Performance of Selected Plants Based Growth on Landfill Leachate Treatment Using Wetland Application

Sarwoko Mangkoedihardjo, I. Arliyani
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Abstract

Introduction: This research was conducted to process untreated leachate using plants in artificial wetlands. The aim was to obtain plant selection criteria based on the relative growth rate (RGR) and removal efficiency (Re) of biochemical oxygen demand (BOD) and chemical oxygen demand (COD). Methods: The methodology used leachate containing about 1,000 mg/L and 5,000 mg/L BOD and COD, respectively. Three plants, Typha angustifolia, Cyperus papyrus, and Canna indica, were tested. The research stages included a range finding test for 14 days and definitive leachate experiments for the three plants for 36 days. Results: The results revealed that three types of plants could process leachate without treatment for 36 days after acclimatization (DAA). The determining period was 0-12 DAA with a decrease in BOD and COD concentrations in the range of 40-60% and an increase in the ratio of BOD/COD, which expresses increased leachate biodegradability. The following 24 days showed a decrease in the BOD/COD ratio and a constant decrease in the concentration of both parameters as an indicator of the stability of leachate quality. This pattern was followed by plant growth performance and showed the order of priority for C. papyrus, C. indica, and T. angustifolia. Conclusions: There was an adequate leachate detention time when BOD and COD decreased to a maximum. The response time of plants in reducing the concentration of substances was a new approach to plant selection.
湿地处理垃圾渗滤液的植物生长特性研究
本研究利用人工湿地植物处理未经处理的渗滤液。目的是根据相对生长率(RGR)和生化需氧量(BOD)和化学需氧量(COD)的去除效率(Re)获得植物选择标准。方法:采用含BOD约为1000 mg/L、COD约为5000 mg/L的渗滤液。以三种植物为研究对象,分别为:小叶蝉(Typha angustifolia)、莎草草(Cyperus papyrus)和美人蕉。研究阶段包括为期14天的测距测试和为期36天的三个工厂的最终渗滤液实验。结果:3种植物在驯化后36 d内均能处理渗滤液。测定周期为0 ~ 12 DAA, BOD和COD浓度在40 ~ 60%范围内下降,BOD/COD比值升高,表明渗滤液的可生化性提高。随后的24 d, BOD/COD比值下降,两个参数的浓度持续下降,这是渗滤液质量稳定性的一个指标。植物的生长表现也遵循这一模式,并表现出纸莎草、籼稻和刺叶苜蓿的优先顺序。结论:当BOD和COD达到最大值时,渗滤液有足够的滞留时间。植物对降低物质浓度的响应时间是植物选择的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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