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Behavior of Zinc in a Constructed Wetland System Receiving Domestic Wastewater

机译:锌在人工生活湿地系统中的生活污水吸收行为

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In Japan, environmental quality standards for Zn pollution were enacted recently because of the toxicity of Zn to aquatic ecosystems. A free-water-surface constructed wetland (500 m2) planted with Zizania latifolia Turcz. received secondary-treated wastewater from a dormitory (60 to 100 residents) at the Koibuchi College of Agriculture and Nutrition in Japan, to remove nutrient salts before the discharge of the water to a pond for agricultural use. We examined the removal efficiencies of Zn and its behavior in this constructed wetland within 3 years and discussed the mechanism of Zn removal. The constructed wetland was effective in treating wastewater with low Zn concentrations. The T-Zn concentration in secondary-treated domestic wastewater (average T-Zn: 0.048 mg/L) decreased by 51% during passage through the constructed wetland. Most of the dissolved Zn was removed, but only a little particulate Zn was removed. The increase in Zn concentration in the wetland soil corresponded to 69.8% of the Zn removed by the wetland. However, the amount of Zn accumulated in the aboveground parts of Z. latifolia corresponded to only 9.8% of the Zn removed by the wetland. Thus, Zn was removed mainly by adsorption onto the wetland soil, including soil particles and organic matter.
机译:在日本,由于锌对水生生态系统的毒性,最近颁布了锌污染的环境质量标准。在Zizania latifolia Turcz上种植的自由水面人工湿地(500 m 2 )。从日本小渊农业与营养学院的一个宿舍(60至100名居民)接收了经过二次处理的废水,以去除营养盐,然后将水排入池塘以供农业使用。我们在3年内检查了该人工湿地中Zn的去除效率及其行为,并讨论了Zn去除的机理。人工湿地可有效处理低锌浓度的废水。经过人工湿地的过程中,二次处理的生活污水中的T-Zn浓度(平均T-Zn:0.048 mg / L)降低了51%。除去了大部分溶解的Zn,但仅除去了少量的颗粒状Zn。湿地土壤中锌的浓度增加相当于湿地去除的锌的69.8%。但是,积叶植物地上部分中积累的锌量仅相当于湿地去除的锌量的9.8%。因此,锌的去除主要是通过吸附到湿地土壤上,包括土壤颗粒和有机物。

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