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Online since: November 2012
Authors: Jun Feng Tian, Zhuang Yao, Hu Lin, Jie Li, Qing Li, Jin Gang Yu
To reduce speed fluctuation during the interpolation process, Huang and Yang [2] and Shpitalni et al. [3] developed first-order approximation interpolation algorithms using Euler and Taylor’s expansions, respectively.
Furthermore, Yang and kong [4] and Yeh and Hsu [5] proposed the second-order approximation and speed-controlled interpolation algorithms, respectively, which yields more precise results.
Furthermore, Yang and kong [4] and Yeh and Hsu [5] proposed the second-order approximation and speed-controlled interpolation algorithms, respectively, which yields more precise results.
Online since: June 2019
Authors: Peng Fei Yang, Tian Shi Liu, Xiao Lin Tang, Guo Jun Ke
Synthesis of Mesoporous Silica and its Adsorption Properties for Chloride Ions
KE Guojun1,a, LIU Tianshi1,b, YANG Pengfei2,c*,TANG Xiaolin1,d
1School of Civil Engineering, University of South China, Hengyang, Hunan 421001, China
2School of Chemistry and Chemical Engineering, University of South China, Hengyang, Hunan 421001, China
akegj320@sina.com, bliu_tianshi2018@163.com, cypengfei2008@126.com, d15810716792@163.com
Keywords: Mesoporous silicon oxide; Synthesis; Adsorption; Chloride ion
Abstract.
Yang Chaowas studied the ability of bismuth-silicon composite mesoporous material to remove fluoride ions in water [11].
Fund Project: National Natural Science Foundation of China (51378247) Postgraduate Science Foundation of USC (2018KYY122) About the author: Ke Guojun (1964-), male, professor, master tutor, E-mail: kegj320@sina.com Contact: Yang Pengfei (1978-), male, associate professor, Ph.D., E-mail:ypengfei2008@126.com References [1] Kresge, C.T., et al., Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism.
Yang Chaowas studied the ability of bismuth-silicon composite mesoporous material to remove fluoride ions in water [11].
Fund Project: National Natural Science Foundation of China (51378247) Postgraduate Science Foundation of USC (2018KYY122) About the author: Ke Guojun (1964-), male, professor, master tutor, E-mail: kegj320@sina.com Contact: Yang Pengfei (1978-), male, associate professor, Ph.D., E-mail:ypengfei2008@126.com References [1] Kresge, C.T., et al., Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism.
Online since: December 2010
Authors: Dong Dong Li, Zhi Lin Mai, Jin Xing Guo, Tian Sheng Hong, Wei Bin Wu
References
[1] Henggan Zhang, Sijun Yang, Kejun Gu et.al: Jiangsu Agricultural Sciences Vol. 3(2002), p. 20-25, in Chinese
[18] Henggan Zhang, Sijun Yang, Kejun Gu et.al: Jiangsu Agricultural Sciences Vol. 1(2005), p. 28-30, in Chinese
[18] Henggan Zhang, Sijun Yang, Kejun Gu et.al: Jiangsu Agricultural Sciences Vol. 1(2005), p. 28-30, in Chinese
Online since: July 2015
Authors: Hao Ling Ren, Cheng Miao, Sheng Jie Fu, Tian Liang Lin, Zhong Shen Li
Yang, Tet suhiro T sukiji, Numerical Simulation and Visualization Study of Cavitating Flow in Hydraulic Ball Valve, Transactions of the Chinese Society for Agriculture Machinery, 2003(5), Vol.34, No. 3 :45-48
Yang, K.
Yang, K.
Online since: November 2015
Authors: Yan Cui, Gang Xie, Lin Tian, Yan Qing Hou, Zhan Liang Yu, Ya Dong Li
Yang [8] believes that the flow field and concentration field are decided by the structure and the gas inlet condition, and reasonable structure and gas inlet conditions can make the reaction carried out in the center of the reactor, which will reduce the scarring in the reactor.
[8] XZ Yang, ZF Yuan, Zhi Wang et al.
[8] XZ Yang, ZF Yuan, Zhi Wang et al.
Online since: July 2011
Authors: Meng Meng Lu, Ning Wang, Xiao Jun Tian, Xiao Nan Gong
Reference:
[1] Yang Xu: Computational Theory and Numerical Analysis for Consolidation and Deformation of Composite Foundation, PhD Thesis, Hangzhou: Zhejiang University, 2004
[4] Tao Yang, Guowei Li: Journal of Geotechnical Engineering Vol. 29(2007), p. 1831–1836,in Chinese
[4] Tao Yang, Guowei Li: Journal of Geotechnical Engineering Vol. 29(2007), p. 1831–1836,in Chinese