姚金環(huán) 教授

姚金環(huán)女,漢族,1980年9月生,遼寧大連人。工學(xué)博士,教授,博士生導(dǎo)師(華南理工大學(xué)),主要從事化學(xué)工程與工藝專業(yè)的教學(xué)與科研工作。研究方向:冶金與電池電化學(xué)。


一、學(xué)習(xí)與工作經(jīng)歷

2004.09-2006.12 廣西大學(xué)化學(xué)工藝專業(yè)碩士研究生,獲工學(xué)碩士學(xué)位;

2010.09-2013.06  廣西大學(xué)化學(xué)工藝專業(yè)博士研究生,獲工學(xué)博士學(xué)位;

2015.10-2017.10 中南大學(xué)博士后;

2020.01-2020.12 美國華盛頓大學(xué)(University of Washington, Seattle),訪問學(xué)者;

2021.03-2021.08 哈爾濱工業(yè)大學(xué),訪問學(xué)者;

2007. 05至今,桂林理工大學(xué)化學(xué)與生物工程學(xué)院任教。

二、教學(xué)

主講課程:《化工原理》、《化工分離工程》、《化工設(shè)備機(jī)械基礎(chǔ)》、《化工原理課程設(shè)計》、《化工設(shè)備課程設(shè)計》等課程。

教學(xué)獲獎:

(1)榮獲桂林理工大學(xué)第三屆教師運(yùn)用多媒體教學(xué)競賽一等獎;

(2)《雙組分連續(xù)精餾塔理論塔板數(shù)的計算》課例榮獲第二屆廣西高等教育技術(shù)教學(xué)應(yīng)用大賽三等獎;

(3)《化工原理(網(wǎng)絡(luò)版)》課件榮獲第九屆全國多媒體課件大賽工科組二等獎;

(4)《化工原理》網(wǎng)絡(luò)課件榮獲第七屆廣西高等教育教學(xué)軟件大賽一等獎、最佳技術(shù)實現(xiàn)獎;

(5)微課作品“蒸餾的原理”榮獲桂林理工大學(xué)首屆微課教學(xué)比賽三等獎。

(6)榮獲“桂林理工大學(xué)十佳青年授課教師”榮譽(yù)稱號。

指導(dǎo)學(xué)生獲獎

(1)2013年指導(dǎo)本科生科技立項作品獲校級二等獎

(2)2015年指導(dǎo)學(xué)生參加華南大學(xué)生化工設(shè)計競賽三等獎

(3)2015年指導(dǎo)學(xué)生參加第九屆全國大學(xué)生化工設(shè)計競賽三等獎

(4)2017年指導(dǎo)學(xué)生參加西南賽區(qū)化工原理實驗競賽榮獲二等獎1項、三等獎2項

(5)2017年指導(dǎo)第十一屆全國大學(xué)生化工設(shè)計競賽三等獎

(6)2018年第二屆全國大學(xué)生化工實驗大賽西南賽區(qū)一等獎(實驗指導(dǎo)老師)

(7)2018年第二屆全國大學(xué)生化工實驗大賽西南賽區(qū)一等獎(理論指導(dǎo)老師)

(8)2018年第十二屆全國大學(xué)生化工設(shè)計競賽華南賽區(qū)三等獎2項

(9)2019年第三屆全國大學(xué)生化工實驗大賽西南賽區(qū)三等獎

(10)2019年第十三屆全國大學(xué)生化工設(shè)計競賽三等獎

(11)2021年第四屆全國大學(xué)生化工實驗大賽西南賽區(qū)三等獎

(12)指導(dǎo)的研究生在全國冶金院校2021年研究生學(xué)術(shù)論壇中榮獲優(yōu)秀報告獎二等獎

(13)2023年“天正設(shè)計杯”第十七屆全國大學(xué)生化工設(shè)計競賽三等獎

(14)2024年“天正設(shè)計杯”第十八屆全國大學(xué)生化工設(shè)計競賽三等獎

(15)2024年第七屆全國大學(xué)生化工實驗大賽西南賽區(qū)三等獎

教學(xué)研究:發(fā)表教學(xué)改革研究論文8篇,主持完成在研廣西高等教育本科教育改革工程A類項目1項,主持完成校級教改項目1項,主持完成校級強(qiáng)基項目2項,主持完成校級創(chuàng)新創(chuàng)業(yè)教育改革示范課程1門,主持完成桂林理工大學(xué)網(wǎng)絡(luò)課程建設(shè)立項項目1項,主持完成《化工原理》多媒體教學(xué)軟件立項1項。

