新型炭材料
新型炭材料
신형탄재료
NEW CARBON MATERIALS
2011年
4期
299-306
,共8页
活性炭%铁氧化物%磷酸根%吸附
活性炭%鐵氧化物%燐痠根%吸附
활성탄%철양화물%린산근%흡부
Activated carbon%Iron oxide%Phosphate%Adsorption
利用活性炭负载铁氧化物制备了复合吸附剂,并用于水中磷酸根的去除.采用BET,SEM及XRD等手段对复合吸附剂的物理化学特性进行了表征,用静态吸附实验方法比较研究了复合吸附剂和活性炭从水溶液中吸附磷酸根的性质.结果表明:复合吸附剂具有快的吸附速度和高的吸附容量,其吸附磷酸根的性质受溶液pH值、铁含量及阴离子浓度的影响.在pH=3.0时,复合吸附剂对磷酸根的吸附容量为98.39 mg/g,而活性炭为78.90 mg/g.相比之下,Freundlich模型比Langmuir模型能更好地描述复合吸附剂和活性炭对磷酸根的吸附过程;而Lagergren二级方程却能很好地描述复合吸附剂对磷酸根的吸附动力学.水合氧化铁/活性炭复合吸附剂吸附磷酸根为吸热过程.
利用活性炭負載鐵氧化物製備瞭複閤吸附劑,併用于水中燐痠根的去除.採用BET,SEM及XRD等手段對複閤吸附劑的物理化學特性進行瞭錶徵,用靜態吸附實驗方法比較研究瞭複閤吸附劑和活性炭從水溶液中吸附燐痠根的性質.結果錶明:複閤吸附劑具有快的吸附速度和高的吸附容量,其吸附燐痠根的性質受溶液pH值、鐵含量及陰離子濃度的影響.在pH=3.0時,複閤吸附劑對燐痠根的吸附容量為98.39 mg/g,而活性炭為78.90 mg/g.相比之下,Freundlich模型比Langmuir模型能更好地描述複閤吸附劑和活性炭對燐痠根的吸附過程;而Lagergren二級方程卻能很好地描述複閤吸附劑對燐痠根的吸附動力學.水閤氧化鐵/活性炭複閤吸附劑吸附燐痠根為吸熱過程.
이용활성탄부재철양화물제비료복합흡부제,병용우수중린산근적거제.채용BET,SEM급XRD등수단대복합흡부제적물이화학특성진행료표정,용정태흡부실험방법비교연구료복합흡부제화활성탄종수용액중흡부린산근적성질.결과표명:복합흡부제구유쾌적흡부속도화고적흡부용량,기흡부린산근적성질수용액pH치、철함량급음리자농도적영향.재pH=3.0시,복합흡부제대린산근적흡부용량위98.39 mg/g,이활성탄위78.90 mg/g.상비지하,Freundlich모형비Langmuir모형능경호지묘술복합흡부제화활성탄대린산근적흡부과정;이Lagergren이급방정각능흔호지묘술복합흡부제대린산근적흡부동역학.수합양화철/활성탄복합흡부제흡부린산근위흡열과정.
An composite adsorbent for the removal of phosphate from aqueous solutions was synthesized by loading iron oxide onto activated carbon.The adsorbent can be separated from the medium by a simple magnetic procedure owing to the magnetic properties of the iron oxides.The properties of the composite were investigated by nitrogen adsorption,scanning electron microscopy and X-ray diffraction.The adsorption of phosphate ions by the composite adsorbent and the activated carbon was compared in batch experiments.The composite adsorbent showed fast adsorption rates and high adsorption capacities and its adsorptive performance for phosphate ions was dependent on the pH value,iron content and anion concentration.The adsorption capacities of phosphate ions at pH 3.0 were 98.39 mg/g for iron oxide/activated carbon composite and 78.90 mg/g for activated carbon.The adsorptive isotherms for phosphate ions with activated carbon and the composite adsorbent all match the Freundlich model better than the Langmuir model.The adsorption kinetic data could be well described by the Lagergren pseudo-second-order kinetic equation.The adsorption by the composite adsorbent is endothermic for phosphate ions.