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间歇运行是否会增强潜流人工湿地中的氧化作用?

Does batch operation enhance oxidation in subsurface constructed wetlands?

作者信息

Stein O R, Hook P B, Biederman J A, Allen W C, Borden D J

机构信息

Department of Civil Engineering and Center for Biofilm Engineering, Montana State University, Bozeman, MT 59717, USA.

出版信息

Water Sci Technol. 2003;48(5):149-56.

Abstract

Two side-by-side experimental sub-surface flow systems allowed direct comparison of wetland performance under batch and continuous-flow operation. One system consisted of microcosm "columns" operated in 20-day batch mode while the second consisted of continuous-flow "cells" operated at a five-day residence time. Both systems treated identical synthetic domestic wastewater for two years and then treated identical synthetic mine-impacted water for one year. Each system had replicates planted with Typha latifolia, Scirpus acutus and unplanted controls. Temperature was cycled annually between 4 to 24 degrees C. Results indicated that plant species, season, and mode of operation interacted strongly in controlling dynamics of COD, nitrogen species, phosphate, sulfate, and redox potentials. In batch-loaded columns, between-species differences in oxidation and COD removal were large in winter, during plant dormancy, but absent in summer; COD removal, sulfate concentration, and redox potentials were closely correlated, suggesting that variation in root-zone oxygenation due to seasonal plant growth patterns and temperature-dependent plant and microbial respiration may explain observed differences. In the continuous-flow cells, species and seasonal differences were minimal or non-existent, indicating that under continuous-flow operation plants either did not influence root zone oxidation or that this influence had no effect on wetland performance for COD and nutrient removal or sulfate reduction.

摘要

两个并排的实验性潜流系统能够直接比较间歇式和连续流运行模式下湿地的性能。一个系统由以20天为周期运行的微型“柱体”组成,而另一个系统由停留时间为五天的连续流“单元”组成。两个系统均处理相同的合成生活污水两年,然后处理相同的合成矿山影响水一年。每个系统都有种植宽叶香蒲、尖叶藨草的重复样本以及未种植植物的对照样本。温度每年在4至24摄氏度之间循环变化。结果表明,植物种类、季节和运行模式在控制化学需氧量(COD)、氮类物质、磷酸盐、硫酸盐和氧化还原电位的动态变化方面存在强烈的相互作用。在间歇式加载的柱体中,冬季植物休眠期间,不同物种间的氧化作用和COD去除差异很大,但夏季则不存在这种差异;COD去除、硫酸盐浓度和氧化还原电位密切相关,这表明由于季节性植物生长模式以及与温度相关的植物和微生物呼吸作用导致的根区氧合变化可能解释了观察到的差异。在连续流单元中,物种和季节差异最小或不存在,这表明在连续流运行模式下,植物要么不影响根区氧化,要么这种影响对湿地去除COD、营养物质或减少硫酸盐的性能没有作用。

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