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粉煤灰基层状金属氧化物对水中活性红X-3B的吸附
引用本文:周绍杰,刘明照,钱翌.粉煤灰基层状金属氧化物对水中活性红X-3B的吸附[J].化工环保,2017,37(2):183-188.
作者姓名:周绍杰  刘明照  钱翌
作者单位:1. 青岛科技大学 环境与安全工程学院,山东 青岛 266042;; 2. 青岛市环境保护局 崂山分局,山东 青岛 266061
基金项目:国家自然科学基金项目(51372129,51572138); 青岛市科技局成果转化计划-科技惠民专项(城市发展)(16-6-2-54-nsh)
摘    要:以粉煤灰(FA)为原料,采用共沉淀法制备了层状双金属氢氧化物(LDH)和层状金属氧化物(LMO,也称LDO),并采用XRD和BET技术进行了表征。比较了FA、LDH、LMO对活性红X-3B染料(X-3B)的吸附效果;考察了LMO吸附X-3B的影响因素,并探讨了吸附机理。XRD表征结果表明,LMO在吸附X-3B后重新恢复LDH层状结构。BET表征结果表明,LMO的比表面积大于LDH。吸附实验结果表明,3种吸附剂对X-3B吸附效果的优劣顺序为:LMOLDHFA;在初始X-3B质量浓度为50 mg/L、LMO投加量为2.0 g/L、吸附温度为25℃、吸附pH为7、吸附时间为30 min的条件下,X-3B去除率可达98.1%;LMO对X-3B的吸附符合Langmuir等温吸附方程,饱和吸附量为129.53 mg/g,且吸附过程可用准二级动力学方程描述。

关 键 词:粉煤灰  层状双金属氢氧化物  层状金属氧化物  吸附  活性红X-3B  
收稿时间:2016-08-11

Adsorption of reactive red X-3B from water by layered metal oxides based on fly ash
Zhou Shaojie,Liu Mingzhao,Qian Yi.Adsorption of reactive red X-3B from water by layered metal oxides based on fly ash[J].Environmental Protection of Chemical Industry,2017,37(2):183-188.
Authors:Zhou Shaojie  Liu Mingzhao  Qian Yi
Institution:1. College of Environment and Safety Engineering,Qingdao University of Science & Technology,Qingdao Shandong 266042,China;2. Laoshan Branch of Qingdao Environmental Protection Bureau,Qingdao Shandong 266061,China
Abstract:Layered double hydroxide(LDH)and layered metal oxides(LMO,or LDO)were prepared using fly ash(FA)as the raw material by co-precipitation method,and characterized using XRD and BET. The adsorption effects of reactive red X-3B dye(X-3B)on FA,LDH and LMO were compared. The factors affecting adsorption of X-3B on LMO were investigated,and the adsorption mechanism was discussed. The XRD results demonstrated that LMO could restore the layered structure of LDH after adsorption of X-3B. The BET results showed that the specific surface area of LMO was larger than that of LDH. The X-3B adsorption effects of the 3 adsorbents decreased in the order of LMO>LDH>FA. The optimal adsorption conditions were as follows:LMO dosage of 2.0 g/L,adsorption temperature of 25 ℃,adsorption time of 30 min,adsorption pH of 7,with the highest X-3B removal rate as 98.1%. The adsorption of X-3B on LMO fitted the Langmuir isothermal adsorption equation well and the saturated adsorption capacity was 129.53 mg/g. The adsorption process could be best described by the pseudo-second-order kinetic model.
Keywords:fly ash  layered double hydroxide  layered metal oxide  adsorption  reactive red X-3B  
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