三、科學(xué)研究工作

主持的主要科研項目

(1)國家自然科學(xué)基金,超聲波強(qiáng)化浸出含銦鋅渣及浸出液提銦、制取納米多孔ZnFe2O4電極材料的基礎(chǔ)研究,項目批準(zhǔn)號51464009;

(2)國家自然科學(xué)基金,利用濕法煉鋅廢鐵液制備高性能2D微/納分級結(jié)構(gòu)氧化鐵基電極材料的機(jī)理研究,項目批準(zhǔn)號51964012;

(3)廣西自然科學(xué)基金(青年),超聲波強(qiáng)化浸出濕法煉鋅渣及浸出液制備納米多孔鐵酸鋅電極材料的研究,項目批準(zhǔn)號2014GXNSFBA118238;

(4)廣西自然科學(xué)基金(面上),插層結(jié)構(gòu)調(diào)控對納米α-Ni(OH)2儲鋰性能的影響及機(jī)理研究,項目批準(zhǔn)號2017GXNSFAA198117;

(5)廣西自然科學(xué)基金(面上),利用錳礦尾礦制備高性能水系鋅離子電池用錳氧化物正極材料的研究,項目批準(zhǔn)號2021GXNSFAA196006;

(6)廣西自然科學(xué)基金(面上),利用鐵礬渣制備鋰/鈉離子電池用非晶態(tài)磷酸鐵正負(fù)極材料及其性能調(diào)控研究,項目批準(zhǔn)號2025GXNSFAA069638;

(7)中國博士后科學(xué)基金面上一等資助項目,項目批準(zhǔn)號2016M590754;

(8)廣西教育廳項目,項目批準(zhǔn)號YB2014153;

(9)中南大學(xué)博士后基金項目;

(10)桂林理工大學(xué)博士科研啟動基金項目;

(11)廣西礦業(yè)與環(huán)境科學(xué)實驗中心重點(diǎn)項目,項目批準(zhǔn)號KH2011ZD005;

(12)新材料及其制備新技術(shù)廣西重點(diǎn)實驗室開放基金,項目批準(zhǔn)號“桂科能0842003-16。

科研獲獎

(1)過渡金屬氧化物電極材料結(jié)構(gòu)設(shè)計與儲能性能優(yōu)化研究, 2024年度廣西科學(xué)技術(shù)獎自然科學(xué)類二等獎 (證書編號: 2024Z2-09-D02).

(2)具有多電子反應(yīng)特性的層狀高容量電極材料的結(jié)構(gòu)設(shè)計與電化學(xué)性能優(yōu)化研究, 2020年度廣西科學(xué)技術(shù)獎自然科學(xué)類三等獎 (證書編號: 2020-Z-3-12-R02).

(3)高活性氫氧化鎳電極材料的結(jié)構(gòu)設(shè)計及性能研究, 2012年度廣西科學(xué)技術(shù)獎自然科學(xué)類三等獎 (證書編號: 2012-Z-3-008-04).

出版著作

(1)姚金環(huán), 李延偉. 《鐵酸鋅基電極材料及儲鋰性能》, 化學(xué)工業(yè)出版社, 2021年2月(ISBN: 978-7-122-38603-8).

(2)李延偉, 姚金環(huán).《氫氧化鎳的微觀結(jié)構(gòu)設(shè)計與電化學(xué)儲能性能特性》, 化學(xué)工業(yè)出版社, 2015年6月(ISBN: 978-7-122-23615-9).

主要學(xué)術(shù)論文

以第1作者或通訊作者發(fā)表SCI/EI收錄論文70余篇。

(1)Wenhan Xu, Jinhuan Yao*, Qize Huang, Shaoshuai Bai, Yanwei Li*, Jiqiong Jiang, Jianwnen Yang. An olivine LiFe0.5Mn0.5PO4/rGO composite cathode material prepared from manganese ore tailings with excellent lithium storage performance, Rare Metals, 2024, 43: 5664-5676.

(2)Wenhan Xu, Jinhuan Yao*, Xuejiao Chen, Zeyang Liu, Jiqiong Jiang, Yanwei Li*. Sodium storage performance and mechanism of amorphous FePO4/rGO nanocomposite as a novel anode material for sodium ion batteries, Journal of Energy Storage, 2024, 100: 113428.

