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Porous lithium ion sieves nanofibers: General synthesis strategy and highly selective recovery of lithium from brine water

机译:多孔锂离子筛纳纤维:一般合成策略和来自盐水锂的高度选择性恢复

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Lithium ion sieves (LIS) have gained great interest in lithium recovery. However, the synthesis of high stability, selectivity, and adsorption capacity of LIS is still a great challenge. Here, a general strategy combining electrospinning and calcination techniques is developed to fabricate a series of porous titanium-based LIS nanofibers. The porous structure created by calcination increases the exposure of the adsorption sites, which significantly accelerates the deintercalation and intercalation of Li+ from and into the vacancies in the framework. All of samples have good Li+ adsorption capacity and high selectivity for Li+. As a proof of concept, porous H4Ti5O12 nanofibers (P-HTO-NF) transformed from the electrospun porous Li4Ti5O12 nanofibers (P-LTO-NF) are systematically investigated in lithium recovery. P-HTO-NF possesses a superior adsorption capacity (59.1 mg/g), which is nearly close to the theoretical value (63.77 mg/g). The Freundlich isotherm model can well describe the adsorption isotherm data. The adsorption equilibrium can reach within 30 min (C-0 = 300 mg/L, pH = 11, S/L = 60 mg/60 mL). The equilibrium distribution coefficient (K-d, mL/g) for Li+ (232) is extremely higher than that for competing ions (1.41 for Na+, 1.17 for K+, 0.88 for Mg2+, 0.58 for Ca2+) (C-0 = 40 mg/L for Li+, pH = 8), indicative of a highly selective recovery of lithium from brine water. The LIS show excellent stability with a low Ti dissolution and the adsorption capacity for Li+ remains 86.5% after 6 cycles. Our work provides a universal strategy for the synthesis of porous LIS.
机译:锂离子筛(LIS)对锂恢复感兴趣。然而,LIS的高稳定性,选择性和吸附能力的合成仍然是一个巨大的挑战。这里,开发了一种组合静电纺丝和煅烧技术的一般策略以制造一系列多孔钛基LIS纳米纤维。通过煅烧产生的多孔结构增加了吸附位点的暴露,这显着加速了Li +的脱嵌和嵌入到框架中的空位。所有样品都具有良好的Li +吸附能力和Li +的高选择性。作为概念证明,在锂回收中系统地研究了从Electurpum多孔Li4Ti5O12纳米纤维(第LTO-NF)转化的多孔H4TI5O12纳米纤维(P-HTO-NF)。 P-HTO-NF具有优异的吸附能力(59.1mg / g),几乎接近理论值(63.77mg / g)。 Freundlich等温模型可以很好地描述吸附等温线数据。吸附平衡可在30分钟内达到(C-0 = 300mg / L,pH = 11,S / L = 60mg / 60mL)。 Li +(232)的平衡分布系数(KD,ML / g)极高于竞争离子的高于(1.41,对于Na +,1.17的K +,0.88,对于Ca 2 +的0.58)(C-0 = 40 mg / L.对于Li +,pH = 8),指示来自盐水的锂的高度选择性恢复。 LIS显示出优异的稳定性,低Ti溶解,6次循环后Li +的吸附能力保持86.5%。我们的工作为合成多孔LIS提供了普遍策略。

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