会议论文详细信息
International Conference on Science and Innovated Engineering
Removal of Hexavalent Chromium from Raw Drinking Water by Zeolite-FeO Composite Supported Carbon: Case Study Citarum River
工业技术(总论);自然科学(总论)
Widyawati, Y.R.^1 ; Notodarmojo, S.^1^2 ; Hidayat, S.^1^2^3 ; Helmy, Q.^1^2^3
Environmental Engineering Department, Institute of Technology Bandung, Indonesia^1
Water and Wastewater Engineering Research Group, Institute of Technology Bandung, Indonesia^2
Bioscience and Biotechnology Research Center, Institute of Technology Bandung, Indonesia^3
关键词: Adsorption experiment;    Adsorption process;    Hazardous heavy metals;    Hexavalent chromium;    Industrial activities;    Initial concentration;    Optimum conditions;    Positively charged;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/536/1/012067/pdf
DOI  :  10.1088/1757-899X/536/1/012067
来源: IOP
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【 摘 要 】

Citarum River plays an important role in various sectors both domestic and economic for residents along the Citarum River Basin. The different source of wastewater from 400 industries disposes their wastewater directly to the Citarum River, which is predominantly dominated by the textile industry. Those industrial activities generate hazardous heavy metals such as Cr(VI) which can degrade the quality of the river. In this research, we will conduct a treatment on series of Cr(VI) containing surface water to meet the drinking standard of raw water. Zeolite-FeO is synthesized from natural zeolite in Sukabumi, and then impregnated with FeO, characterized using XRD and the result shows that iron oxide precisely hematite (α-Fe2O3) successfully impregnated into the zeolite. The Zeolite-FeO then modified with sucrose to give positively charged on the surface by the contribution of carbon. The adsorption process is carried out in batch with artificial waste containing Cr2O72- to obtain the optimum conditions such as the effect of time, pH and initial concentrations. From the adsorption experiment, the result shows the highest efficiency removal is 70,72% at pH 2 for 45 minutes by Zeolite-FeO-Sucrose.

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