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由粉煤灰制备沸石分子筛及其吸附脱除水中氨氮的综合实验设计
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作者 汤岑 赵文汝 +3 位作者 闻杨 杨怡均 杨凯霞 应美玩 《实验技术与管理》 CAS 北大核心 2024年第7期61-68,共8页
围绕高效处理氨氮废水设计了由粉煤灰制备沸石分子筛及其吸附脱除水中氨氮的综合实验,主要包含以粉煤灰为原料合成Na A型分子筛、氨氮吸附性能测试及其吸附机理研究。通过条件优化,确定最优LTA沸石制备参数为碱熔温度60℃、碱灰比1∶1.... 围绕高效处理氨氮废水设计了由粉煤灰制备沸石分子筛及其吸附脱除水中氨氮的综合实验,主要包含以粉煤灰为原料合成Na A型分子筛、氨氮吸附性能测试及其吸附机理研究。通过条件优化,确定最优LTA沸石制备参数为碱熔温度60℃、碱灰比1∶1.2、晶化凝胶硅铝比(Si/Al)0.50。利用XRD、SEM、EDS、N_(2)物理吸附和热重等手段对一系列条件合成的沸石进行表征,确定了其分子式并发现上述最优条件合成的Na A沸石呈立方状,大小均匀,尺寸随着硅铝比的增加而不断增大。沸石的Si/Al=1,外比表面积可达22 m^(2)·g^(−1),该样品对氨氮的饱和吸附能力高达18.59 mg·g^(–1),去除率可达58%,并通过吸附动力学实验深入探究吸附机理。该综合实验涉及物理化学、材料化学、仪器分析等课程知识,有助于锻炼学生的实验操作能力、培养学生创造性思维,同时为粉煤灰基LTA沸石材料的制备、结构表征及性能评价等方面提供一定的参考。 展开更多
关键词 lta沸石合成 氨氮废水 粉煤灰 吸附机理 综合实验
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Synthesis and adsorption property of zeolite FAU/LTA from lithium slag with utilization of mother liquid 被引量:7
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作者 林国 庄强 +2 位作者 崔群 王海燕 姚虎卿 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第11期1768-1773,共6页
Co-crystalline zeolite FAU/LTA-0 was synthesized by hydrothermal method from lithium slag. To make the most of excess silicon and alkali sources in mother liquid derived from FAU/LTA-0, zeolite FAU/LTA-I b was synthes... Co-crystalline zeolite FAU/LTA-0 was synthesized by hydrothermal method from lithium slag. To make the most of excess silicon and alkali sources in mother liquid derived from FAU/LTA-0, zeolite FAU/LTA-I b was synthesized in the same method with the use of mother liquid by adding a certain amount of aluminum source. Influences of different adding ways of aluminum source and recycling dosages of mother liquid on synthesis of zeolites FALl/ LTA with mother liquid were investigated. The phase, microstructure and thermostability of FAU/LTA-0 and FAU/LTA-lb were characterized by XRD, SEM and TG-DTA. The calcium and magnesium cation exchange capacities (CECs) of the zeolites were determined. The results have shown that co-crystalline zeolite can be synthesized with the use of mother liquid by adding aluminum source after 2 h of reaction. Compared with FAU/LTA-0, the crystal twinning structure of FAU/LTA-lb became weaker, the grain size was smaller, and the thermostability was better. With a lower dosage of mother liquid, the content of P-type impurity in product decreased significantly, and the content of LTA phase increased. The reuse rate of mother liquid can reach 48%. The CECs of FAU/LTA-I b-150 can reach 343 mg CaCO3. g-1 and 180 mg MgC03. g-1, showing more excellent adsorption capacities than FAU/LTA-0 and commercial zeolite 4A. The full recycling use of mother liquid to synthesize zeolite FAU/LTA which can be applied for detergent not only improves resource utilization but also reduces oroduction cost. 展开更多
关键词 Lithium slagFAU/ltaCo-crystalline zeoliteMother liquidDetergent builder
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