会议论文详细信息
International Conference on Biomass: Technology, Application, and Sustainable Development
Preparation and evaluation adsorption capacity of cellulose xanthate of sugarcane bagasse for removal heavy metal ion from aqueous solutions
生物科学;能源学;经济学
Iryani, D.A.^1,4 ; Risthy, N.M.^1 ; Resagian, D.A.^1 ; Yuwono, S.D.^2,4 ; Hasanudin, U.^3,4
Department of Chemical Engineering, Engineering Faculty, University of Lampung, Lampung, Indonesia^1
Department of Chemistry, Mathemathic and Science Faculty, University of Lampung, Lampung, Indonesia^2
Department of Agroindustrial Technology, Agriculture Faculty, University of Lampung, Lampung, Indonesia^3
Research and Development Center for Tropical Biomass, University of Lampung, Lampung, Indonesia^4
关键词: Adsorption capacities;    Degree of polymerization;    Degree of substitution;    Environmental pollutions;    Heavy metal pollutants;    Industrial wastewaters;    Morphological characteristic;    Spectroscopic studies;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/65/1/012039/pdf
DOI  :  10.1088/1755-1315/65/1/012039
学科分类:生物科学(综合)
来源: IOP
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【 摘 要 】

The discharge of heavy metals from industrial effluents into aquatic system in surrounding area of Lampung bay become a serious problem today. The data shows that the concentrations of heavy metals in this area are above allowable limits for the discharge of toxic heavy metals in the aquatic systems. The most common of heavy metal pollutant is divalent metal ions. Cellulose xanthate is one of the selective adsorbent to solve this problem, since xanthate contains two negative sulfur atoms that is capable to catch divalent metal ions. Preparation of cellulose xanthate was conducted by reacting carbon disulfide (CS2) and cellulose from sugarcane bagasse. The morphological characteristics of cellulose xanthate were visualized via Scanning Electron Microscope (SEM) and the presence of sulfur groups on sugarcane bagasse xanthate were identified by FTIR spectroscopic study. The degree of substitution (DS), degree of polymerization (DP), and adsorption capacities of cellulose xanthate for Cu2+and Pb2+metal were studied. The results of study reveals that the maximum adsorption capacities of Cu2+and Pb2+metal on cellulose xanthate are 54.226 mg Cu2+/g, and 51.776 mg Pb2+/g, respectively. This study reveals that cellulose xanthate could be a solution to reduce environmental pollution caused by industrial wastewater.

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