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以锌电积阳极泥为原料制备电池级四氧化三锰工艺研究
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作者 樊瑶建 王金洋 +4 位作者 倪恒发 刘芳洋 张宗良 贾明 蒋良兴 《中南大学学报(自然科学版)》 北大核心 2025年第8期3312-3325,共14页
提出一种利用锌电积阳极泥制备电池级Mn_(3)O_(4)的方法。阳极泥通过H_(2)O^(2+)H_(2)SO_(4)协同浸出后,采用四级净化工艺实现溶液中主要杂质Zn^(2+)、Na^(+)、K^(+)、Mg^(2+)、Ca^(2+)、Fe^(3+)和F^(-)的深度去除,获得合格的MnSO_(4)... 提出一种利用锌电积阳极泥制备电池级Mn_(3)O_(4)的方法。阳极泥通过H_(2)O^(2+)H_(2)SO_(4)协同浸出后,采用四级净化工艺实现溶液中主要杂质Zn^(2+)、Na^(+)、K^(+)、Mg^(2+)、Ca^(2+)、Fe^(3+)和F^(-)的深度去除,获得合格的MnSO_(4)溶液。对传统“两步法”合成Mn_(3)O_(4)工艺进行改进,将MnSO_(4)溶液和氨水以并流方式加入反应釜内,并持续通入空气作为氧化剂,使溶液中的Mn^(2+)边沉淀边缓慢氧化,实现Mn_(3)O_(4)的准一步合成。经热醋酸处理Mn_(3)O_(4)中的杂质S。研究结果表明:在MnSO_(4)浓度大于1.5 mol/L、反应时间大于36 h的条件下,获得了比表面积为1.61 m^(2)·g^(-1)、中位径(D_(50))为13.23μm、振实密度为2.32 g·cm^(-3)的类球形电池级Mn_(3)O_(4)。 展开更多
关键词 锌电积阳极泥 溶液净化 电池级Mn_(3)O_(4) 两步法
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High-performance Ni-Co-Mn electrocatalyst recovered from spent lithium-ion battery cathode materials for robust oxygen evolution in acid solution
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作者 JIANG Liang-xing FAN Yao-jian +2 位作者 LIU Fang-yang ZHANG Zong-liang WANG Jun 《Journal of Central South University》 CSCD 2024年第12期4472-4482,共11页
Recovering valuable metals from spent lithium-ion batteries(LIBs)for high value-added application is beneficial for global energy cycling and environmental protection.In this work,we obtain the high-performance N-dope... Recovering valuable metals from spent lithium-ion batteries(LIBs)for high value-added application is beneficial for global energy cycling and environmental protection.In this work,we obtain the high-performance N-doped Ni-Co-Mn(N-NCM)electrocatalyst from waste LIBs,for robust oxygen evolution application.Lithium-rich solution and NCM oxides are effectively separated from ternary cathode materials by sulfation roasting and low-temperature water leaching approach,in which the recovery efficiency of Li metal reaches nearly 100%.By facile NH_(3)treatment,the incorporation of N into NCM significantly increases the ratio of low-valence state Co^(2+)and Mn^(2+),and the formed Mn-N bond benefits the surface catalytic kinetics.Meanwhile,the N doping induces lattice expansion of the NCM,triggering tensile stress to favor the adsorption of the reactant.Thus,the optimized N-NCM electrocatalyst exhibits the superior overpotentials of 256 and 453 mV to achieve the current density of 10 and 100 mA/cm^(2),respectively,with a low Tafel slope of 37.3 mV/dec.This work provides a fresh avenue for recycling spent LIBs in the future to achieve sustainable development. 展开更多
关键词 recovered Ni-Co-Mn oxides N doping oxygen evolution electrocatalyst spent ternary lithium-ion batteries
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