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不同种类无机酸浸出钢渣中磷、铁元素的研究
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作者 陈慧方 吴建 +2 位作者 吕宁宁 苏畅 王海川 《应用化工》 CAS CSCD 北大核心 2023年第3期730-733,738,共5页
为了促进钢渣中磷的高效浸出,降低浸出过程铁的损失,研究了钢渣中磷、铁元素在盐酸、硝酸、硫酸中的溶出行为,考察了浓度、反应时间、反应温度、酸溶液与渣样液固比及混合酸等因素对钢渣中磷、铁元素浸出率的影响。结果表明,酸浓度、反... 为了促进钢渣中磷的高效浸出,降低浸出过程铁的损失,研究了钢渣中磷、铁元素在盐酸、硝酸、硫酸中的溶出行为,考察了浓度、反应时间、反应温度、酸溶液与渣样液固比及混合酸等因素对钢渣中磷、铁元素浸出率的影响。结果表明,酸浓度、反应时间、液固比对磷、铁元素浸出率有较大影响,反应温度的影响不明显,当钢渣平均粒径为65μm,酸浓度为0.1 mol/L,反应时间为10 min,搅拌速率为800 r/min,温度为298 K,液固比为80∶1 mL/g时,最优磷浸出率为99.07%;磷和铁在硫酸溶液中的浸出率最高,而在硝酸及盐酸溶液中的浸出效果相差不大;混合酸溶液的浸出效果要优于单酸。浸出前,渣样呈不规则块状,表面致密。酸浸后,渣样颗粒表面呈蜂窝状,有大量孔洞形成。 展开更多
关键词 钢渣 无机酸 溶出
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Density Functional Theory Study of Selectivity of Crown Ethers to Li^+ in Spent Lithium-Ion Batteries Leaching Solutions 被引量:1
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作者 Yong-lin Yao Mei-ying Zhu +3 位作者 Zhuo Zhao Wen-gang Liu Bi-hai Tong Ming-yang Li 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第3期343-348,I0002,共7页
It is a challenge to recover lithium from the leaching solution of spent lithium-ion batteries,and crown ethers are potential extractants due to their selectivity to alkali metal ions.The theoretical calculations for ... It is a challenge to recover lithium from the leaching solution of spent lithium-ion batteries,and crown ethers are potential extractants due to their selectivity to alkali metal ions.The theoretical calculations for the selectivity of crown ethers with different structures to Li ions in aqueous solutions were carried out based on the density functional theory.The calculated results of geometries,binding energies,and thermodynamic parameters show that 15C5 has the strongest selectivity to Li ions in the three crown ethers of 12C4,15C5,and 18C6.B15C5 has a smaller binding energy but more negative free energy than 15C5 when combined with Li^+,leading to that the lithium ions in aqueous solutions will combine with B15C5 rather than 15C5.The exchange reactions between B15C5 and hydrated Li^+,Co^2+,and Ni^2+were analyzed and the results show that B15C5 is more likely to capture Li^+from the hydrated ions in an aqueous solution containing Li^+,Co^2+,and Ni^2+.This study indicates that it is feasible to extract Li ions selectively using B15C5 as an extractant from the leaching solution of spent lithium-ion batteries. 展开更多
关键词 Density functional theory Crown ether GEOMETRY Binding energy Thermodynamic parameter
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