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Online since: February 2013
Authors: Ya Qing Liu, Ping Xian, Long Hui Yang, Xi Liu, Cun Xin Ning, Meng Fei Guo
Experiment Section
Materials.
Journal of Guangxi University(Nat Sci Ed) ,006,31:327-330 (in Chinese) [2] Amelia Kivaisi.
Wetland Science, 2005,3(3):228-234 (in Chinese) [7] Huang Bing-bin, Meng Qing-yi, He Chun-li.
Journal of Agro-Environment Science, 2010, 29(5):969-975 (in Chinese) [10] State Environmental Protection Administration.
Beijing: China Environmental Science Press (in Chinese)
Journal of Guangxi University(Nat Sci Ed) ,006,31:327-330 (in Chinese) [2] Amelia Kivaisi.
Wetland Science, 2005,3(3):228-234 (in Chinese) [7] Huang Bing-bin, Meng Qing-yi, He Chun-li.
Journal of Agro-Environment Science, 2010, 29(5):969-975 (in Chinese) [10] State Environmental Protection Administration.
Beijing: China Environmental Science Press (in Chinese)
Online since: August 2011
Authors: Yuan Yuan Lei, Guo Zheng, Yu Sun, Yong Zhou
Experiments
Materials.
Kang: Dimensional and Surface Properties of Plasma and Silicone Treated Wool Fabric (Textile Research Journal, USA 2002) [3] S.C.
Mehta:Variation in emulsion stabilization behavior of hybrid silicone polymers with change in molecular structure: Phase diagram study(Journal of Colloid and Interface Science, USA 2009) [4] Y.Q.
Zhan: Particle kinetics and physical mechanism of microemulsion polymerization of octamethylcyclotetrasiloxane (Powder Technology, Switzerland 2010) [5] Y.J.Xu, H.Yin, S.F.Yuan, Z.R.Chen: Film morphology and orientation of amino silicone adsorbed onto cellulose substrate (Applied Surface Science, Holland 2009) [6] M.
Racles: Synthesis of functional telechelic polydimethylsiloxanes by ion-exchangers catalysis (European Polymer Journal, England 1999) [7] M.C.Burrell: Angle-dependent XPS study of functional group orientation for aminosilicone polymers adsorbed onto cellulose surfaces(Applied Surface Science, Holland 2004) [8] Y.B.
Kang: Dimensional and Surface Properties of Plasma and Silicone Treated Wool Fabric (Textile Research Journal, USA 2002) [3] S.C.
Mehta:Variation in emulsion stabilization behavior of hybrid silicone polymers with change in molecular structure: Phase diagram study(Journal of Colloid and Interface Science, USA 2009) [4] Y.Q.
Zhan: Particle kinetics and physical mechanism of microemulsion polymerization of octamethylcyclotetrasiloxane (Powder Technology, Switzerland 2010) [5] Y.J.Xu, H.Yin, S.F.Yuan, Z.R.Chen: Film morphology and orientation of amino silicone adsorbed onto cellulose substrate (Applied Surface Science, Holland 2009) [6] M.
Racles: Synthesis of functional telechelic polydimethylsiloxanes by ion-exchangers catalysis (European Polymer Journal, England 1999) [7] M.C.Burrell: Angle-dependent XPS study of functional group orientation for aminosilicone polymers adsorbed onto cellulose surfaces(Applied Surface Science, Holland 2004) [8] Y.B.
Online since: October 2012
Authors: Jin Bing Wei, Hong Chun Zheng, Yu Long Cui, Yi Qin
Material inside the body is consolidated, particles on the surface are bond to each other by chemical cementation, and heavy cohesion of calcarinate was existed in the ancient sliding layer, leading to the sliding body being well fight decency aggressive in natural condition.
Acknowledgements This work was financially supported by National Nature Science Foundation of China (Grant No. 40972190 and 50639100), the National Basic Science Foundation of Sichuan University (Grant No. 2010SCU23004) and the national Basic Research Program of China (Grant No. 2010CB226802 and Grant No. 2010CB732005) for financial supports.
