Purification of Natural Flake Graphite with Acid Leaching Method using a Two-step Method of Introducing Additives

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 142

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شناسه ملی سند علمی:

JR_JMAE-16-2_001

تاریخ نمایه سازی: 25 اسفند 1403

چکیده مقاله:

Traditional graphite has safety and environmental issues, associated with fluorine purification. To address these issues, an energy-saving and efficient graphite purification process can be explored through the acid leaching method with composite additives. The acid leaching process was studied and optimized in detail using the controlled variable method including the effects of the soaking time and temperature on the graphite purification process. Then the response surface method was used to simulate the orthogonal experiment of graphite purification to verify the correctness of the single-factor, experiment. The purity and micromorphology of the graphite samples at each stage were characterized and tested. The experimental results showed that the optimal liquid-to-solid ratio of the acid solution and graphite was ۲۰:۱, which could make the fixed carbon content reach ۹۹.۷۷%. On the basis of these optimal process conditions, the addition types were further explored. The experimental result showed that the best addition was ascorbic acid and EDTA, which could reduce the content of various impurities in the graphite raw material without destroying the microstructure of the graphite. Benefitting from the addition of compound additives in the two-step process, almost all the metal ions were leached from the graphite. After the acid and water leaching, the fixed carbon content of graphite could reach ۹۹.۹۶%. The process parameters proposed in this paper were scientifically verified by both the single-factor and multi-factor experiments, and innovative and effective additives were introduced in different steps to make the graphite purity break through ۹۹.۹%, which was difficult to reach by the traditional method.

نویسندگان

Jiaye Li

b Heilongjiang Hachuan Carbon Materials Technology Co., LTD, National Quality Supervision and Inspection Center Of Graphite Products, No. ۸۸ Kangxin Road, Jiguan District,Jixi City, Heilongjiang Province, ۱۵۸۱۰۰, P. R.Chinac

Jing Zhao

b Heilongjiang Hachuan Carbon Materials Technology Co., LTD, National Quality Supervision and Inspection Center Of Graphite Products, No. ۸۸ Kangxin Road, Jiguan District,Jixi City, Heilongjiang Province, ۱۵۸۱۰۰, P. R.Chinac

Zebin Wang

b Heilongjiang Hachuan Carbon Materials Technology Co., LTD, National Quality Supervision and Inspection Center Of Graphite Products, No. ۸۸ Kangxin Road, Jiguan District,Jixi City, Heilongjiang Province, ۱۵۸۱۰۰, P. R.Chinac

Huan Liu

b Heilongjiang Hachuan Carbon Materials Technology Co., LTD, National Quality Supervision and Inspection Center Of Graphite Products, No. ۸۸ Kangxin Road, Jiguan District,Jixi City, Heilongjiang Province, ۱۵۸۱۰۰, P. R.Chinac

Qing Wen

b Heilongjiang Hachuan Carbon Materials Technology Co., LTD, National Quality Supervision and Inspection Center Of Graphite Products, No. ۸۸ Kangxin Road, Jiguan District,Jixi City, Heilongjiang Province, ۱۵۸۱۰۰, P. R.Chinac

Jinling Yin

b Heilongjiang Hachuan Carbon Materials Technology Co., LTD, National Quality Supervision and Inspection Center Of Graphite Products, No. ۸۸ Kangxin Road, Jiguan District,Jixi City, Heilongjiang Province, ۱۵۸۱۰۰, P. R.Chinac

Ze Li

Heilongjiang transportation investment group Co., LTD, No. ۸۹۹, Innovation ۳rd Road, Songbei District, Harbin, Heilongjiang Province, ۱۵۰۰۲۵, P. R. China

Yang Lei

Heilongjiang transportation investment group Co., LTD, No. ۸۹۹, Innovation ۳rd Road, Songbei District, Harbin, Heilongjiang Province, ۱۵۰۰۲۵, P. R. China

Guiling Wang

b Heilongjiang Hachuan Carbon Materials Technology Co., LTD, National Quality Supervision and Inspection Center Of Graphite Products, No. ۸۸ Kangxin Road, Jiguan District,Jixi City, Heilongjiang Province, ۱۵۸۱۰۰, P. R.Chinac

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