略的因素。此外,解决了用于生产水处理的光催化衍生系统的最新的发展和未来研究前景。采用光催化剂与其他治疗方法相结合,例如生物处理,以部分减少总有机碳,分解大分子有机化合物,增加生物降解性,并降低产水的毒性。

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