Hao, X.; Liu, X.; Zhu, P.; Chen, A.; Liu, H.; Yin, H.; Qiu, G.; Liang, Y.
Carbon Material with High Specific Surface Area Improves Complex Copper Ores’ Bioleaching Efficiency by Mixed Moderate Thermophiles. Minerals 2018, 8, 301.
https://doi.org/10.3390/min8070301
AMA Style
Hao X, Liu X, Zhu P, Chen A, Liu H, Yin H, Qiu G, Liang Y.
Carbon Material with High Specific Surface Area Improves Complex Copper Ores’ Bioleaching Efficiency by Mixed Moderate Thermophiles. Minerals. 2018; 8(7):301.
https://doi.org/10.3390/min8070301
Chicago/Turabian Style
Hao, Xiaodong, Xueduan Liu, Ping Zhu, Aijia Chen, Hongwei Liu, Huaqun Yin, Guanzhou Qiu, and Yili Liang.
2018. "Carbon Material with High Specific Surface Area Improves Complex Copper Ores’ Bioleaching Efficiency by Mixed Moderate Thermophiles" Minerals 8, no. 7: 301.
https://doi.org/10.3390/min8070301
APA Style
Hao, X., Liu, X., Zhu, P., Chen, A., Liu, H., Yin, H., Qiu, G., & Liang, Y.
(2018). Carbon Material with High Specific Surface Area Improves Complex Copper Ores’ Bioleaching Efficiency by Mixed Moderate Thermophiles. Minerals, 8(7), 301.
https://doi.org/10.3390/min8070301