The role of sand, marble chips and Typha latifolia in domestic wastewater treatment – a column study on constructed wetlands

香蒲 废水 化学需氧量 湿地 浊度 水力停留时间 环境工程 环境科学 水烛 人工湿地 制浆造纸工业 化学 环境化学 生态学 工程类 生物
作者
Rakesh Kadaverugu,Rita P. Shingare,Karthik Raghunathan,Asha A. Juwarkar,Prashant R. Thawale,Sanjeev Kumar Singh
出处
期刊:Environmental Technology [Taylor & Francis]
卷期号:37 (19): 2508-2515 被引量:13
标识
DOI:10.1080/09593330.2016.1153156
摘要

The relative importance of sand, marble chips and wetland plant Typha latifolia is evaluated in constructed wetlands (CWs) for the treatment of domestic wastewater intended for reuse in agriculture. The prototype CWs for the experiments are realized in polyvinyl chloride columns, which are grouped into four treatments, viz. sand (<2 mm) + Typha latifolia (cattail), sand, marble chips (5-20 mm) + cattail and marble chips. The removal percentage of organic and nutritional pollutants from the wastewater is measured at varying hydraulic retention time in the columns. The statistical analysis suggests that the main effects of sand and cattail are found to be significant (p < .05) for the removal of biological oxygen demand and chemical oxygen demand from the wastewater. The presence of cattail significantly (p < .01) contributes to the conversion of total nitrogen in wastewater into [Formula: see text] by fostering the growth of favorable microbes for the nitrification. The removal of [Formula: see text] and turbidity from the wastewater is significantly (p < .01) influenced by sand than the presence of cattail. The maximum [Formula: see text] adsorption capacity of the sand is estimated to be 2.5 mg/g. Marble chips have significantly (p < .01) influenced the removal of [Formula: see text]and its maximum removal capacity is estimated to be 9.3 mg/g. The negative correlation between the filter media biofilm and column hydraulic conductivity is also reported for all the treatments. Thus, the findings of this study elucidate the role of low-cost and easily available filter media and it will guide the environmental practitioners in designing cost-effective CWs for wastewater treatment.
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