Paper Publications
- [31] 王勃,樊家豪,邢鹏飞*,高帅波,都兴红. 加铝熔炼—酸浸回收镍基高温合金废料[J], 有色金属工程,2020, 10(1):42-46..
- [32] 周雪彤,金星,赵静,都兴红,邢鹏飞*. 光伏废料制备 Si3N4-SiC材料的抗氧化性和抗侵蚀性[J]. 耐火材料. 2020, 54(2): 118-12..
- [33] 王晓峰,李欣,刘坤, 邢鹏飞*,都兴红,王寅超,李耘霆. 用SiO2微粉制备碳化硅粉体的研究[J]. 耐火材料. 2020, 54(2):112-117..
- [34] Kong Jian, Shuaibo Gao,Yang Liu, Xing Jin, Donghui Wei, Shengnan Jiang, Kaikai Ye, Jingqiang Wang, Pengfei Xing*, Xuetao Luo. Recycling of carbonized rice husk for producing high purity silicon by the combination of electric arc smelting and slag refining[J]. Journal of Hazardous Materials, 2019, 380: 120827. Q1.
- [35] Shuaibo Gao, Shuai Wang, Jian Kong, Ning Xu, Pengfei Xing*. Novel method and its mechanism of reconstruction of commercial alumina to homogeneous porous alumina composite material[J]. Ceramics International, 2019, 45(16): 19962-19970. Q1.
- [36] Xin Li, Minjun Lei, Shuaibo Gao, Shu Yan, Xiaofeng Wang, Pengfei Xing*. Effect of initial compositions on boron carbide synthesis and corresponding growth mechanism[J]. Advances in Applied Ceramics, 2019, 118 (8): 442-450. Q2.
- [37] Yang Liu, Shuai Wang, Shengnan Jiang, Xiaofeng Wang, Jian Kong, Pengfei Xing*, Yanxin Zhuang, Xuetao Luo. Synthesis and separation of Si-Fe alloy to produce high-purity silicon[J]. Journal of Materials Research and Technology, 2019, 8(5): 4470-4476. Q1.
- [38] Jian Kong, Xing Jin, Yang Liu, Donghui Wei, Shengnan Jiang, Shuaibo Gao, Zhongbao Feng, Pengfei Xing*, Xuetao Luo. Study on the kinetics of iron removal from silicon diamond-wire saw cutting waste: Comparison between heterogeneous and homogeneous reaction methods[J], Separation and Purification Technology. 2019,221: 261-268. Q1.
- [39] Shengnan Jiang, Shuaibo Gao, Jian Kong, Xing Jin, Donghui Wei, Dagang Li, Pengfei Xing*. Study on the synthesis of beta-SiC nanoparticles from diamond-wire silicon cutting waste[J]. RSC Advances, 9(41): 23785-23790. Q2.
- [40] Xin Li, Shuai Wang, Dan Nie, Kun Liu, Shu Yan, Pengfei Xing*. Effect and corresponding mechanism of NaCl additive on boron carbide powder synthesis via carbothermal reduction[J]. Diamond and Related Materials, 2019, 97:107458. Q2.
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