FITOREMEDIASI TANAH TERCEMAR LOGAM BERAT MERKURI (Hg) MENGGUNAKAN TUMBUHAN KERSEN (Muntingia Calabua L) DENGAN SISTEM REAKTOR

Silvia M Borolla, A. Mariwy, J. Manuhutu
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引用次数: 2

Abstract

Heavy metal pollution is a serious problem to environment in this time. Mercury is a dangerous wastes that make desecrate environment. So the restoration have to do to make a contaminated soil can reuse safety through fitoremediation process using Kersen. This study to analyze the reductions of heavy metal (Hg) in soil after fitoremediation process. The result of this study was showing that connections between degree reductions of heavy metal (Hg) in soil and adsorptions of Mercury (Hg) in Kersen that is concentration mercury in soil more high reductions than in the soil will following of higher Mercury concentrations in Kersen, in this study showing that adsorptions of Kersen in week – 1 after mercury treatment on a sample is in soil 6,80 ppm, root 1,14 ppm, leaf 0,86 ppm in week - 2 for soil sample is 7,31 ppm, root 3,73 ppm, leaf 4,64 ppm and for the last week in soil is 7,98 ppm, root 0,07ppm and leaf is 0,78 ppm. From that result showing Kersen (Muntingia Calabura L) is a accumulator plant and this plant can using for hyperaccumulation because the value of BCF and TF in day 14 or week – 2 is > 1.
重金属污染是当今环境面临的一个严重问题。汞是一种危害环境的危险废物。所以修复要做的是使被污染的土壤可以安全再利用,通过利用Kersen进行修复过程。本研究旨在分析修复过程对土壤中重金属(Hg)的减少作用。本研究的结果显示,之间的联系程度降低土壤中重金属(汞)和吸附的汞(Hg) Kersen高减少土壤中汞浓度超过土壤中会在Kersen高汞含量之后,在这项研究中表明,吸附的Kersen星期- 1汞治疗后在土壤样品6,80 ppm,根1、14 ppm,叶0,86 ppm - 2土壤样品是7周,31 ppm, 3根,73 ppm,最后一周土壤中的叶片为7.98 PPM,根部为0.07 PPM,叶片为0.78 PPM。结果表明,Kersen (Muntingia Calabura L)是一种蓄能植物,该植物在第14天或第2周的BCF和TF值> 1,可以用于超蓄能。
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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