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  • 标题:Optimization Conditions for Increasing Cation Exchange Capacity of Coal Fly Ash Zeolite Modified with Chitosan Using Box-Behnken Design
  • 本地全文:下载
  • 作者:Pathanin Sangaroon ; Thares Srisatit ; Pongsert Sriprom
  • 期刊名称:EnvironmentAsia
  • 印刷版ISSN:1906-1714
  • 出版年度:2019
  • 卷号:12
  • 期号:2
  • 页码:58-68
  • DOI:10.14456/ea.2019.27
  • 出版社:Thai Society of Higher Eduction Institutes on Environment
  • 摘要:The optimization conditions of high Cation Exchange Capacity (CEC) of coal fly ash (CFA) zeolitemodified with chitosan were studied. The experimental design had employed Box-Behnkendesign with 3 factors at 3 levels. The independent variables were chitosan concentration (5-15g/L), retention time (12-36 hours), and temperature (40-60ºC). It is resulted that the independentvariables of chitosan concentration had significant effect to CEC at 95% confidence (P<0.05). Invice versa, retention time and temperature had no significant effect to CEC at 95% confidence(P>0.05). However, the interaction effect between chitosan concentration with retention time andretention time with temperature had significant effect to CEC at 95% confidence (P<0.05) Thus,the optimum conditions of high CEC (474.21 meq/100g) were 15 g/L of chitosan concentration,36 hours of retention time, and 40ºC of temperature. Regarding with 3 times of validation forsuch optimum conditions, CEC was 474.21± 5 meq/100g which was closely the predicted value.CEC of chitosan modified with CFA-zeolite had CEC more than CFA-zeolite (272.12 meq/100g)about 2 times, indicating chitosan was the appropriate material for increasing CEC on CFA-zeolite.
  • 关键词:Coal fly ash; Cation exchange capacity; Response surface methodology; Box; Behnken;Design; Zeolite
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