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Online since: September 2011
Authors: Hong Fei Zhan, Fang He Yu, Jian Jun Yang
This material is also based upon work funded by Zhejiang Provincial Natural Science Foundation of China under Grant No.
-W., Nuttgens.M, in: Lecture Notes in Computer Science, Berlin (2000), p. 367-379
[5] YANG Jian-jun, ZHAN Hong-fei, HUANG Li-min, YU Jun-he: JOURNAL OF NINGBO UNIVERSITY(NSEE), Vol. 23 (2010) No. 1, p.85-88
[6] H.F.Zhan: Applied Mechanics and Materials, Vol. 37-38(2010), p. 985-989
[7] YU Fang-he, ZHAN Hong-fei, YU Jun-he, SUN Yong, CHEN Qiang: Science-Technology and Management, Vol. 12(2010) No. 4, p.34-38.
Online since: May 2012
Authors: Ying Peng, Hui Xian Jia, Xue Qin Jiao
They are recorded historical information of the real physical and chemical carrier and can pass information about the history, culture and science.
In order to achieve the genuine, original history, we should adhere the principle of "whole and old as before, to save the principle of truth" when remediated and use raw materials, original process, and original style when repaired.
Conclusions The protection of historical and cultural towns and villages is not simply the protection of the ancient village substances, non-material culture, but also the close combination of historical culture and modern life.
Acknowledgements This work was financially supported by Hebei Province Department of education science research project, Task ID: z2010226.
References [1] Guangya Zhu,Zi Huang: Architectural journal.Vol.4 (1999), p.56 [2] Xiaowen You,Baolei Wen,Keke Bian: Planners.Vol.23 (2007), p.34 [3] Baolian Bian,Changzhi: CaoCity Development Research.Vol.11 (2009), p.133 [4] Kai Tian: Sichuan Building Science.Vol.6 (2007), p.171
Online since: January 2011
Authors: Jun Jie Yang, Xiao Li Liu
Yang1,2,b 1Key Lab. of Marine Environmental Science and Ecology, Ministry of Education, Ocean University of China, Qingdao, 266100, China 2College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China alxl4791@yahoo.com.cn, bjjyang@ouc.edu.cn Keywords: Landslide, Stability analysis, Shear strength reduction technique, Numerical method Abstract: For numerical simulation, the shear strength reduction technique (SSRT) is often used to evaluate slope or landslide stability.
Adopting Mohr-Coulomb yield criterion and the non-associated flow rule with dilation angle of zero, the slip mass and the slip band are regarded as linear elastic-perfectly plastic materials.
Bedrock of the landslide is regarded as linear elastic material.
Acknowledgments Funds from project of National Natural Science Foundation of China (40702044) and project of Natural Science Foundation of Shandong Province, China (ZR2009FQ028) are greatly appreciated.
Yang: Canadian Geotechnical Journal Vol. 44 No. 3 (2007), p. 343 [4] M.S.
Online since: August 2013
Authors: Ping He
LiFePO4 is the most desirable material to produce positive electrode.
Later, the Ministry of Finance and the Ministry of Science and Technology made an announcement to motivate the demonstration and introduction of power-safe vehicles and new energy vehicles in 13 big cities, among which are Beijing and Shanghai.
[2] Zhu, W.H.: submitted to Applied Energy (2013) [3] Etacheri, V.: submitted to Energy & Environmental Science (2011) [4] Srivastava, A.K., B.
Kamalasadan: submitted to The Electricity Journal (2010) [5] Bai, Q., S.
Xu, in: Advances in Computer Science and Information Engineering (2012)
Online since: September 2013
Authors: Xiao Cai Yu, Jin Fang Chen, Yun Qing Liu, Xiao Xv, Xu Zheng
Laccase can catalyze the oxidation of many aromatic compounds, especially phenols, has been applied in many areas such as the textile industry, paper industry, utilization of biological resources, environmental protection, hazardous substance conversion and new energy development fields, and become an environment-friendly material in recent years[6-9].
