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Structure and stability of Li-Mn-Ni composite oxides as lithium ion sieve precursors in acidic medium
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作者 马立文 陈白珍 +2 位作者 石西昌 张文 杨喜云 《Journal of Central South University》 SCIE EI CAS 2011年第2期314-318,共5页
A series of spinel Li-Mn-Ni composite oxides with theoretical chemical formula of LiNixMn2-xO4 (0〈_x〈_1.0) were synthesized by liquid phase method. Their structure and morphology were characterized by X-ray diffra... A series of spinel Li-Mn-Ni composite oxides with theoretical chemical formula of LiNixMn2-xO4 (0〈_x〈_1.0) were synthesized by liquid phase method. Their structure and morphology were characterized by X-ray diffractometry (XRD) and scanning electron microscopy (SEM), respectively. The stability of these Ni-substituted spinel oxides prepared at different temperatures was investigated in acidic medium as well. The results show that Ni can be brought into the spinel framework completely to form well-crystallized product when x〈_0.5 and the optimized synthesis temperature is 800℃. LiNi0.4Mn1.6O4 prepared at 800℃ can maintain the spinel structure and morphology with Li extraction ratio of 30.37%, Mn extraction ratio of 8.78% and Ni extraction ratio of 1,82% during acid treatment. The incorporated Ni not only inhibits the dissolution of Mn, but also reduces the extraction of Li due to the lattice contraction 展开更多
关键词 lithium ion sieve Li-Mn-Ni composite oxide structure STABILITY
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Zr-doped titanium lithium ion sieve and EP-granulated composite:Superb adsorption and recycling performance 被引量:5
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作者 Suyu Zhou Xiaojing Guo +2 位作者 Xi Yan Yan Chen Wanzhong Lang 《Particuology》 SCIE EI CAS CSCD 2022年第10期100-110,共11页
Lithium ion sieve(LIS)has attracted great attention due to its high adsorption selectivity towards Li+.Herein,a new type of Zr-doped Ti-LIS(HZrTO)was synthesized by a simple calcination method.The adsorption capacity ... Lithium ion sieve(LIS)has attracted great attention due to its high adsorption selectivity towards Li+.Herein,a new type of Zr-doped Ti-LIS(HZrTO)was synthesized by a simple calcination method.The adsorption capacity increased from 56.3 mgg-1(before doping)to 93.2 mgg-1 after doping in LiOH solution(lithium 1.8gL-1).The adsorption isotherm and adsorption kinetics of HZrTO accord with the Langmuir isotherm and the pseudo-second-order kinetic equation,respectively.Batch experiments showed that HZrTO has good stability and selectivity.In addition,HZrTO was granulated via epoxy resin(E-12),and the obtained granular adsorbent showed good adsorption capacity,excellent stability and high selectivity towards Li+. 展开更多
关键词 lithium ion sieve lithium titanium oxide Zr-doped GRANULATion
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Recovery of lithium using H_(4)Mn_(3.5)Ti_(1.5)O_(12)/reduced graphene oxide/polyacrylamide composite hydrogel from brine by Ads-ESIX process 被引量:2
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作者 Jingsi Cui Huanxi Xu +3 位作者 Yanfeng Ding Jingjing Tian Xu Zhang Guanping Jin 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2022年第4期20-28,共9页
Powdery Li^(+)-imprinted manganese oxides adsorbent was widely used to the recovery of Li^(+),but there are some difficulties,such as poor stability in acid solution,inconvenience of operation and separation.In this w... Powdery Li^(+)-imprinted manganese oxides adsorbent was widely used to the recovery of Li^(+),but there are some difficulties,such as poor stability in acid solution,inconvenience of operation and separation.In this work,a useful hydrogel composite based H_(4)Mn_(3.5)Ti_(1.5)O_(12)/reduced graphene oxide/polyacrylamide(HMTO-rGO/PAM)was fabricated by thermal initiation method with promising stable,conductive and selective properties.The resulting materials were characterized by field emission scanning electron microscope,infrared absorption spectrum,X-ray diffraction,X-ray photoelectron spectroscopy and electrochemical techniques.The recovery of Li^(+)was investigated using HMTO-rGO/PAM from brine by a separated two-stage sorption statically and electrically switched ion exchange desorption process.The adsorption capacity of 51.5 mg·g^(-1)could be achieved with an initial Li^(+)concentration of 200 mg·L^(-1)in pH 10,at 45℃ for 12 h.Li^(+)ions could be quickly desorbed by cyclic voltammetry(CV)in pH 3,0.1 mol·L^(-1)HCl/NH;Cl accompanying the exchange of Li^(+)and H+(NH;)and the transfer of LMTO-rGO/PAM to HMTO-rGO/PAM. 展开更多
关键词 lithium recovery Titanium doped lithium ion sieve Hydrogel Adsorption-electrically switched ion exchange(Ads-ESIX)
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