By Helen Zhang, M. Han, X. J. Zhao
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Digital rock physics benchmarks—part II: Computing effective properties. Computers & Geosciences, 2013, 50: 33-43  SHAMEEM SIDDIQUI, AON A KHAMEES. Data visualization challenges for displaying laboratory core and flow data in three-dimensions. SPE 106334, 2007.  Wang Jinxun, Wu Xiaodong, Yang Puhua etc. Calculating the imbibition relative permeability of a gas-liquid system by pore scale network model. Gas Industry, 2003, 5:8-11.  Wang Heming. The study on fractal characteristics and net-work model of pore structure of porous media, Dalian: Dalian University of Technology, 2013.
The incorporation of ZnO with SnO2 would improve its photocatalytic property. In this paper, we described a simple method to prepare the ZnO-SnO2 nanorods by templating with bamboo charcoal, of which the morphology and photocatalytic properties were studied. 22 Advanced Research on Industry, Information System and Material Engineering IV Experimental Preparation of ZnO-SnO2 Nanocomposites. A 1:9 (molar ratio) mixture of SnCl2·2H2O and Zn(NO3)2·6H2O were dissolved in absolute ethanol. 1 g·mL-1. The system was stirred for 8h at 60 oC and stayed still for 48 h.
Hatate, K. Nishihara and T. Nakanishi: Removal of nitrate-nitrogen from drinking water using bamboo powder charcoal, Bioresource Technol. Vol. 95 (2004), p. 255  C. Wu, J. Shr, C. T. Hsieh: Synthesis and photocatalytic characterization of titania-supported bamboo charcoals by using sol–gel method, J. Mater. Process. , Vol. 203 (2008), p. 326  L. Zheng, Y. Zheng, C. Chen, Y. Zhan, X. Lin, Q. Zheng, K. Wei and J. Zhu: Network structured SnO2/ZnO heterojunction nanocatalyst with high photocatalytic activity.