Laccase was purchased from science and technology in Bailingwei.Diesel is a kind of 0#diesels and N-Hexane (Beijing Chemical Plant, China) is introduced as an extracting agent in the detecting procedure.
Acknowledgments This work has been supported by a grant from Science Foundation of Department of Ocean and Fisheries of Liaoning Province (2011024), Science Foundation of Education Department of Liaoning Province (L2011122) , Science and Technology Department of Liaoning Province(201301)and State Oceanic Administration People’s Republic of China(201305002) .
Velluzzi: Journal of Hazardous Materials Vol. 164(2009), p. 32
Online since: January 2012
Authors: Ling Shi, Gang Wu, Zhi Yang Pang, Xin Ming Yu
Copper-constantan thermocouples and Nickel-Chromium/Copper-Iron thermocouples are used as temperature sensor (made in Huazhong University of Science and Technology, China).
It is accepted widely that the thermal contact resistance results from the heat flux contraction, due to the engineering material surface roughness.
To reducing the thermal contact resistance, the softer material is usually applied between the contact surfaces to make interstice filled fully.
Acknowledge The authors would like to thank National Nature Science Fund of China for supporting this project( Grant No. 51076165).
Nose, et al: SuperconductivityVol9(1999), pp:32-935 [4] Shi ling, Wang Huiling, Tang Yuejin, Wang jingrong: Journal of Huazhong university of science and technology (nature science) Vol.33( 2005), pp: 90-94
Online since: February 2014
Authors: Xiao Qin Liu, Fang Wang, Fang Dong Hou
The best material for water storage was found to be multilayer jute fibre cloth [4].
With intermittent watering of the tillandsia usneoides plant curtain, tillandsia usneoides can act as a highly porous material with great water storage capacity.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (51308295 and 51206080) and China Postdoctoral Science Foundation (2013M531368).
Beijing: Science Press, 13 (2006) [10] X.
Journal of Plant Physiology, 160(6): 627-634 (2003)
Online since: July 2011
Authors: Pinsuda Viravathana, Sanya Prangsri-Aroon, Waritsara Bangmek, Attera Worayingyong, Olaf Deutschmann, Hans Schulz, Wiyong Kangwansupamonkon
Promoted and Un-promoted Co/SiO2 Fischer-Tropsch Catalysts Sanya Prangsri-aroon1,a, Pinsuda Viravathana1,2,b,*, Waritsara Bangmek1,c, Attera Worayingyong1,d, Wiyong Kangwansupamonkon3,e, Olaf Deutschmann4,f and Hans Schulz5,g 1Department of Chemistry, Faculty of Science, Kasetsart University, Chatuchak, Bangkok, 10900, Thailand 2Center of Advanced Studies in Tropical Natural Resources, National Research University-Kasetsart University, Chatuchak, Bangkok, 10900, Thailand (CASTNAR, NRU-KU, Thailand) 3National Nanotechnology Center, National Science and Technology Development Agency, Pathum Thani, 12120, Thailand 4Institute of Chemical Technology and Polymer Chemistry, Karlsruhe Institute of Technology, Karlsruhe, 76131, Germany 5Engler-Bunte-Institute, Karlsruhe Institute of Technology, Karlsruhe, 76131, Germany asanya799@hotmail.com, bfscipdv@ku.ac.th, cb.waritsara@hotmail.com, dfsciarw@ku.ac.th, ewiyong@nanotec.or.th, fdeutschmann@ict.uni-karlsruhe.de, ghans.schulz@
Alumina oxide was used as reference material to determine the instrumental line broadening.
Acknowledgement Financial supports from the Thailand Graduate Institute of Science and Technology (grant #TGIST 01-51-032), Department of Chemistry, Faculty of Science, Kasetsart University are acknowledged.
Also, the appreciation is extended to Synchrotron Light Research Institute (SLRI) on XAS studies and Evonik industries for the materials support.
