[1]Yin Shenghua, Wu Aixiang, Hu Kaijian, Wang Yiming, Xue Zhenlin. Visualization of flow behavior during bioleaching of waste rock dumps under saturated and unsaturated conditions. Hydrometallurgy, 2013, 133(1):1-6.
[2]Yin Shenghua, Wu Aixiang, Hu Kaijian, Yong Wang, Yankai Zhang. The effect of solid components on rheological and mechanical properties of cemented paste backfill. Minerals Engineering, 2012, 35: 61-66.
[3]Yin Shenghua, Wu Aixiang, Wang Shaoyong, Wang Hongjiang. Simulation of solute transportation within porous particles during the bioleaching process. International Journal of Minerals, Metallurgy and Materials, 2010, 17(4): 389-396.
[4]Yin Shenghua, Wu Aixiang, Wang Shaoyong, Ai Chunming. Effects of bioleaching on the mechanical and chemical properties of the waste rocks. International Journal of Minerals, Metallurgy and Materials, 2012, 19(1): 1-8.(影響因子:0.919)
[5]Wu Aixiang, Yin Shenghua, Wang Hongjiang, Qin Wenqing, Qiu Guanzhou. Technological assessment of a mining-waste dump at the Dexing Copper Mine, China, for possible conversion to an in-situ bioleaching operation. Bioresource Technology, 2009, 100(6): 1931-1936.
[6]Wu Aixiang, Yin Shenghua, Yang Baohua. Study on preferential flow in dump leaching of low-grade ores. Hydrometallurgy, 2007, 87(3-4): 121-132.
[7]Wu Aixiang, Yin Shenghua, Qin Wenqing, Liu Jishan, Qiu Guanzhou. The effect of preferential flow on extraction and surface morphology of copper sulphides during heap leaching. Hydrometallurgy, 2009, 95 (1-2): 76-81.