[2] Xie Heping, Deng Jianhui, Tai Jiajia, et.al. 2008, Wenchuan Large Earthquake and Post-earthquake Reconstruction-Related Geotechnical Problems, Chinese Journal of Rock Mechanics and Engineering, 27(9):1782-1791(in Chinese)
[3] Pan Ruilin, Li Bingsheng, Jiang Jueguang, 1990, Research on the Buckling Failure of the Slab-Rent Structure Rock Bedding Slopes, Journal of Southwest Jiaotong University, 77(3):82-88(in Chinese)
[4] Zhu Hanya, Ma Meiling, Shang Yuequan, 2004, Analysis of Buckling Failure of Consequent Rock Slope, Journal of Zhejiang University(Engineering Science), 38(9):1144-1149(in Chinese)
Acknowledgements This work was financially supported by National Nature Science Foundation of China (Grant No. 40972190 and 50639100), the National Basic Science Foundation of Sichuan University (Grant No. 2010SCU23004) and the national Basic Research Program of China (Grant No. 2010CB226802 and Grant No. 2010CB732005) for financial supports.
[2] Xie Heping, Deng Jianhui, Tai Jiajia, et.al. 2008, Wenchuan Large Earthquake and Post-earthquake Reconstruction-Related Geotechnical Problems, Chinese Journal of Rock Mechanics and Engineering, 27(9):1782-1791(in Chinese)
[3] Pan Ruilin, Li Bingsheng, Jiang Jueguang, 1990, Research on the Buckling Failure of the Slab-Rent Structure Rock Bedding Slopes, Journal of Southwest Jiaotong University, 77(3):82-88(in Chinese)
[4] Zhu Hanya, Ma Meiling, Shang Yuequan, 2004, Analysis of Buckling Failure of Consequent Rock Slope, Journal of Zhejiang University(Engineering Science), 38(9):1144-1149(in Chinese)
Online since: September 2013
Authors: Jing Yan Li, Ping Yang, Hao Li, Xiang Bo Zeng, Qi Ming Wang, Xiao Bing Xie, Hai Bo Xiao, Xiao Dong Zhang
Acknowledge
This work was supported in by National High Technology Research and Development Program (863 Program) of China (NO. 2011AA050504)National Natural Science Foundation of China (NSFC,NO 51072194),and Key Laboratory of Nanodevices and Applications, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences,12JG01.
Jeon: Solar Energy Materials and Solar Cells Vol. 95 (2011), p. 150–153 [8] P.
Peng: Journal of Non-Crystalline Solids Vol. 357 (2011), p. 121–125 [12] J.
YAMADA: Japanese Journal of Applied Physics Vol. 43 (2004), p. 2419-2424 [14] I.
Topiè: JOURNAL OF APPLIED PHYSICS Vol. 96 (2004), p. 7289-7299 [16] M.
Jeon: Solar Energy Materials and Solar Cells Vol. 95 (2011), p. 150–153 [8] P.
Peng: Journal of Non-Crystalline Solids Vol. 357 (2011), p. 121–125 [12] J.
YAMADA: Japanese Journal of Applied Physics Vol. 43 (2004), p. 2419-2424 [14] I.
Topiè: JOURNAL OF APPLIED PHYSICS Vol. 96 (2004), p. 7289-7299 [16] M.
Online since: February 2012
Authors: He Zhong Pei, Jun Zhang, Guo Liang Zhang, Pan Huang
Research to the uniformity of Ni-Co alloy electroforming
Hezhong Pei 1, a , Jun Zhang2, b , Guoliang Zhang1, c , Pan Huang1, b
1Faculty of materials science and engineering, Kunming University of Science and Technology, Kunming650093, china
2YUNNAN CHIHONG Zn&Ge CO., LTD, kunming650093, china
apeihezhong@vip.qq.com b523525650@qq.com c87238370@qq.com
Keywords: electroforming, Ni-Co alloy, throwing power, current distribution, numerical simulation
Abstract.
