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处理城市和橄榄油厂废水混合物后垂直流人工湿地基质的物理化学和微生物特性的行为。

Behaviour of physicochemical and microbiological characteristics of vertical flow constructed wetland substrate after treating a mixture of urban and olive mill wastewaters.

机构信息

Laboratory of Water, Biodiversity and Climate Change, Faculty of Sciences Semlalia, University Cadi Ayyad, Marrakech, Morocco.

National Centre for Studies and Research on Water and Energy (CNEREE), University Cadi Ayyad, Marrakech, Morocco.

出版信息

Environ Sci Pollut Res Int. 2021 Oct;28(39):55433-55445. doi: 10.1007/s11356-021-14874-7. Epub 2021 Jun 16.

DOI:10.1007/s11356-021-14874-7
PMID:34132964
Abstract

The aim of the current work is to evaluate the effect of a mixture of olive mill wastewater (OMWW) and urban wastewater (UW) on constructed wetland (CW) substrate physicochemical parameters, and to study the abundance and behaviour of microbial community at different depths. In this regard, substrate samples were investigated at three depth levels (0-10 cm, 10-20 cm and 20-30 cm) inside a pilot scale CW treating the mixture. In order to compare the obtained results with the conventional case, a control (CW pilot plant treating only UW) was implemented. Result shows that an increase in electrical conductivity (from 0.134 to 0.222 mS/cm in 0-10 cm and from 0.131 to 0.283 mS/cm in 10-20 cm), total dissolved salts (from 65.45 to 108.67 mg/kg in 0-10cm and from 64.33 to 135.3 mg/kg in 10-20 cm), total organic carbon (from 0.86 to 6.84%), total nitrogen (from 0.1 mg/kg to 0.45, 0.43 and 0.41 mg/kg, in 0-10 cm, 10-20 cm and 20-30 cm respectively) and C/N ratio take place in the substrate after the treatment of the mixture. As for the microbiological parameters, treating the mixture in a CW results in an increase in the yeast and fungi which may optimize the biodegradation of compounds such as polyphenols that are non-easily degraded.

摘要

本研究旨在评估橄榄厂废水(OMWW)和城市废水(UW)混合物对人工湿地(CW)基质理化参数的影响,并研究不同深度下微生物群落的丰度和行为。为此,在中试规模的 CW 中处理该混合物时,在三个深度水平(0-10cm、10-20cm 和 20-30cm)下对基质样品进行了调查。为了将获得的结果与常规情况进行比较,实施了一个对照(仅处理 UW 的 CW 中试装置)。结果表明,电导率(在 0-10cm 处从 0.134 增加到 0.222mS/cm,在 10-20cm 处从 0.131 增加到 0.283mS/cm)、总溶解盐(在 0-10cm 处从 65.45 增加到 108.67mg/kg,在 10-20cm 处从 64.33 增加到 135.3mg/kg)、总有机碳(从 0.86 增加到 6.84%)、总氮(在 0-10cm、10-20cm 和 20-30cm 处分别从 0.1mg/kg 增加到 0.45、0.43 和 0.41mg/kg)和 C/N 比在基质处理混合物后发生变化。就微生物参数而言,在 CW 中处理混合物会导致酵母和真菌增加,这可能优化多酚等不易降解化合物的生物降解。

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