(3)Jinhuan Yao, Tao Yu, Qize Huang, Yanwei Li*, Bin Huang, Jianwen Yang. Preparation of Mn2O3/Fe2O3 composite cathode material for zinc ion batteries from the reduction leaching solution of manganese ore tailing, Journal of Industrial and Engineering Chemistry, 2024, 136: 524-531.

(4)Jinhuan Yao, Jinhu Li, FangFang Mao, Wenhan Xu, Jiqiong Jiang*, Yanwei Li*. Enhanced zinc ions storage performance of Mn2O3/Mn3O4/NiMn2O4 composite cathode material synthesized by a thermal decomposition method, Mater. Lett., 2024, 370: 136729.

(5)Jinhu Li, Jinhuan Yao*, Haiyan Chen, Jiqiong Jiang, Guanlong Song, Yanwei Li*. Effect of manganese salt type on the structure and zinc storage property of Mn2O3/Mn3O4 composites synthesized by sucrose-assisted thermal decomposition method, Solid State Ionics, 2024, 415: 116653.

(6)Wenhan Xu, Yanwei Li*, Jinhuan Yao*, Qing Zhu, Botian Liu*, Lithium storage behavior and mechanism of hexagonal FePO4/C composite as a novel anode material for lithium-ion batteries, J. Alloys Compds., 2023, 933: 167766. 5

(7)Jinhuan Yao, Meiao Xu, Yanwei Li*, Bin Huang, Jianwen Yang, Facile preparation of Fe3O4/ZnFe2O4/ZnS/C composite from the leaching liquor of jarosite residue as a high-performance anode material for Li-ion batteries, J. Alloys Compds., 2023, 952: 169993.

(8)Wenhan Xu, Yanwei Li*, Jinhuan Yao*, Shunhua Xiao, Botian Liu*, LiFePO4/rGO composite prepared from the leaching liquor of jarosite residue as a cathode material for lithium-ion batteries. J. Alloys Compds., 2023, 952: 170105.

(9)Yanwei Li*, Wenhan Xu, Jinhuan Yao*, Bin Huang, Shunhua Xiao, Jianwen Yang. Amorphous FePO4/reduced graphene oxide composite prepared from jarosite residue and its application as a novel anode material for lithium-ion batteries, Journal of Industrial and Engineering Chemistry, 2023, 125: 211-220.

(10)Jinhuan Yao, Ying Liu, Yanwei Li*, Jiqiong Jiang, Qing Zhu. Facile Synthesis of Mn2O3/Mn3O4 composites with superior zinc ion storage performance. Materials Research Bulletin, 2023, 165: 112292.

(11)Jinhuan Yao, Renshu Huang, Yanwei Li*, Kang Luo, and Bin Huang. Facile hydrothermal fabrication of α-Ni(OH)2/N-doped reduced graphene oxide nanohybrid as a high-performance anode material for lithium-ion batteries, Energy & Fuels, 2023, 37: 2368-2378.

(12)Jinhuan Yao, Meiao Xu, Yun Yin, Yanwei Li*, Shunhua Xiao. Effect of preparation temperature on the structure and lithium storage properties of multicomponent composites fabricated by one-step thermal decomposition method from the leaching liquor of jarosite residue, IONICS, 2023, 29: 1359-1368.

(13)Ying Liu, Jinhuan Yao*, Jiqiong Jiang, Yanwei Li*, Qing Zhu. Exploring the effect of different additives on the preparation of α-Mn2O3/Mn3O4 composites and their zinc ion storage performances, IONICS, 2023, 29: 1469-1478.

(14)Jinhuan Yao, Jianxiong Zhao, Yanwei Li*, Meiao Xu, Effect of Zn2+ content in ferric chloride solution on the structure and lithium storage performance of α-Fe2O3-based anode materials prepared by a facile thermal decomposition method, IONICS, 29: 145–158.

(15)Tengfei Jin, Jinhuan Yao*, Xiuying Jin, Jiqiong Jiang, Yanwei Li*, Enhanced lithium ions storage performance of Fe2(SO4)3 anode material synthesized by solution calcination route with the assistance of melamine, Materials Letters, 2022, 307: 131101.

(16)Jinhuan Yao, Hongyu Li, Yanwei Li*, Jianwen Yang, Botian Liu*, Based on the utilization of jarosite residue: the lithium storage performance of α-Fe2O3 materials synthesized from different iron solution systems, J. Electroanal. Chem., 2022, 907, 116085.

