广西大学学报(自然科学版)
廣西大學學報(自然科學版)
엄서대학학보(자연과학판)
Journal of Guangxi University (Natural Science Edition)
2015年
5期
1299-1304
,共6页
李仲民%姚懿%梁森林%陈慧%潘泉君%钟声%魏光涛%张琳叶%杨立长
李仲民%姚懿%樑森林%陳慧%潘泉君%鐘聲%魏光濤%張琳葉%楊立長
리중민%요의%량삼림%진혜%반천군%종성%위광도%장림협%양립장
甘蔗渣%负载%醋酸%吸附%镍离子
甘蔗渣%負載%醋痠%吸附%鎳離子
감자사%부재%작산%흡부%얼리자
bagasse%load%acetate%adsorption%nickel ion
以无毒、价格低廉的原料甘蔗渣及醋酸制备环保型吸附剂用于吸附镍离子。考察了时间、温度、浓度等相关因素对吸附剂吸附性能的影响,研究结果表明:负载醋酸甘蔗渣对镍离子具有较好的吸附性能,随着吸附温度的升高,吸附量减少;吸附为放热过程,吸附焓为-65285.7 J/mol,属物理吸附;吸附熵为-190.8 J/( K·mol),表明吸附过程自由度减少;在温度30~60℃区间,吸附自由能范围为-7473.3~-1749.3 J/mol,说明吸附过程能自发进行。甘蔗渣对镍离子的吸附方式符合多分子层吸附模型,最大吸附量为133.98 mg/g。由实验结果分析推测镍离子在负载醋酸甘蔗渣上吸附方式可能属于离子交换及合并纤维间毛细作用的多分子层吸附。
以無毒、價格低廉的原料甘蔗渣及醋痠製備環保型吸附劑用于吸附鎳離子。攷察瞭時間、溫度、濃度等相關因素對吸附劑吸附性能的影響,研究結果錶明:負載醋痠甘蔗渣對鎳離子具有較好的吸附性能,隨著吸附溫度的升高,吸附量減少;吸附為放熱過程,吸附焓為-65285.7 J/mol,屬物理吸附;吸附熵為-190.8 J/( K·mol),錶明吸附過程自由度減少;在溫度30~60℃區間,吸附自由能範圍為-7473.3~-1749.3 J/mol,說明吸附過程能自髮進行。甘蔗渣對鎳離子的吸附方式符閤多分子層吸附模型,最大吸附量為133.98 mg/g。由實驗結果分析推測鎳離子在負載醋痠甘蔗渣上吸附方式可能屬于離子交換及閤併纖維間毛細作用的多分子層吸附。
이무독、개격저렴적원료감자사급작산제비배보형흡부제용우흡부얼리자。고찰료시간、온도、농도등상관인소대흡부제흡부성능적영향,연구결과표명:부재작산감자사대얼리자구유교호적흡부성능,수착흡부온도적승고,흡부량감소;흡부위방열과정,흡부함위-65285.7 J/mol,속물리흡부;흡부적위-190.8 J/( K·mol),표명흡부과정자유도감소;재온도30~60℃구간,흡부자유능범위위-7473.3~-1749.3 J/mol,설명흡부과정능자발진행。감자사대얼리자적흡부방식부합다분자층흡부모형,최대흡부량위133.98 mg/g。유실험결과분석추측얼리자재부재작산감자사상흡부방식가능속우리자교환급합병섬유간모세작용적다분자층흡부。
An environmental-friendly adsorbent of acetate-loaded bagasse for the removal of nickel ion from aqueous solution was synthesized by the non-toxic and low cost materials of bagasse and acetic acid. The influences of time, temperature and concentration on the adsorption properties were investigated. The research results indicated that the acetate-loaded bagasse adsorbent had good ad-sorption ability and the adsorption capacity decreased with the increase of temperature. The adsorp-tion process of nickel ion on acetate-loaded bagasse was exothermic. The adsorption enthalpy change was -65285. 7 J/mol which showed the adsorption belonged to physical adsorption. That the adsorp-tion entropy change was -190. 8 J/( K·mol) demonstrated the degree of freedom decreased during the process. The Gibbs free energy change of adsorption ranged from -61048. 9 to -66772. 9 J/mol in the temperatures between 30 to 60℃ which revealed the adsorption process could occur spontane-ously. The adsorption isotherm could be better described by the polymolecular layer model and the maximum adsorption capacity was 133. 98 mg/g. The experiment results suggested the adsorption mechanism of nickel ion on acetate-loaded bagasse belonged to physical adsorption of polymolecular layer between bagasse fibers.