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首页> 外文期刊>Journal of Environmental Management >Integrated perspectives on the use of bacterial endophytes in horizontal flow constructed wetlands for the treatment of liquid textile effluent: Phytoremediation advances in the field
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Integrated perspectives on the use of bacterial endophytes in horizontal flow constructed wetlands for the treatment of liquid textile effluent: Phytoremediation advances in the field

机译:在水平流动人工湿地中使用细菌内生菌处理液体纺织品废水的综合观点:植物修复领域的进展

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摘要

Constructed wetlands (CWs) have emerged as cost-effective and sustainable treatment systems for the remediation of industrial wastewaters; nevertheless, their potential has mostly been evaluated in laboratory-scale studies. Likewise, endophytic bacteria can enhance plant growth and reduce phytotoxicity under polluted conditions, but their application with pilot-scale CWs has rarely been evaluated. The present study aims to evaluate on-site performance of endophyte-assisted pilot-scale horizontal flow constructed wetlands (HFCWs) for the remediation of effluent from a textile industry. The HFCWs were established by plantingLeptochloa fuscain the presence of three endophytic bacterial strains with dye degrading, and plant growth promoting capabilities. We found that the system was able to remove a significant proportion of both organic and inorganic pollutants. Maximum reduction of pollutants was observed in endophyte-augmented HFCWs, where the COD and BOD reduced from 493 to 70 mg l−1and 190 to 42 mg l−1, respectively, within 48 h. Additionally, survival of endophytic bacteria in different components of the HFCWs was also recorded. Treated wastewater was found to be non-toxic and the inoculated bacteria showed persistence in the wastewater as well as rhizo- and endosphere ofL. fusca. Accordingly, a positive impact on plant growth was observed in the presence of bacterial augmentation. The system performance was comparable to the vertical flow constructed wetlands (VFCWs) as high nutrients reduction was seen in the presence of this partnership. This pilot-scale study is a step forward toward the field-scale application of phytoremediation coupled with bacterial endophytes as a cost-effective means of on-site wastewater remediation. To the best of our knowledge, this is among the first pilot-scale studies on use of HFCWs for improvement in quality of textile industry effluent as most previous studies are limited either in the context of engineering or lack effective interplay of plant and bacteria.
机译:人工湿地已经成为用于工业废水修复的具有成本效益的可持续处理系统;但是,它们的潜力大部分已在实验室规模的研究中进行了评估。同样,内生细菌可以在受污染的条件下促进植物生长并降低植物毒性,但很少评估其与中试规模的连续水的应用。本研究旨在评估内生菌辅助中试水平流人工湿地(HFCW)的现场性能,以修复纺织工业的废水。通过在三株具有染料降解和植物生长促进能力的内生细菌菌株的存在下种植紫杉来建立HFCW。我们发现,该系统能够去除大部分有机和无机污染物。在内生菌增强的HFCWs中,污染物的最大减少量是在48 h内,其COD和BOD分别从493降低至70μg/ l-1和190降低至42μg/ l-1。此外,还记录了内生细菌在HFCWs不同成分中的存活情况。发现处理后的废水是无毒的,并且接种的细菌在废水以及L的根际和内球中均表现出持久性。福斯卡。因此,在存在细菌增强的情况下观察到对植物生长的积极影响。该系统的性能可与垂直流人工湿地(VFCW)相媲美,因为在这种伙伴关系的存在下,养分大量减少。这项中试研究是将植物修复与细菌内生菌结合起来作为现场废水修复的一种经济有效的方法,是朝着植物修复的领域规模应用迈出的一步。据我们所知,这是有关使用HFCW改善纺织工业废水质量的首批中试研究,因为以前的大多数研究都局限于工程方面或缺乏植物和细菌的有效相互作用。

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