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Effect of depuration treatment and analysis of heavy metals content (Hg and Pb) on green mussels (Perna viridis) culture in Jakarta Bay waters

机译:雅加达湾水域绿贻贝(HERNA和PB)对重金属含量(HG和PB)的钙治疗和分析的影响

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The objective of this research is to determine the effect of depuration treatment on the reduction of heavy metals content (Hg and Pb) in green mussels (Perna viridis) culture in Jakarta Bay waters. This research used a block randomized design with 2 blocks (location), and 4 treatments: A0 (control), A1 (heated), A2 (flowing water), and A3 (EDTA) with 3 replications. The analysis of heavy metals content was performed with Atomic Absorption Spectroscopy (AAS) method, analysis data by ANOVA, Duncan and Dunnett test. The result of the experiment showed that the lowest heavy metal content is on the treatment A2 (flowing water). There is no significant difference (P > 0.05), between Cilincing and Kamal estuaries location. Effect of the depuration showed a significant result (P < 0.05) on heavy metal reduction. The Dunnet test showed that treatment of A1 and A2 are significantly different (P > 0.05) with control, but there are no significant difference (P < 0.05) between treatment of A3 (EDTA) with control. The average concentration of Hg and Pb in green mussels (Perna viridis) on the treatment A0 (control) are 0.09 ppm and 5.98 ppm, treatment A1 (heating) 0.045 ppm and 4.05 ppm, treatment A2 (flowing water) 0.035 ppm and 2.98 ppm, and treatment A3 (EDTA) 0.05 ppm and 5.31 ppm. Lead (Pb) content in green mussels (Perna viridis) have already above the threshold value, stated by the Ministry of Marine Affairs and Fishery regulation (Kepmen No.KEP.17/MEN/2004) about sanitation shells system for Indonesian fishery. From the result, it could be predicted that the accumulation of heavy metal load comes from many industries and domestic wastes in Jakarta Bay waters and surrounding, so it is not safe for consumption.
机译:这项研究的目的是确定净化处理对重金属含量的贻贝的减少(汞,铅)的影响在雅加达湾水域(翡翠贻贝)文化。本研究中使用的块随机化设计与2块(位置),和4个处理:A0(对照),A1(被加热),A2(流水),和A3(EDTA)配有3次重复。用原子吸收光谱(AAS)的方法,通过ANOVA,Duncan和Dunnett检验分析数据执行的重金属含量的分析。该实验的结果表明,最低的重金属含量是对治疗A2(流动水)。没有显著差异(P> 0.05),Cilincing和哈拉河口位置之间。该净化的效果显示出对重金属还原显著结果(P <0.05)。在邓尼特测试显示A1和A2的该治疗是显著不同(P> 0.05)与对照,但也有治疗A3(EDTA)的与对照之间没有显著差异(P <0.05)。的平均浓度Hg和Pb的对治疗A0(对照)绿贻贝(翡翠贻贝)是0.09 ppm或5.98 ppm时,治疗A1(加热)0.045 PPM和4.05 ppm时,治疗A2(流动水)0.035 PPM和2.98 ppm的和治疗A3(EDTA)在0.05ppm和5.31 ppm的。在绿色贻贝铅(Pb)含量(翡翠贻贝)已经高于阈值的,由海洋事务和渔业监管部(Kepmen No.KEP.17 / MEN / 2004)关于卫生系统弹印尼渔业规定。从结果,可以预见的是重金属负荷的积累来自于雅加达湾海域许多行业和生活垃圾和周边,所以它不是可以安全食用。

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