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Redox Potential and pH Behavior Effect on Arsenic Removal from Water in a Constructed Wetland Mesocosm

机译:人工湿地环境中氧化还原电位和pH行为对水中砷去除的影响

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摘要

Arsenic retention in constructed wetlands is highly influenced by environmental conditions, physicochemical and biological interactions, particularly in the rhizosphere (pH, redox potential, and temperature). The present research investigated the effects of redox potential and pH behavior on arsenic retention in the constructed wetland mesocosm. The study was conducted in three prototypes. Two planted (HA and HB) with Eleocharis macrostachya and Schoeno-plectus americanus, respectively; a third one (HC) remained unplanted as control. The system was in continuous operation during 343 days, fed by groundwater with arsenic concentration at 90.66 ± 14.95 μg L~(-1), and a hydraulic retention time of 2 days. Monitored parameters were: redox potential, pH, dissolved oxygen, water and environmental temperature, arsenic concentration inlet and outlet. Oxidizing conditions (87-516 mV) were reported during most of the hot and warm season (84-90%); while reducing conditions (up to -539 mV) where reported the rest of the time. On cold season, only oxidizing conditions were detected. A pH from 7.0 to 8.0 was preserved for HA and HB, whereas HC preserved higher pH values (8.0 to 8.5). HA and HB behavior was observed similar among them, reporting higher arsenic retention than HC. This means that plants play an important role on arsenic retention in the constructed wetlands mesocosm.
机译:人工湿地中的砷保留受到环境条件,物理化学和生物相互作用(尤其是在根际中(pH,氧化还原电势和温度))的高度影响。本研究调查了氧化还原电势和pH行为对人工湿地中观世界中砷retention留的影响。该研究是在三个原型中进行的。分别种植了两块(高粱和高粱)Eleocharis macrostachya和American Schoeno-plectus。第三个(HC)仍未种植作为对照。该系统在343天连续运行,并注入地下水,砷浓度为90.66±14.95μgL〜(-1),水力停留时间为2天。监测的参数为:氧化还原电势,pH,溶解氧,水和环境温度,砷浓度的入口和出口。在大部分炎热和炎热的季节(84-90%)都报告了氧化条件(87-516 mV)。同时降低其余时间报告的条件(高达-539 mV)。在寒冷季节,仅检测到氧化条件。 HA和HB的pH值保持在7.0至8.0,而HC保留了较高的pH值(8.0至8.5)。观察到的HA和HB行为相似,报告的砷保留率比HC高。这意味着植物在人工湿地的中观世界中对砷的滞留起着重要作用。

著录项

  • 来源
    《Environmental progress》 |2014年第4期|1332-1339|共8页
  • 作者单位

    Renewable Energy and Environmental Protection, Advanced Materials Research Center, CIMAV. Miguel de Cervantes 120, Com-plejo Industrial Chihuahua C.P. 31109, Chihuahua, Chih., Mexico;

    Renewable Energy and Environmental Protection, Advanced Materials Research Center, CIMAV. Miguel de Cervantes 120, Com-plejo Industrial Chihuahua C.P. 31109, Chihuahua, Chih., Mexico;

    Technologies and Evaluation Area, Catalan Institute for Water Research, Scientific and Technological Park of the University of Girona, H2O Building, C/Emili Grahit 101, E-17003, Girona, Catalonia, Spain;

    Renewable Energy and Environmental Protection, Advanced Materials Research Center, CIMAV. Miguel de Cervantes 120, Com-plejo Industrial Chihuahua C.P. 31109, Chihuahua, Chih., Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    arsenic; constructed wetlands; E. macrostachya; redox potential; S. americanus;

    机译:砷;人工湿地;E. macrostachya;氧化还原电位美洲链球菌;
  • 入库时间 2022-08-17 13:28:15

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