Angge Dhevi Warisaura, Ilma Fadlilah, Agus Prasetya, M. Fahrurrozi
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引用次数: 0
摘要
小规模手工金的汞合并通常使用汞,这会降低环境质量,特别是水的质量。采用地下流-人工湿地(SSF-CW)系统,采用简单的工艺对小型金矿含汞废水进行了研究。该系统以古叶棘虫植物和沸石为生长介质的植物修复方法相结合。本研究的目的是确定SSF-CW在降低水中汞浓度方面的稳定性。该SSF-CW系统模型尺寸为820 mm x 320 mm x 585 mm,由3个区域组成,即入口区、反应区和出口区。试验初始废液浓度为14.94 mg / L,分连续和分批两阶段进行,每阶段持续3天,试验时间为12小时。每隔0小时、4小时、8小时和12小时采集一次废水样本,使用直接汞分析仪(DMA)进行汞浓度分析。结果表明,SSF-CW对废水中汞的去除率可达98.99%。棘鼻虫具有累积金属的能力,BCF值为9117。沸石(作为生长介质)中汞的蓄积量远未达到饱和汞吸收能力
STUDI STABILITAS SISTEM SUB SURFACE FLOW CONSTRUCTED WETLAND (SSF-CW) MENGGUNAKAN TANAMAN MELATI AIR DAN MEDIA TANAM ZEOLIT DALAM MENURUNKAN LOGAM Hg
Amalgamation to gold in artisanal small scale generally uses mercury (Hg) that decrease the quality of environment especially water. A study of mercury artisanal small scale gold mine waste water was conducted by utilizing simple technology using Sub Surface Flow - Constructed Wetland (SSF-CW) system. This system is a combination of phytoremediation methods using Echinodorus palaefolius plant with zeolite as growth media. The purpose of this study was to determine the stability of SSF-CW in reducing Hg concentration in water. This SSF-CW system model has dimensions of 820 mm x 320 mm x 585 mm consisting of 3 zones, namely the inlet zone, the reaction zone and the outlet zone. The study was conducted with an initial HgCl2 waste concentration of 14.94 mg / L which was carried out in two stages, continuous and batch for 12 hours and lasted for 3 days for each stage. Effluent samples were taken every 0 hours, 4 hours, 8 hours, and 12 hours for mercury concentration analysis using Direct Mercury Analyzer (DMA). The result showed that SSF-CW could support the process of reducing Hg concentration n wastewater with removal efficiency of 98.99%. Echinodorus had the ability to accumulate metals with a BCF value of 9,117. and the accumulation of Hg in the zeolite (as growth media) was still far from the saturated capacity to absorb mercury