nav emailalert searchbtn searchbox tablepage yinyongbenwen piczone journalimg journalInfo journalinfonormal searchdiv searchzone qikanlogo popupnotification paper paperNew
2020, 04, v.24;No.137 202-205
浅析碱性锌锰电池的技术革新
基金项目(Foundation):
邮箱(Email):
DOI:
发布时间: 2020-08-25
出版时间: 2020-08-25
移动端阅读
摘要:

近年来随着电池行业的发展,电池越来越广泛的应用于个人视听产品、通信产品、电动电子仪器设备、电动玩具、数码相机、电动汽车等电子产品。这也促进了对电池新技术及技术瓶颈的开发与突破,比如电池容量的大小,储存寿命的长短,重负荷输出能力的强与弱以及电池自身的安全等。本文就当前时代背景下电池广泛应用的情况,浅析碱性锌锰电池的技术革新。

Abstract:

With the development of the battery industry in recent years,batteries have become more and more widely used in personal audio-visual products,communication products,electric electronic equipment,electric toys,digital cameras,electric cars and other electronic products.This has also promoted the development and breakthrough of new battery technologies and technical bottlenecks,such as the capacity of the battery,the length of storage life,the strength and weakness of heavy-load output capacity,and the safety of the battery itself.This article analyzes the technological innovation of alkaline zinc-manganese batteries based on the widespread use of batteries in the current era.

参考文献

[1]潘汉桥.碱性锌锰电池市场前景广阔[J].电池工业,1999,(02):3-5.

[2]蔡传禔.发展碱性锌锰电池的浅见[J].电池,1984,(04):33-34.

[3]张思兰,邸江涛,李清文.可充锌锰电池的研究进展[J].电源技术,2019,43(04):720-723.

[4]林虹,曹开颜,曹国庆.2019年中国电池行业运行概况[J].电池工业,2020,24(01):43-46.

[5]李胜,杨林.碱性锌锰电池生产设备的进展和发展方向[J].电池,2015,45(04):225-227.

[6]陈来茂,陈永心.碱性锌锰电池发展综述[J].电池工业,2006,(02):119-124.

[7]徐保伯,徐青.锌锰电池的现状与展望[J].电池,2002,(S1):18-20.

[8]朱效铭.中国碱性锌锰电池智造风口[J].电池,2017,47(02):109-111.

[9]杨林,赖勇,郑文祥,范尹亮.锌锰电池产业的现状与未来[J].电池工业,2009,14(06):413-415.

[10]王金良,陈来茂,陈永心.锌锰电池产业现状分析与发展方向探讨[J].电源技术,2006,(02):89-92.

[11]江荣松,彭捷,苏永华.碱性锌锰电池使用过程中的常见问题分析[J].电池工业,2017,21(02):7-10.

[12]彭捷.碱性锌锰电池使用中常见问题分析[J].电池工业,2009,14(04):231-235.

[13]王康,严志明,汪刚耀,李伟善.PEG抑制碱性锌锰电池析气的研究[J].电池,2017,47(03):148-151.

[14]李清馨.准固态锌锰电池的组装与性能研究[D].哈尔滨:哈尔滨工业大学,2019.

[15]常海涛.碱性锌锰电池在滥用情况下安全性研究[J].化学工程与装备,2011,(11):191-192+183.

[16]FAN W,LIU F,LIU Y,et al.A high voltage aqueous zinc-manganese battery using a hybrid alkaline-mild electrolyte[J].Chemical Communications,2020,56(13):2039-2042.

[17]HAO J,MOU J,ZHANG J,et al.Electrochemically induced spinel-layered phase transition of Mn3O4in high performance neutral aqueous rechargeable zinc battery[J].Electrochim,Acta,2018,259:170-178.

[18]ZHANG N,CHENG F,LIU J,et al.Rechargeable aqueous zinc-manganese dioxide batteries with high energy and power densities[J].Nature Communications,2017,8.

[19]PAN H,SHAO Y,YAN P,et al.Reversible aqueous zinc/manganese oxide energy storage from conversion reactions[J].Nature Energy,2016,1.

[20]康利涛,崔芒伟,梁伟.纳米多孔绝缘层抑制锌枝晶提升锌锰电池寿命,第五届全国储能科学与技术大会,中国湖北武汉,2018,p.1.

[21]王蕾.纳米多孔绝缘层:多重机理引导锌均匀沉积提升锌锰电池寿命[J].新能源经贸观察,2018,(08):96.

基本信息:

中图分类号:TM911.14

引用信息:

[1]陈宇,朱红华.浅析碱性锌锰电池的技术革新[J].电池工业,2020,24(04):202-205.

发布时间:

2020-08-25

出版时间:

2020-08-25

检 索 高级检索

引用

GB/T 7714-2015 格式引文
MLA格式引文
APA格式引文