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參考文獻

[1] 德切柯·巴普洛夫.鉛酸蓄電池科學與技術[M].段喜春,苑松,譯.北京:機械工業出版社,2015.

[2] Rand D A J, Moseley P T. Lead-acid battery fundamentals, in:Lead-Acid Batteries for Future Automobiles[M].Elsevier, 2017.

[3] 伊曉波.鉛酸蓄電池制造與過程控制[M].北京:機械工業出版社,2004.

[4] Yang Baofeng, Cai Xianyu, Li Enyu, et al. Evaluation of the effect of additive group five elements on the properties of Pb-Ca-Sn-Al alloy as the positive grid for lead-acid batteries[J].Journal of Solid State Electrochemistry, 2019(23):1715-1725.

[5] Yang Baofeng, Cai Xianyu, Li Enyu, et al. Effect of lanthanum, cerium and other elements on the electrochemical corrosion properties of Pb-Ca-Sn-Al alloy in lead-acid batteries[J].Journal of Energy Storage, 2019(25):100908.

[6] 陶占良,陳軍.鉛碳電池儲能技術[J].儲能科學與技術,2015(4):546-555.

[7] 胡信國,等.動力電池技術與應用[M].2版.北京:化學工業出版社,2013.

[8] 胡信國,王殿龍,戴長松.鉛碳電池[M].北京:化學工業出版社,2015.

[9] Kirchev A, Dumenil S, Alias M, et al. Carbon honeycomb grids for advanced lead-acid batteries. Part Ⅱ:Operation of the negative plates[J].Journal of Power Sources, 2015(279):809-824.

[10] Moseley P T, Rand D, Peters K. Enhancing the performance of lead-acid batteries with carbon-In pursuit of an understanding[J].Journal of Power Sources, 2015(295):268-274.

[11] Yin Jian, Lin Nan, Lin Zheqi, et al. Optimized lead carbon composite for enhancing the performance of lead-carbon battery under HRPSoC operation[J].Journal of Electroanalytical Chemistry, 2019(832):266-274.

[12] Yin Jian, Lin Nan, Lin Zheqi, et al. Towards renewable energy storage:Understanding the roles of rice husk-based hierarchical porous carbon in the negative electrode of lead-carbon battery[J].Journal of Energy Storage, 2019(24):100756.


[1] 1mile(英里)≈1.61km。

[2] 具體可參考Detchko Pavlov(德切柯·巴普洛夫)著,段喜春、苑松翻譯的《鉛酸蓄電池科學與技術》,由機械工業出版社出版。——編輯注

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