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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Natural attenuation of endocrine-disrupting estrogens in an ecologically engineered treatment system (EETS) designed with floating, submerged and emergent macrophytes
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Natural attenuation of endocrine-disrupting estrogens in an ecologically engineered treatment system (EETS) designed with floating, submerged and emergent macrophytes

机译:生态工程处理系统(EETS)中内分泌干扰雌激素的自然衰减,该系统设计有漂浮,淹没和出没的大型植物

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Natural attenuation of estrogenic endocrine disrupting compounds (EDCs) such as estriol (E3, natural) and 17α-ethinylestradiol (EE2, synthetic) were evaluated in a designed ecologically engineered treatment system (EETS) along with domestic sewage. These two estrogens are the major contaminants of sewage and found to cause adverse effects on the endocrine system of humans and animals when exposed even in nanogram concentrations. The EETS consisted of three tanks containing diverse biota, viz., aquatic macrophytes, submerged plants, emergent plants, algae and bacteria present in the system mimic the natural cleansing functions of wetlands and help in the treatment of pollutants present in wastewater. During operation, 22 μLg/1 of E3 and EE2 were separately fed for 10 days each and operated in continuous mode (201/day). The floating macrophytes system (Tank 1) was more effective in removing estrogens [E3 - 61.77% (13.59 μg/l); EE2 - 69.09% (15.20 μ>g/l)] compared to the submerged-emergent macrophytes-based integrated system (Tank 2) [E3 - 16.58% (3.65 μg/l): EE2 - 18.52% (4.08 μg/l)] and submerged-rooted microphytes system (Tank 3) [E3 -15.20%, (3.35 μg/l); EE2 - 7.72%, (1.70 μg/l)]. On the whole, EETS can effectively treat EDCs [E3 93.56% (20.59 μg/l); EE2 95.34% (20.97 μg/l)]. Removal of COD (68.06%), nitrates (60.02%) and turbidity (83.43%) was also observed simultaneously during EETS operation. The designed EETS is ecologically complex and mechanically simple and has very low energy consumption and function based on a natural cleansing mechanism (attenuation) with esthetic value.
机译:在设计的生态工程处理系统(EETS)中与生活污水一起评估了雌激素内分泌干扰化合物(EDC)的自然衰减,例如雌三醇(E3,天然)和17α-炔雌醇(EE2,合成)。这两种雌激素是污水的主要污染物,即使暴露在纳克浓度下也会对人类和动物的内分泌系统造成不利影响。 EETS由三个池组成,该池包含系统中存在的各种生物群,即水生植物,淹没植物,紧急植物,藻类和细菌,可模拟湿地的自然清洁功能,并有助于处理废水中的污染物。在操作过程中,分别将22μLg/ 1的E3和EE2进料10天,并以连续模式(201 /天)运行。浮游植物系统(水箱1)在去除雌激素方面更有效[E3-61.77%(13.59μg/ l); EE2-69.09%(15.20μ> g / l)],而淹没式基于大型植物的集成系统(储罐2)[E3-16.58%(3.65μg/ l):EE2-18.52%(4.08μg/ l) ]和淹没式微植物系统(储罐3)[E3 -15.20%,(3.35μg/ l); EE2-7.72%(1.70μg/ l)]。总体而言,EETS可以有效治疗EDCs [E3 93.56%(20.59μg/ l); EE2 95.34%(20.97μg/ l)]。在EETS手术中同时观察到COD(68.06%),硝酸盐(60.02%)和浊度(83.43%)的去除。所设计的EETS具有生态复杂性和机械简单性,并且具有非常低的能耗,并且具有自然的清洁机制(衰减性),具有美学价值。

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