Rahimpour: International Journal of Hydrogen Energy Vol. 34 (2009), p. 3965 [2] Y.
Online since: October 2011
Authors: Feng Hai Li, Jie Jie Huang, Yi Tian Fang, Yang Wang
Mineral Matter Transformation of Coal Ash under Gasification Atmosphere: a Case of Huolinhe Lignite Feng-hai Li 1,a, Jie-jie Huang2,b, Yi-tian Fang 3,c, Yang Wang 4,d 1School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo 454003, China 1,2,3,4Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan 030001, China aqflfh74@163.com, bhuangjj@sxicc.ac.cn, cfyt@sxicc.ac.cn, dwangyang@sxicc.ac.cn Keywords: Huolinhe lignite ashes; Gasification atmosphere; Mineral transformation.
In recent years, the gasification center of the Institute of Chemistry, Chinese Academy of Sciences (ICC, CAS) has devoted into the research and development of Huolinhe lignite pressurized ash agglomerate fluidized-bed (AFB) gasification.
Experimental section Material preparation The huolinhe lignite sample (originating from Inner Mongolia Province, the North of China) used in this study is the air-dried feedstock.
Acknowledgements This work was financially supported by the National High-Tech R&D Program of China (863 Program, 2008AA050302), and Knowledge Innovation Programs of the Chinese Academy of Sciences (KGCX2-YW-320 and KGCX2-YW-397).
Ding: Journal of Anhui Institute of Architecture & Industry Vol. 16(2008), p.54.
Online since: May 2011
Authors: Jing Yue Fang, Xue Ao Zhang, Shi Qiao Qin, Fei Wang, Xin Hua Li, Sheng Li Chang
Controllable Extinction Property of Au/SiO2 Nanocomposite Induced by Neutralization Reaction Time Jingyue Fang1, a, Xueao Zhang2, b, Shiqiao Qin2, c, Fei Wang2, d, Xinhua Li2, e and Shengli Chang2, f 1College of Optoelectric Science and Technology, National University of Defense Technology, Changsha, Hunan 410073, China 2College of Science, National University of Defense Technology, Changsha 410073, China afjy_nudt@yahoo.com.cn, bxazhang@nudt.edu.cn, c sqqin8@nudt.edu.cn, dwangfei_815@163.com, elxhfire@163.com, fslchang@nudt.edu.cn Keywords: Au/SiO2 nanocomposite, extinction property, Mie theory, Maxwell-Garnett theory Abstract: The Au/SiO2 nanocomposite was produced using surface active agent P123, and its optical absorption spectra was measured by spectrophotometer.
Reference [1] MING-SHIEN HU, HSIN-LI CHEN, CHING-HSING SHEN, LU-SHENG HONG, BOHR-RAN HUANG, KUEI-HSIEN CHEN, LI-CHYONG CHEN: Nature Materials 5 (2006),102 [2] Jiong Zhang, Shiping Song, Lihua Wang, Dun Pan, Chunhai Fan: Nature 2(11) (2007), 2888 [3] James J Storhoff, Adam D Lucas, Viswanadham Garimella, Y Paul Bao, Uwe R Müller: Nature Biotechnology 22(7) (2004), 883 [4] Juewen Liu, Yi Lu: Nature Protocols 1(1) (2006), 246 [5] H.
Lett. 70 (1) (1997), 1 [6] MING-SHIEN HU, HSIN-LI CHEN, CHING-HSING SHEN, LU-SHENG HONG, BOHR-RAN HUANG, KUEI-HSIEN CHEN, LI-CHYONG CHEN: Nature Materials 5 (2006),102 [7] Jin-Lou Gu, Jian-Lin Shi, Guan-Jun You, Liang-Ming Xiong, Shi-Xiong Qian, Zi-Le Hua, Hang-Rong Chen: Adv.
Hartland: Journal of Chemical Physics 112(13) (2000), 5942 [12] G.L.
Hofmann: NanoStruemred Materials 9 (1997), 575