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硅铝铵离子筛的制备及其对污水中氨氮的脱除性能

Preparation of silicon-aluminum ammonium ion sieve and its performance on ammonia nitrogen removal from domestic wastewater
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摘要 通过常温搅拌制备了对污水中NH_(4)^(+)具有高选择性去除的硅铝型弱晶态铵离子筛,其平均孔径介于2倍水合Ca^(2+)直径和2倍水合Na+直径之间。结果表明,铵离子筛对NH_(4)^(+)具有优良的吸附选择性和可再生性,吸附容量可达到25 mg·g^(-1)。受Na(AlO4)双位点吸附规则制约,铵离子筛对Ca^(2+)、Mg^(2+)具有优良的筛截效果,市政污水中质量浓度为70mg·L^(-1)的Ca^(-1)不影响铵离子筛对NH_(4)^(+)的吸附性能Na(AlO)。吸附饱和的铵离子筛经0.5 mol·L^(-1)NaCl溶液多次洗脱和再生之后,仍能将污水中的氨氮质量浓度由40 mg·L^(-1)快速降至1 mg·L^(-1)以下。本研究可为高效去除污水中的氨氮提供一种简单、高效的方法。 A silicon-aluminium weakly crystalline ammonium ion sieve was prepared through stirring at normal atmospheric temperature for highly selective extraction of ammonium ions from sewage.The average pore size of the sieve is 1.64 nm diameter,which is between 2 times the diameter of hydrated calcium ion(1.648nm)and 2 times the diameter of hydrated sodium ion(1.432 nm).The results of simulated and real sewage treatment show that the prepared ammonium ion sieve had an excellent retention of NH_4~+against Ca^(2+),Mg^(2+),Na+and K+ions.The adsorption capacity of NH_4~+could reach 25 mg·g^(-1)and was not affected by Ca^(2+)up to 70mg·L^(-1),which was likely due to the effect of dual-site adsorption of the Na(AlO_4)domains.After the used ammonium ion sieve was eluted and regenerated for several times with 0.5 mol·L^(-1)NaCl solution,it still could lead to the rapid decrease of NH_4~+concentration in sewage from 40 mg·L^(-1)to below 1 mg·L^(-1)by the regenerated sieves.This study provides a simple and efficient method for separating and extracting green ammonia from sewage.
作者 王子翔 侯婉伊 莫恒亮 唐阳 李天玉 李锁定 杨晓进 万平玉 WANG Zixiang;HOU Wanyi;MO Hengliang;TANG Yang;LI Tianyu;LI Suoding;YANG Xiaojin;WAN Pingyu(National Fundamental Research Laboratory of New Hazardous Chemicals Assessment and Accident Analysis,Beijing University of Chemical Technology,Beijing 100029,China;Beijing Origin Water Membrane Technology Co.Ltd.,Beijing 101400,China;State Key Laboratory of Chemical Resource Engineering,Beijing University of Chemical Technology,Beijing 100029,China)
出处 《环境工程学报》 CAS CSCD 北大核心 2023年第11期3554-3561,共8页 Chinese Journal of Environmental Engineering
基金 国家重点研发计划项目(2021YFB3301101)。
关键词 硅铝型铵离子筛 氨氮处理 水合阳离子交换 双位点吸附规则 aluminum silico-based ammonium ion sieve ammonia nitrogen treatment hydrated cation exchange dual-site adsorption
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