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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Simultaneous removal of chlorpyrifos and dissolved organic carbon using horizontal sub-surface flow pilot wetlands
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Simultaneous removal of chlorpyrifos and dissolved organic carbon using horizontal sub-surface flow pilot wetlands

机译:使用水平地下流引水湿地同时去除毒死rif和溶解的有机碳

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Rural areas of developing countries require low-cost treatment systems to purify wastewater which is contaminated with pesticides and organic matter. This work evaluated for six months the simultaneous removal of chlorpyrifos and dissolved organic matter in water using four horizontal sub-surface flow constructed wetlands (SSFCW) at a pilot scale, that were planted with Phragmites australis at 20 ± 2 °C water temperature. In each wetland, three concentrations of chlorpyrifos and three of dissolved organic carbon (DOC) were tested by liquid chromatography and an organic carbon analyzer respectively. The pesticide and DOC were added to the wetlands in synthetic wastewater. For the experiments, four wetlands of equal dimensions were used, with granular material of igneous rocks, 3.9-6.4 mm in diameter and at a depth of 0.3 m with a layer of water 0.2 m deep. For each treatment, regular sampling was carried out for the influent and effluents. As a supporting feature NH4~+ NO3~_ and PO4~(3-) were quantified and in situ measurements of dissolved oxygen (DO), pH, electrical conductivity, water temperature and redox potential were taken. The overall removal of the chlorpyrifos (92.6%) and DOC (93.2%) was high, as was DOC removal as a function of pesticide concentration in the influent. The minimum magnitude (92.0%) was reached with 425.6 μg L~(-1) of chlorpyrifos and, with the highest pesticide removal (96.8%). At lower concentrations of the agrochemical, DOC removal increased. The removals were possibly due to mineralization processes, biological decomposition and sorption in plants. These findings demonstrate that SSFCW are capable of simultaneously removing dissolved organic matter and organophosphate pesticides such as chlorpyrifos, which indicate that chlorpyrifos did not interfere with the removal of organic material.
机译:发展中国家的农村地区需要低成本的处理系统来净化被农药和有机物污染的废水。这项工作评估了六个月同时使用四个中试规模的水平地下地下人工湿地(SSFCW)同时去除水中毒死os和水中溶解的有机物的能力,并在20±2°C的水温下种植了芦苇。在每个湿地中,分别通过液相色谱法和有机碳分析仪测试了三种浓度的毒死rif和三种溶解的有机碳(DOC)。将农药和DOC添加到合成废水中的湿地中。对于实验,使用了四个等尺寸的湿地,其火成岩颗粒材料直径为3.9-6.4 mm,深度为0.3 m,水深为0.2 m。对于每种处理,都要对进水和出水进行定期采样。作为支持特征,对NH4〜+ NO3〜_和PO4〜(3-)进行定量,并现场测量溶解氧(DO),pH,电导率,水温和氧化还原电位。毒死rif(92.6%)和DOC(93.2%)的总去除率很高,DOC去除率与进水中农药浓度的关系也很高。毒死42425.6μgL〜(-1)达到最小量级(92.0%),农药去除率最高(96.8%)。在较低浓度的农药中,DOC的去除量增加。去除可能是由于矿化过程,生物分解和植物吸收。这些发现表明SSFCW能够同时去除溶解的有机物和有机磷农药,例如毒死rif,这表明毒死rif不会干扰有机物质的去除。

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