(17)Jinhuan Yao, Yongde Yang, Yanwei Li*, Jiqiong Jiang, Shunhua Xiao, Jianwen Yang. Interconnected α-Fe2O3 Nanoparticles Prepared from Leaching Liquor of Tin Ore Tailings as Anode Materials for Lithium-Ion Batteries. J. Alloys Compd. 2021, 855: 157288.  

(18)Jinhuan Yao, Tiange Zhang, Yanwei Li*, Jingjing Wu. Preparation, Characterization and Lithium Storage Performance of Agglomerated ZnMn2O4 Nanoparticles, Journal of Nanoscience and Nanotechnology, 2021, 21: 1678-1686.

(19)Jinhuan Yao, Renshu Huang, Jiqiong Jiang, Shunhua Xiao, Yanwei Li*. Lithium Storage Performance of α-Ni(OH)2 Regulated by Partial Interlayer Anion Exchange, IONICS, 2021, 27: 1125-1135.

(20)Jinhuan Yao, Yanwei Li*, Guanlin Pan, Xiuying Jin, Kang Luo, Shangwang Le*. Electrochemical Property of Hierarchical Flower-like α-Ni(OH)2 as An Anode Material for Lithium-Ion Batteries, Solid State Ionics, 2021, 363: 115595.

(21)Jingjing Wu, Jinhuan Yao*, Jiqiong Jiang, Shunhua Xiao, Jianwen Yang, Yanwei Li*, Enhancing lithium ion storage property of FeMnO3 as an anode material via N doping, Solid State Communications, 2021, 332: 114317.

(22)Yu Huang, Yanwei Li*, Renshu Huang, Jingcheng Ji, Jinhuan Yao*, Shunhua Xiao. One-pot hydrothermal synthesis of N-rGO supported Fe2O3 nanoparticles as a superior anode material for lithium-ion batteries, Solid State Ionics, 2021, 368, 115693.

(23)Xiuying Jin, Yanwei Li*, Jiqiong Jiang, Shunhua Xiao, Jianwen Yang, Jinhun Yao*, Xiuying Jin. Facile synthesis of monodispersed α-Fe2O3 cubes as a high-performance anode material for lithium-ion batteries, IONICS, 2021, 27(8), 3291-3299

(24)Jinhuan Yao, Tengfei Jin, Yanwei Li*, Shunhua Xiao, Bin Huang, Jiqiong Jiang. Electrochemical performance of Fe2(SO4)3 as a novel anode material for lithium-ion batteries, J. Alloy Compd., 2021, 886, 161238.

(25)Jinhuan Yao, Yanwei Li*, Renshu Huang, Jiqiong Jiang, Shunhua Xiao, Jianwen Yang. Crucial Role of Water Content on the Electrochemical Performance of ?-Ni(OH)2 as an Anode Material for Lithium-Ion Batteries, IONICS, 2021, 27: 65-74.

(26)Yanwei Li, Jingcheng Ji, Jinhuan Yao*, Ying Zhang, Bin Huang, and Guozhong Cao*. Sodium ion storage performance and mechanism in orthorhombic V2O5 single-crystalline nanowires. Sci. China. Mater. 2021, 64: 557-570.

(27)Yanwei Li, Yu Huang, Yuanyuan Zheng, Renshu Huang, Jinhuan Yao*. Facile and efficient synthesis of α-Fe2O3 nanocrystals by glucose-assisted thermal decomposition method and its application in lithium ion batteries. Journal of Power Sources, 2019, 416: 62-71.

(28)Yu Huang, Jinhuan Yao*, Yuanyuan Zheng, Renshu Huang, Yanwei Li*. A Simple preparation of rod-like Fe2O3 with superior lithium storage performance. Materials Letters, 2019, 234: 105-108.

(29)Jing Yan, Jinhuan Yao*, Zhuliu Zhang, Yanwei Li*, Shunhua Xiao. 3D Hierarchical Porous ZnFe2O4 Nano/Micro Structure as a High-Performance Anode Material for Lithium-Ion Batteries, Materials Letters, 2019, 245: 122-125.

(30)Jinhuan Yao, Jing Yan, Yu Huang, Yanwei Li, Shunhua Xiao, Jianrong Xiao. Preparation of ZnFe2O4/α-Fe2O3 nanocomposites from sulfuric acid leaching liquor of jarosite residue and their application in lithium-ion batteries. Frontiers in Chemistry, 2018, 6: 442.

