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Effects of Zn/P ratio on structures and properties of zinc-iron phosphate glassesLI Xiu-ying(李秀英), YANG Hua-ming(杨华明), REN Yu-xi(任宇曦)(School of Minerals Processing and Bioengineering, Central South... of zinc-iron phosphate glasses increases dramatically without large increase in the characterization temperature. (80-x)ZnO-20Fe2O3-xP2O5 glasses with 0.3≤Zn/P≤0.5 are suit for low-to-mid temperature......
] Li G Y, Lian J S, Jiang Z H, et al. A zinc and manganese phosphate coating on automobile iron castings[J]. ISIJ International, 2005, 45(9): 1326-1330. [9] Kropacheva O I, Devyatkina T S, Skornyakova...;生长行为;耐蚀性;磷化 中图分类号:TG 174.3 文献标识码:A Growth and corrosion resistance of zinc phosphate conversion coatings on hot dip galvanized steel LIN Bi-lan, KONG Gang, LU Jin-tang......
(4): 629-631. WU Yue, FEI Feng, JIA Lulu, et al. Recovery of aluminum, iron and lithium from spent lithium iron phosphate batteries[J]. Chinese Journal of Power Sources, 2014, 38(4): 629-631. [11... batteries by cryogenic grinding[J]. Waste Management, 2019, 91: 89-98. [29] BI Haijun, ZHU Huabing, ZU Lei, et al. A new model of trajectory in eddy current separation for recovering spent lithium iron......
Insertion/removal kinetics of lithium ion in spinel LiCuxMn2-xO4 ZENG Rong-hua(曾荣华), LI Wei-shan(李伟善), L? Dong-sheng(吕东生), HUANG Qi-ming(黄启明), ZHAO Ling-zhi(赵灵智) School of Chemistry...; Abstract: The insertion/removal processes of lithium ion in spinel lithium manganese oxide(LiMn2O4......
): 258-261. [7] 郑绵平, 文衍宣. 一种制备磷酸铁锂的湿化学方法: 中国专利, 03102665.6[P]. 2003. ZHENG Jin-ping, WEN Yan-xuan. A wet chemical method of preparation of lithium iron phosphate: China Patent, 03102665.6[P]. 2003. [8] Arnold G, Garche J, Hemmer R, et al. Fine-particle iron phosphate LiFePO4 synthesized by a new low-cost aqueous precipitation technique[J]. J Power Sources, 2003, 119(121): 247-251. [9] Park K S, Son......
of lithium iron phosphate cathodes [J]. Electrochemistry Communications, 2001, 3 (9): 505?508. [9] Naoaki Y, Ohzuku T. Novel lithium insertion material of LiCo1/3Ni1/3Mn1/3O2 for advanced lithium-ion... discharge capacity of LiCoO2 calcined at 850 ℃ is 151 mA?h/g. The discharge capacity after cycled 30 times is still 141 mA?h/g. Key words: lithium cobalt oxide; cathode materials; recovery......
Barium phosphate conversion coating on die-cast AZ91D magnesium alloy LIU Feng(刘 锋)1, 2, SHAN Da-yong(单大勇)1, HAN En-hou(韩恩厚)1, LIU Chang-sheng(刘常升)2 1. State Key Laboratory... conversion coating is better than that of manganese-based phosphate conversion coating by immersion test. The coating is composed of Ba, P, O, Mg, Zn, Mn and Al by EDX analysis. Key words: barium......
ARTICLE J. Cent. South Univ. (2019) 26: 1530-1539 DOI: https://doi.org/10.1007/s11771-019-4109-4 Lithium storage performance of {010}-faceted and [111]-faceted anatase TiO2 nanocrystals DU De-jian... Abstract: As a popular anode material for lithium-ion batteries, anatase TiO2 nanoparticles with exposed {001} facets usually exhibit exceptional lithium storage performance owing to more accessible sites......
of low LOI goethetic hematite iron ore[J]. International Journal of Mining Science and Technology, 2017, 27: 1031-1036. [17] MASAMBI S, DORFLING C, BRADSHAW S. Comparing iron phosphate and hematite... addition on iron removal rate and cobalt loss rate 由图1可知,除铁率和钴损失率都随着双氧水用量的增大而显著升高.当双氧水用量由理论量的0.6倍提高至1.5倍时,除铁率由52.01%上升至99.68%,此后继续增大双氧水用量至理论量的2倍,除铁率微升至99.72%.溶液的钴损失率在0.6倍双氧水理论用量时为0.96%,在1.5倍理论用量时升至2.87%,继续增大......
Influence of sodium metanitrobenzene sulphonate on structures and surface morphologies of phosphate coating on AZ91D NIU Li-yuan(牛丽媛), LI Guang-yu(李光玉), JIANG Zhong-hao(江中浩), SUN Li-ping(孙丽萍...; Abstract: The gray phosphate coating was formed on AZ91D magnesium alloy from the zinc phosphating bath containing sodium metanitrobenzene sulphonate in about 4 min. The structure, surface......