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首页> 外文期刊>RSC Advances >Lithium adsorption performance of a three-dimensional porous H2TiO3-type lithium ion-sieve in strong alkaline Bayer liquor
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Lithium adsorption performance of a three-dimensional porous H2TiO3-type lithium ion-sieve in strong alkaline Bayer liquor

机译:三维多孔H 2 TiO 3 型锂离子筛在强碱性拜耳溶液中的锂吸附性能

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摘要

Removing lithium from the Bayer liquor for ensuring good alumina product quality demands a special lithium ion-sieve (LIS) with good stability in a strong alkaline medium. In this study, a three-dimensional porous H2TiO3-type LIS (porous-HTO) prepared by a polystyrene (PS) colloidal microspheres template was applied to adsorb Li+ from the strong alkaline Bayer liquor. XRD and SEM results confirm the fine stability of porous-HTO in strong alkaline medium, and the regeneration tests show that more than 64 mg g?1 lithium adsorption capacity still remains even after 5 cycles of lithiation–delithiation in the simulation Bayer liquor. The lithium adsorption processes of porous-HTO and bare H2TiO3-type LIS (bare-HTO) both fit the pseudo-second-order model, but the adsorption capacity and the adsorption rate of the porous-HTO are much better than those of the bare-HTO. For porous-HTO, the adsorption rate constant is 0.02357 g mg?1 h?1 and the equilibrium adsorption capacity is 76.3 mg g?1, while for bare-HTO, the adsorption rate constant is 0.009682 g mg?1 h?1 and the equilibrium adsorption capacity is only 44.8 mg g?1. The lithium selectivity tests demonstrate that the coexisting ions including Na+, K+, AlO2?, SiO32? in the simulation Bayer liquor have low influence on lithium adsorption. The simulation Bayer liquors with Li+ ions of 56.00, 30.00 and 5.00 mg L?1 are all reduced to below 1.00 mg L?1 by virtue of one-time-adsorption of porous-HTO at various solid to liquid ratios of 1.0, 0.5 and 0.1 g L?1, respectively.
机译:为了确保氧化铝产品质量良好,从拜耳液中除去锂需要一种特殊的锂离子筛(LIS),该筛在强碱性介质中具有良好的稳定性。本研究制备了三维多孔H 2 TiO 3 型LIS(porous-HTO)用聚苯乙烯(PS)胶体微球模板吸附强碱性拜耳液中的Li + 。 XRD和SEM结果证实了多孔HTO在强碱性介质中的优良稳定性,并且再生测试表明,甚至仍然保持超过64 mg g ?1 锂的吸附能力。在模拟拜耳液中经过5次锂化-去锂化循环后。多孔HTO和裸H 2 TiO 3 型LIS(裸HTO)的锂吸附过程两者都拟合伪二阶模型,但是多孔HTO的吸附容量和吸附速率比裸HTO好得多。对于多孔HTO,吸附速率常数为0.02357 g mg ?1 h ?1 和平衡吸附容量为76.3 mg g ?1 ,而对于裸HTO,吸附速率常数为0.009682 g mg ?1 h ?1 ,平衡吸附容量仅为44.8 mg g ?1 。锂选择性测试表明,Na + ,K + ,AlO 2 ,SiO 3 2? 在模拟拜耳液中对锂的吸附影响很小。 Li + 离子为56.00、30.00和5.00 mg L ?1 的模拟拜耳液均还原为分别以1.0、0.5和0.1 g L <的各种固液比对多孔HTO进行一次吸附,从而使1.00 mg L ?1 低于1.00 L sup>?1

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