应用化学
應用化學
응용화학
CHINESE JOURNAL OF APPLIED CHEMISTRY
2009年
11期
1259-1263
,共5页
吴之传%张勇%陈磊%吴琦%何苏皖
吳之傳%張勇%陳磊%吳琦%何囌皖
오지전%장용%진뢰%오기%하소환
偕胺肟合铁(Ⅲ)纤维%还原棕BR染料%吸附%动力学
偕胺肟閤鐵(Ⅲ)纖維%還原棕BR染料%吸附%動力學
해알우합철(Ⅲ)섬유%환원종BR염료%흡부%동역학
amidoxime chelating fiber containing Fe( Ⅲ )%vat brown dye%adsorption%kinetics
采用部分偕胺肟化的聚丙烯腈纤维与铁离子反应,形成偕胺肟合铁(Ⅲ)纤维,以此为吸附材料,吸附水溶液中的还原棕染料. 研究了其吸附反应条件、吸附规律及吸附反应动力学. 结果表明,pH值11.5~12.5、温度60 ℃和吸附时间60 min为最佳吸附反应条件. 偕胺肟合铁(Ⅲ)纤维对还原棕的吸附反应符合Langmuir方程和Freundlich等温吸附经验式. 采用不同初始浓度研究吸附时间与溶液浓度的关系,用微分法确定了反应级数和反应速率常数. 由不同温度下的速率常数,并结合Arrhenius方程求出了反应的活化能. 结果表明,偕胺肟合铁(Ⅲ)纤维对还原棕的吸附符合一级反应动力学特征,速率方程c=c_0e~(-kt),速率常数k=32.01e~(-E_a/RT),活化能E_a=11.55 kJ/mol.
採用部分偕胺肟化的聚丙烯腈纖維與鐵離子反應,形成偕胺肟閤鐵(Ⅲ)纖維,以此為吸附材料,吸附水溶液中的還原棕染料. 研究瞭其吸附反應條件、吸附規律及吸附反應動力學. 結果錶明,pH值11.5~12.5、溫度60 ℃和吸附時間60 min為最佳吸附反應條件. 偕胺肟閤鐵(Ⅲ)纖維對還原棕的吸附反應符閤Langmuir方程和Freundlich等溫吸附經驗式. 採用不同初始濃度研究吸附時間與溶液濃度的關繫,用微分法確定瞭反應級數和反應速率常數. 由不同溫度下的速率常數,併結閤Arrhenius方程求齣瞭反應的活化能. 結果錶明,偕胺肟閤鐵(Ⅲ)纖維對還原棕的吸附符閤一級反應動力學特徵,速率方程c=c_0e~(-kt),速率常數k=32.01e~(-E_a/RT),活化能E_a=11.55 kJ/mol.
채용부분해알우화적취병희정섬유여철리자반응,형성해알우합철(Ⅲ)섬유,이차위흡부재료,흡부수용액중적환원종염료. 연구료기흡부반응조건、흡부규률급흡부반응동역학. 결과표명,pH치11.5~12.5、온도60 ℃화흡부시간60 min위최가흡부반응조건. 해알우합철(Ⅲ)섬유대환원종적흡부반응부합Langmuir방정화Freundlich등온흡부경험식. 채용불동초시농도연구흡부시간여용액농도적관계,용미분법학정료반응급수화반응속솔상수. 유불동온도하적속솔상수,병결합Arrhenius방정구출료반응적활화능. 결과표명,해알우합철(Ⅲ)섬유대환원종적흡부부합일급반응동역학특정,속솔방정c=c_0e~(-kt),속솔상수k=32.01e~(-E_a/RT),활화능E_a=11.55 kJ/mol.
Amidoxime chelating fiber containing Fe ( Ⅲ) was prepared from the reaction of partially amido-ximated PAN fiber with Fe~(3+). The studies of its adsorptive behavior for vat brown dye were performed in aqueous media. Results from the investigation on its adsorptive conditions, adsorption rules and adsorption kinetics show that the optimal adsorption parameters are pH: 11. 5 ~ 12. 5, t= 60 ℃( temperature ) and time = 60 min (time). Its adsorptive behavior for vat brown dye fits well with Langmuir and Freundlich isotherm equation. Furthermore, the relationship between adsorption time and sample concentration was investigated by employing various initial concentrations, from which the corresponding reaction order and rate constant were determined by differential method. Based on the Arrhenius equation, the activation energy(E_a) was calculated to be 11. 55 kJ/mol from rate constants at different temperatures. The overall analysis demonstrates that the adsorptive behavior of the present amidoxime chelating fiber containing Fe ( Ⅲ) for vat brown BR dye characterizes first-order reaction with c = c_0e ~(-kt) and k = 32. 01e~(-E_a/RT) .