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作 者:涂甜富 Tu Tianfu(Guangzhou Water Planning&Design Institute Co.,Ltd.,Guangzhou,Guangdong 510006)
机构地区:[1]广州市水务规划勘测设计研究院有限公司,广东广州510006
出 处:《现代工程科技》2024年第15期69-72,共4页Modern Engineering Technology
摘 要:采用微波法制得低电荷锂化蒙脱土(the reduced-charge lithiated bentonite,RCBT),再制备羟基铝柱撑剂,插层于RCBT中制备低电荷铝柱撑蒙脱土(the aluminum-pillared bentonite,Al/RCBT)。对Al/RCBT进行结构和形貌表征并考察它对考马斯亮蓝的吸附性能。研究表明:羟基铝柱撑剂成功插入RCBT层间,使蒙脱土的层间距增大了0.78 nm;最佳吸附pH值为2,吸附30 mg/L考马斯亮蓝溶液40 min即达到平衡,吸附容量达17 mg/g;Al/RCBT对考马斯亮蓝的吸附符合准二级动力学模型和Freundlich等温模型。The reduced-charge lithiated bentonite(RCBT)was prepared by the microwave method,and then the aluminum-pillared bentonite(Al/RCBT)was prepared from the hydroxy aluminum pillaring agent intercalation RCBT.The structure of Al/RCBT was characterized and its adsorption performance for Coomassie Brilliant Blue was investigated.Studies have shown that:the aluminum hydroxy pillaring agent was successfully inserted between the RCBT layers,which increases the interlayer spacing of the bentonite by 0.78nm;the best adsorption pH value is 2,the adsorption of 30mg/L Coomassie brilliant blue solution reaches equilibrium within 40 minutes,and the adsorption capacity is 17mg/g;The adsorption of Coomassie Brilliant Blue by Al/RCBT conforms to the quasisecond-order kinetic model and Freundlich isotherm model.
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