(31)Yanwei Li, Yu Huang, Yuanyuan Zheng, Renshu Huang, Jinhuan Yao*. A simple preparation of rod-like Fe2O3 with superior lithium storage performance. Materials Letters, 2018, 234: 105~108.

(32)Jinhuan Yao, Yufang Zhang, Jing Yan, Huang Bin, Yanwei Li*, Shunhua Xiao. Nanoparticles-constructed spinel ZnFe2O4 anode material with superior lithium storage performance boosted by pseudocapacitance, Materials Research Bulletin, 2018, 104: 188-193.

(33)JinhuanYao, Yanwei Li*, Robert C. Massé, Evan Uchaker, Guozhong Cao*. Revitalized interest in vanadium pentoxide as cathode material for lithium-ion batteries and beyond. Energy Storage Materials, 2018, 11: 205-259.

(34)J. H. Yao, Y. W. Li*, X. B. Song, Y. F. Zhang, J. Yan. Lithium Storage Performance of Zinc Ferrite Nanoparticle Synthesized with the Assistance of Triblock Copolymer P123, Journal of Nanoscience and Nanotechnology, 2018, 18: 3599-3605

(35)Yanwei Li, Wenqiang Xu, Yuanyuan Zheng, Jinhuan Yao*, Jianrong Xiao*, Hierarchical flower-like nickel hydroxide with superior lithium storage performance, Journal of Materials Science: Materials in Electronics, 2017, 28(22): 17156–17160.

(36)Yanwei Li*, Wenqiang Xu, Zhiping Xie, Lingzhi Zhang, Jinhuan Yao*. Structure and Lithium Storage Performances of Nickel Hydroxides Synthesized with Different Nickel Salts. IONICS, 2017, 23(7): 1625-1636.

(37)Jinhuan Yao*, Yanwei Li, Xuanhai Li, Xiaodong Zhu. First-principles study of the geometric and electronic structures of zinc ferrite with vacancy defect. Metallurgical and Materials Transactions A, 2016, 47(7):3753-3760.

(38)Jinhuan Yao, Yanwei Li, Yuexiao Li, Yanxi Zhu, Hongbo Wang. Enhanced cycling performance of Al-substituted a-nickel hydroxide by coating with β-nickel hydroxide. Journal of Power Sources, 2013, 224: 236-240.

(39)Jinhuan Yao, Yanwei Li, Xuanhai Li, Shiru Le. First-principles investigation on the electronic structure and stability of In-substituted ZnFe2O4. Metallurgical and Materials Transactions A, 2014, 45(8): 3686-3693.

(40)Jinhuan Yao, Xuanhai Li, Yanwei Li. Study on indium leaching from mechanically activated hard zinc residue. Journal of Mining and Metallurgy, Section B: Metallurgy, 2011, 47(1): 63-72.

(41)Jinhuan Yao, Xuanhai Li, Liuping Pan, Jiamei Mo. Enhancing physicochemical properties and indium leachability of indium-bearing zinc ferrite mechanically activated using tumbling mill. Metallurgical and Materials Transactions B, 2012, 43 (3): 449-459.

(42)Jinhuan Yao, Xuanhai Li, Liuping Pan, Jiamei Mo, Zhipeng Wen. Investigations on indium and zinc leachabilities from indium-bearing zinc ferrite improved by planetary ball milling. Journal of Materials Engineering and Performance, 2013, 22(5): 1311-1318.

(43)Jinhuan Yao, Xuanhai Li, Liuping Pan, Jiamei Mo, Zhipeng Wen. Kinetics of leaching zinc and indium from indium-bearing zinc ferrite mechanically activated by tumbling mill. Minerals & Metallurgical Processing, 2013, 30(1): 45-52.

(44)Jinhuan Yao, Yanwei Li, Ning Li, Shiru Le. Theoretical investigations of the effect of vacancies on the geometric and electronic structures of zinc sulfide. Physica B: Condensed Matter, 2012, 407 (18): 3888–3892.

(45)Jinhuan Yao, Yanwei Li, Zhengguang Zou, Hongbo Wang, Yufang Shen. First-principles study of the electron transport through conjugated molecular wires with different carbon backbones. Superlattice Microst, 2012, 51: 396–403.

(46)Jinhuan Yao, Yanwei Li, Zhengguang Zou, Jianwei Yang, Zhoulan Yin. First?Principles Study of the Electron Transport through cis?Poyacetylene Based Molecular Wires. Physica B: Condensed Matter, 2011, 406: 3969?3974.

