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碳含量对新型TiO(OH)_(2)/C锂离子筛吸锂性能的影响
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作者 于成龙 程航 +5 位作者 金党波 宋杰 杨晨光 李海 文毓 华建梅 《陕西科技大学学报》 北大核心 2021年第5期111-118,共8页
粉体TiO(OH)_(2)具有高平衡吸附容量、平衡吸附速率和低的溶损率,是一种性能优异的锂离子筛.但在实际应用中存在回收困难、流损大的问题,通常采用成形的方法解决.借鉴核聚变工程领域中β-Li_(2)TiO_(3)小球制备工艺,制备了以多孔碳材料... 粉体TiO(OH)_(2)具有高平衡吸附容量、平衡吸附速率和低的溶损率,是一种性能优异的锂离子筛.但在实际应用中存在回收困难、流损大的问题,通常采用成形的方法解决.借鉴核聚变工程领域中β-Li_(2)TiO_(3)小球制备工艺,制备了以多孔碳材料为基体的新型TiO(OH)_(2)/C锂离子筛,研究了不同C含量的TiO(OH)_(2)/C锂离子筛吸附容量,C含量为1:0.25的TiO(OH)_(2)/C锂离子筛Li^(+)吸附容量最大,为53.46 mg/g.对其吸附动力学进行了研究,各C含量的TiO(OH)_(2)/C锂离子筛均适合用伪二级动力学解释.用SEM分析TiO(OH)_(2)/C锂离子筛形貌,发现成形后大尺寸和小尺寸的TiO(OH)_(2)锂离子筛颗粒尺寸均减小,团聚现象消失,均匀的分布在C膜上.用XRD测试分析TiO(OH)_(2)/C锂离子筛的物相,发现吸附后TiO(OH)_(2)三强特征衍射峰位置向高角度方向偏移,平均晶粒尺寸减小,会导致吸附容量提高.用Raman测试分析TiO(OH)_(2)/C锂离子筛的键合关系,位于153 cm^(-1)、374 cm^(-1)和611 cm^(-1)处振动峰向低波数方向偏移,201cm^(-1)和490cm^(-1)处振动峰向高波数方向偏移,对吸附容量的提升有明显促进作用. 展开更多
关键词 TiO(OH)_(2)/C 新型离子筛 吸锂性能
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Synthesis of Li^+ adsorbent(H_2TiO_3) and its adsorption properties 被引量:9
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作者 石西昌 张志兵 +3 位作者 周定方 张丽芬 陈白珍 余亮良 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第1期253-259,共7页
H2TiO3 was obtained from the acid-modified adsorbent precursor Li2TiO3,which was synthesized by a solid-phase reaction between TiO2 and Li2CO3.The extraction ratio of Li+ from Li2TiO3 was 98.86%,almost with no Ti4+ ... H2TiO3 was obtained from the acid-modified adsorbent precursor Li2TiO3,which was synthesized by a solid-phase reaction between TiO2 and Li2CO3.The extraction ratio of Li+ from Li2TiO3 was 98.86%,almost with no Ti4+ extracted.The effects of lithium titanium ratio,calcining temperature and time were investigated on the synthesis of Li2TiO3.Li2TiO3,H2TiO3 and the adsorbed Li+ adsorbent were characterized by XRD and SEM.The lithium adsorption properties were investigated by the adsorption kinetics and adsorption isotherm.The results indicate that H2TiO3 has an excellent adsorptive capacity for Li+.Two simplified kinetic models including the pseudo-first-order and pseudo-second-order equations were selected to follow the adsorption processes.The rate constants of adsorption for these kinetic models were calculated.The results show that the adsorption process can be described by the pseudo-second-order equation,and the process is proved to be a chemical adsorption.The adsorption process that H2TiO3 adsorbs Li+ in LiCl solution well fits the Langmuir equation with monolayer adsorption. 展开更多
关键词 Li+ adsorbent Li2TiO3 adsorption property kinetic models monolayer adsorption TIO2 Li2CO3
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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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