High-rate through-mold electrodeposition of thick (>200μm) NiFe MEMS components with uniform composition.Journal of Microelectromechanical Systems; 1999,8: 384-392
Frequency effect of pulse plating on the uniformity of copper deposition in plated through holes.Journal of the Electrochemical Society; 2003, 150: C267-C272
Journal of Microlithography, Microfabrication, and Microsystems;2004, 3: 146-151
Tanjin: Tanjin publishing house of science and technology;2004,p.40-50.
High-rate through-mold electrodeposition of thick (>200μm) NiFe MEMS components with uniform composition.Journal of Microelectromechanical Systems; 1999,8: 384-392
Frequency effect of pulse plating on the uniformity of copper deposition in plated through holes.Journal of the Electrochemical Society; 2003, 150: C267-C272
Journal of Microlithography, Microfabrication, and Microsystems;2004, 3: 146-151
Tanjin: Tanjin publishing house of science and technology;2004,p.40-50.
Online since: August 2013
Authors: Mei Chen Fu, Jin Sheng Zhou, Xiao Tao Zhang, Zhao Ji, Zeng Ying Zhao
Partitioned Land-use Planning Based on Evaluation of Geological Environment: A Case Study of Qingyang City
Zhao Ji1, a, Zengying Zhao2,b ,Meichen Fu1,c ,Xiaotao Zhang3,Jinsheng Zhou4
1School of Land Science and Technology, China University of Geosciences, Beijing 100083, China
2School of Science, China University of Geosciences, Beijing 100083, China
3School of Energy, China University of Geosciences, Beijing 100083, China
4Geological Survey of CUGB, China University of Geosciences, Beijing 100083, China
aJerermy@foxmail.com, b1012278135@qq.com, cfumeichen@163.com
Keywords: Land-use Planning; Partition; Evaluation; Geological Environment
Abstract: Land-use planning is one of the most important planning in the process of national economy development.
There are many building materials mines in this area, such as clay and building sand mining.
Application of Argo-geologic Environment Survey inthe Development of Regional Agriculture:A Case Study in Shangyu City, Zhejiang Province, Journal of East China Normal University (Natural Science), 2007(4), 64-71(in Chinese)
Quarterly Journal of Engineering Geology, 1995,28, 179-194
Using ecological land units for conservation planning in a southwestern Ohio Watershed, Natural Areas Journal. 2010,1(30):27-38
There are many building materials mines in this area, such as clay and building sand mining.
Application of Argo-geologic Environment Survey inthe Development of Regional Agriculture:A Case Study in Shangyu City, Zhejiang Province, Journal of East China Normal University (Natural Science), 2007(4), 64-71(in Chinese)
Quarterly Journal of Engineering Geology, 1995,28, 179-194
Using ecological land units for conservation planning in a southwestern Ohio Watershed, Natural Areas Journal. 2010,1(30):27-38
Online since: July 2014
Authors: Shu Jun Wang, Fan Bin Meng, Huan Qing Ma, Yan Shan Li, Wan Gang Zheng
Experimental
Materials.
Ren: Petroleum Science and Technology, vol. 23 (2005) no.5-6, p. 669-679
Wang: Petroleum Science, vol. 6 (2009) no. 1, p. 82-85
Barbosa, et al: European Polymer Journal, vol. 43 (2007) no. 8, p. 3671-3678
Xi, et al: Journal of Natural Gas Chemistry, vol. 15 (2006) no. 3, p. 217-222
Ren: Petroleum Science and Technology, vol. 23 (2005) no.5-6, p. 669-679
Wang: Petroleum Science, vol. 6 (2009) no. 1, p. 82-85
Barbosa, et al: European Polymer Journal, vol. 43 (2007) no. 8, p. 3671-3678
Xi, et al: Journal of Natural Gas Chemistry, vol. 15 (2006) no. 3, p. 217-222
Online since: December 2012
Authors: Ying Liu, Chang Ping Wei, Li Dan Dong
Acetyl Sulface reacted by the mixture of Acetic Anhydride and Concentrated Sulfuric Acid at equal proportion is the reagent. low molecular weight Chitosan being as raw materials, Vulcanized Oligomer Chitosan is sulfonated with good water-solubility and high sulfur content under certain conditions.
Materials and methods. (1) Experimental materials.