(47)Jinhuan Yao, Xuanhai Li, Yanwei Li, Shiru Le. Density functional theory investigations on the structure and electronic properties of normal spinel ZnFe2O4. Integrated Ferroelectrics, 2013, 145: 17–23.

(48)Jinhuan Yao, Zhoulan Yin,* Yanwei Li,* and Shiru Le. First-principles Study of the Geometric and Electronic Structures of Mn-substituted ZnFe2O4, Ferroelectrics, 2018, 522: 29-35

(49)Jinhuan Yao, Yufang Zhang, Jing Yan and Yanwei Li*. Synthesis and Lithium Storage Performance of ZnFe2O4/C Composites with the Assistance of P123, Ferroelectrics, 2018, 522: 45-54

(50)Jinhuan Yao, Xuanhai Li. Study on indium leaching from indium-poor zinc residue enhanced by ultrasonic treatment. Advanced Materials Research, 2011, 201?203: 1770?17733.

主要授權(quán)發(fā)明專利


(1)姚金環(huán), 徐美奧, 李延偉. 一種蔗糖輔助鐵礬渣鹽酸浸出液制備高性能復(fù)合負(fù)極材料的方法, ZL202111511589.8, 申請日期: 2021年12月06日, 授權(quán)日期: 2024年04月05日.

(2)姚金環(huán), 劉穎, 李延偉, 毛芳芳. 一種水系鋅離子電池用Mn2O3/Mn3O4復(fù)合電極材料的制備方法. ZL202111481829.4, 申請日: 2021年12月06日, 授權(quán)日期: 2023年06月23日.

(3)姚金環(huán), 李延偉, 黃任樞. 一種優(yōu)化α-Ni(OH)2材料儲鋰性能的方法, ZL202010109012.3, 申請日期: 2020年2月21日,授權(quán)日期: 2022年04月07日.

(4)姚金環(huán), 吳晶晶, 李延偉. N摻雜FeMnO3電極材料的制備方法及其應(yīng)用, ZL202011512782.9, 申請日期: 2020年12月20日,授權(quán)日期: 2022年11月11日.

(5)姚金環(huán), 楊永德, 李延偉. 利用錫礦尾礦硫酸浸出液制備鋰離子電池用納米氧化鐵負(fù)極材料的方法, ZL202010814617.2, 申請日期: 2020年08月13日,授權(quán)日期: 2022年11月11日.

(6)姚金環(huán), 楊永德, 李延偉. 鋰離子電池用Fe3O4/C復(fù)合電極材料的制備方法, ZL202010814571.4, 申請日期: 2020年08月13日,授權(quán)日期: 2022年07月19日.

(7)姚金環(huán), 金騰飛, 李延偉. Fe2(SO4)3負(fù)極材料的制備方法及其應(yīng)用, ZL202011512776.3, 申請日期: 2020年12月20日,授權(quán)日期: 2022年04月26日.

(8)姚金環(huán), 張竹柳, 李延偉. 利用Fe(OH)3膠體和蔗糖制備α-Fe2O3電極材料的方法, ZL201910884351.6, 申請日期: 2019年09月19日,授權(quán)日期: 2022年03月22日.

(9)姚金環(huán), 嚴(yán)靖, 李延偉. 由濕法煉鋅渣酸浸液制備高性能三氧化二鐵/鐵酸鋅復(fù)合電極材料的方法及應(yīng)用, ZL201810828699.9, 申請日期: 2018年07月25日,授權(quán)日期: 2021年08月03日.

(10)姚金環(huán), 嚴(yán)靖, 李延偉. 利用鐵礬渣硫酸浸出液制備高性能片狀多孔結(jié)構(gòu)鐵酸鋅負(fù)極材料的方法及應(yīng)用, ZL201810828737.0, 申請日期: 2018年07月25日,授權(quán)日期: 2020年10月09日.

(11)姚金環(huán), 張?zhí)旄? 李延偉, 張玉芳, 丘雪萍. P123輔助制備高性能鐵酸鋅電極材料的方法, ZL201510826875.1, 申請日期: 2015年11月24日,授權(quán)日期: 2017年12月12日.

(12)姚金環(huán), 李延偉, 呂奕菊, 丘雪萍. 應(yīng)用超聲波技術(shù)提高廢舊鋅錳電池中錳浸出率的方法, ZL201510199505.X, 申請日期: 2015年04月24日,授權(quán)日期: 2017年05月31日.

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