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technology of Ti-based lead oxide coating electrode [J]. Materials Review, 2013, 27(21): 31-34. [3] LI Xiao-lin, LI Xue-ming, YANG Wen-jing, CHEN Xiao-hua, LI Wu-lin, LUO Bin-bin, WANG Kui-long...-structured lead dioxide [J]. Electrochimica Acta, 2006, 52(4): 1596-1602. [13] DONG Lan-zhou, GAO Li-jun. Effect of electrochemical preparation methods on structure and properties of PbO2 anodic......
. [7] KANNAN A R S, MURRALIDHARAN S, SARANGAPANI K B, BALARAMACHANDRAN V, KAPALI V. Corrosion and anodic behavior of zinc and its ternary alloys in alkaline battery electrolytes [J]. J Power Sources......
及影响因素灰色关联分析[J]. 中南大学学报(自然科学版), 2013, 44(3): 998-1005. E Jiaqiang, LONG Yanping, WANG Shuhui, et al. Thermal simulation on dynamic lithium-ion battery during charge and its grey relational analysis[J...房岩台开挖爆破试验研究[J]. 爆破, 2008, 25(2): 30-33. LI Xinping, XU Jian, ZHANG Chengliang, et al. Experimental study on rock bench blasting excavation in underground workshop of Xiluodu Hydropower Station[J......
. Bioleaching mechanism of Co and Li from spent lithium-ion battery by the mixed culture of acidophilic sulfur-oxidizing and iron-oxidizing bacteria[J]. Bioresource Technology, 2009, 100(24): 6163-6169. [24] 曾伟民... and Assessment, and the First Annual Meeting of Heavy Metal Pollution Prevention Professional Committee, 2012: 456-461. [2] ZHU N, XIANG Y, ZHANG T, WU P, DANG Z, LI P, WU J. Bioleaching of metal concentrates......
Trans. Nonferrous Met. Soc. China 25(2015) 3429-3435 Environmental risk assessment on slag and iron-rich matte produced from reducing-matting smelting of lead-bearing wastes and iron-rich wastes Li...-A case study: Mahanadi basin, India [J]. Journal of Hazardous Materials, 2011, 186(2-3): 1837-1846. [14] YAO Wei-yi, TANG Chao-bo, TANG Mo-tang, LI Zeng-rong, LIU Feng-cheng. One-stage smelting lead from......
carried out on a CHI 660D electrochemistry workstation. The galvanostatic charge and discharge tests were performed on a Land battery test system (Wuhan, China) in the potential range of 0-0.5 V (vs Hg/HgO... rate performance concerns the good dispersion, small size, high specific area and the porous structure of the composite, which can improve the active surface areas, shorten the electron and ion......
of Power Sources, 2006, 159(1): 282-286. [17] SHARMA N, PETERSON V K, ELCOMBE M M, AVDEEV M, STUDER A J, BLAGOJEVIC N, YUSOFF R, KAMARULZAMAN N. Structural changes in a commercial lithium-ion battery during..., point defects on the surfaces had even greater impact on the Mg(OH)2 properties than those in the bulk. References [1] LI B, CAO H, YIN G. Mg(OH)2@reduced graphene oxide composite for removal of dyes......
, and battery manufacturing processes [2]. Unlike organic pollutants, which are susceptible to biological degradation, heavy metals such as Ni(II) are not biodegradable and tend to cause massive soil..., oxidation, adsorption, ion exchange, coagulation, evaporation, redox and extraction. Among them, adsorption has been widely applied in practice since its economically feasible alternative, versatile......
are powered by an internal battery cell that in turn restricts capsule miniaturization. Finally, the random orientation of the capsule as it travels through the GI tract means that a continuous......
Z P, DOREN J, FANG Z Q, LI W S. Improvement in electrokinetic remediation of Pb-contaminated soil near lead acid battery factory [J]. Transactions of Nonferrous Metals Society of China, 2015, 25(9... threat to plants, animals and human beings [1-4]. Conventional methods such as chemical precipitation, coagulation, adsorption, membrane processes and ion exchange have been employed for removing heavy......