Wu, chitosan sulfonation and its application, Guangzhou: Guangdong University of Technology Master of Science thesis.1 (2002)1-19
Jiang, Development of sulfonated hydroxyethyl chitosan, Chinese Journal of Biochemical Pharmaceutics.19 (1998)163-165
Wu, Bio-pharmaceutical technology, Nanjing, China Science Press.4 (1987)51-57.
Materials and methods. (1) Experimental materials.
Wu, chitosan sulfonation and its application, Guangzhou: Guangdong University of Technology Master of Science thesis.1 (2002)1-19
Jiang, Development of sulfonated hydroxyethyl chitosan, Chinese Journal of Biochemical Pharmaceutics.19 (1998)163-165
Wu, Bio-pharmaceutical technology, Nanjing, China Science Press.4 (1987)51-57.
Online since: December 2014
Authors: Hong Wei Wang, Duan Bo Cai, Rui Yin, Ling Ling Zhang, Fu Kai Yang, Shan Shan Lu, Jie Zhang, Wen Bo Zhao
College of Life Science, Hebei University, Baoding, P.R.
Hebei Ocean& Fishery Sciences Research Institute, Qinhuangdao, P.R .China 8.
Institute of Laboratory Animal Science, Chinese Academy of Medical Science,Beijing, P.R.
Materials and Methods Gastropods (Cipangopaludina chinensis) were collected from Baiyangdian Lake in Hebei Province, then after the pre-experiment, they were divided into five experimental groups (I: Control;II: Ethanol control; III: Environmental concentration group; IV: 10 times of Environmental concentration group;V: 20 times of Environmental concentration group).
Journal of fish biology, 2012, 80(5): 2112-2121.
Hebei Ocean& Fishery Sciences Research Institute, Qinhuangdao, P.R .China 8.
Institute of Laboratory Animal Science, Chinese Academy of Medical Science,Beijing, P.R.
Materials and Methods Gastropods (Cipangopaludina chinensis) were collected from Baiyangdian Lake in Hebei Province, then after the pre-experiment, they were divided into five experimental groups (I: Control;II: Ethanol control; III: Environmental concentration group; IV: 10 times of Environmental concentration group;V: 20 times of Environmental concentration group).
Journal of fish biology, 2012, 80(5): 2112-2121.
Online since: December 2019
Authors: Lidia Kondratieva, Vladimir Konyushkov, Le Van Trong, Vladimir Kirillov
Following the results of field tests, diagrams of load-bearing capacity of piles according to the material, depending on geometrical parameters and manufacturing techniques, diagrams of actual and designed load-bearing capacity of piles were plotted.
[7] Hoľko, M., Stacho, J., Comparison of numerical analyses with a static load test of a continuous flight auger pile, Slovak Journal of Civil Engineering. 22 (4) (2014) 1–10.
V., Application of water-soluble high-molecular polymers for construction of foundations from bored piles, barettes and "walls in soil" in sands, Bulletin of Science and Research Center “Stroytelstvo”. 20 (2019) 131–139
[16] Liashenko, P.A., Ostapenko, A.I., Laboratory modelling of filling pile, Polythematic Online Scientific Journal of Kuban State Agrarian University. 66 (2011) 44–59
[18] Thounaojam, S. and Parbin Sultana, Prediction of bearing capacity of bored cast- in situ pile, Journal of Mechanical and Civil Engineering, 2015, pp. 1–6
[7] Hoľko, M., Stacho, J., Comparison of numerical analyses with a static load test of a continuous flight auger pile, Slovak Journal of Civil Engineering. 22 (4) (2014) 1–10.
V., Application of water-soluble high-molecular polymers for construction of foundations from bored piles, barettes and "walls in soil" in sands, Bulletin of Science and Research Center “Stroytelstvo”. 20 (2019) 131–139
[16] Liashenko, P.A., Ostapenko, A.I., Laboratory modelling of filling pile, Polythematic Online Scientific Journal of Kuban State Agrarian University. 66 (2011) 44–59
[18] Thounaojam, S. and Parbin Sultana, Prediction of bearing capacity of bored cast- in situ pile, Journal of Mechanical and Civil Engineering, 2015, pp. 1–6