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Online since: August 2014
Authors: Jun Liu, Rui Wu, Ya Ping Liu, Wen Ya Liu, Yang Xu
Study of Relationship between Renewable Energy ElectricPower and Economic Development in China Based on the Principle of Asymmetric Equilibrium
Jun Liu1, a, Rui Wu2,b , Yaping liu3, a ,Wenya liu4, b , Yang Xu5, b
1,3 State Grid Gansu Electric Power Company, Gansu Province
2,4,5 School of Economics and Management, North China Electric Power University, Beijing
a545565879@qq.com, bwurui0208@sina.cn
Keywords: Principle of asymmetric equilibrium; Error correction model; renewable electricity.
[2]HP.Wang, P.Tian, P.Jin,in:An empirical study between energy consumption, economic growth Chinese cointegration and causality -- case study of the electric power industry,edit by Productivity Research, volume 3(2005),p159-177
[2]HP.Wang, P.Tian, P.Jin,in:An empirical study between energy consumption, economic growth Chinese cointegration and causality -- case study of the electric power industry,edit by Productivity Research, volume 3(2005),p159-177
Online since: September 2013
Authors: Li Liu, Rong Yang, Hong Mei Xiao, Jin Xiang Gao, Xiao Xia Wang, Xiao Jie Qin
Effects of Hanseniaspora uvarum integrated with salicylic acid or sodium bicarbonate on postharvest decay of grapes
Xiaojie Qin, Hongmei Xiao*, Li Liu, Jinxiang Gao, Xiaoxia Wang, Rong Yang
College of food science and technology,
Nanjing Agricultural University, Nanjing, Jiangsu 210095, PR China
*Corresponding author: xhm@njau.edu.cn
Keywords: Postharvest biological control; Hanseniaspora uvarum; Salicylic acid (SA); Sodium bicarbonate (SBC); Botrytis cinerea; Grapes berries
Abstract.
References [1] S Castillo, D Navarro, PJ Zapata, F Guillen, D Valero: Postharvest Biology and Technology. 57:183-188 (2010) [2] BA Latorre: Fitopatologia. 42: 9–20 (2007) [3] S Droby, M Wisniewski, D Macarisin, C Wilson: Postharvest Biology and Technology. 52: 137-145 (2009) [4] T Manso, C Nunes: Postharvest Biology and Technology. 61: 64-71 (2011) [5] HY Zhang, QY Yang, HT Lin, XF Ren, LN Zhao, JS Hou: LWT-Food science and technology. 1-6 (2012) [6] WJ Janisiewicz, L Korsten: Annu.
Phytopathol. 40: 411-441 (2002) [7] BH Cao, H Li, SP Tian, GZ Qin: Postharvest Biology and Technology. 68:16-21 (2012) [8] P Geng, SH Chen, MY Hu, M Rizwan-ul-Haq, KP Lai, F Qu, YB Zhang: International Journal of Food Microbiology. 151: 190-194 (2011) [9] Y Zhao, K Tu, J Su, S Tu, YP Hou, FJ Liu, XR Zou: Journal of Agricultural and Food Chemistry. 57: 7565-7570 (2009) [10] A El-Ghaouth, JL Smilanick, M Wisniewski, CL Wilson: Plant Disease. 84: 249–253 (2000) [11] B Meena, T Marimuthu, R Velazhahan: Journal of Mycology Plant Pathology. 31: 139–145 (2001) [12] HY Zhang, LC Ma, M Turner, HX Xu, XD Zheng, Y Dong, S Jiang: Food Chemistry. 122: 577-583 (2010) [13] S Mandal, N Mallick, A Mitra: Plant Physiology and Biochemistry. 47: 642–649 (2009) [14] SU Gamagae, D Sivakumar, RLC Wijesundera: Crop Protection. 23: 575–579 (2004) [15] A Ippolito, L Schena, I Pentimone, F Nigro: Postharvest Biology and Technology. 36: 245-252 (2005) [16] C Larrigaudière, J Pons, R Torres, J Usall: Journal
References [1] S Castillo, D Navarro, PJ Zapata, F Guillen, D Valero: Postharvest Biology and Technology. 57:183-188 (2010) [2] BA Latorre: Fitopatologia. 42: 9–20 (2007) [3] S Droby, M Wisniewski, D Macarisin, C Wilson: Postharvest Biology and Technology. 52: 137-145 (2009) [4] T Manso, C Nunes: Postharvest Biology and Technology. 61: 64-71 (2011) [5] HY Zhang, QY Yang, HT Lin, XF Ren, LN Zhao, JS Hou: LWT-Food science and technology. 1-6 (2012) [6] WJ Janisiewicz, L Korsten: Annu.
Phytopathol. 40: 411-441 (2002) [7] BH Cao, H Li, SP Tian, GZ Qin: Postharvest Biology and Technology. 68:16-21 (2012) [8] P Geng, SH Chen, MY Hu, M Rizwan-ul-Haq, KP Lai, F Qu, YB Zhang: International Journal of Food Microbiology. 151: 190-194 (2011) [9] Y Zhao, K Tu, J Su, S Tu, YP Hou, FJ Liu, XR Zou: Journal of Agricultural and Food Chemistry. 57: 7565-7570 (2009) [10] A El-Ghaouth, JL Smilanick, M Wisniewski, CL Wilson: Plant Disease. 84: 249–253 (2000) [11] B Meena, T Marimuthu, R Velazhahan: Journal of Mycology Plant Pathology. 31: 139–145 (2001) [12] HY Zhang, LC Ma, M Turner, HX Xu, XD Zheng, Y Dong, S Jiang: Food Chemistry. 122: 577-583 (2010) [13] S Mandal, N Mallick, A Mitra: Plant Physiology and Biochemistry. 47: 642–649 (2009) [14] SU Gamagae, D Sivakumar, RLC Wijesundera: Crop Protection. 23: 575–579 (2004) [15] A Ippolito, L Schena, I Pentimone, F Nigro: Postharvest Biology and Technology. 36: 245-252 (2005) [16] C Larrigaudière, J Pons, R Torres, J Usall: Journal
Online since: January 2014
Authors: Huan Lin, Fei Yang, Dong Qiang Gao, Jin Feng Ma, Chao Qun Chen
Precision Analysis of the Surface Model Based on Geomagic Qualify
Dongqiang Gao a,Jinfeng Ma b, Huan Lin, Chaoqun Chen, Fei Yang
Institute of Mechanical & Electrical, Shaanxi University of Science & Technology, Xi’an 710021, China
a gaodq@sust.edu.cn, b 497628806@qq.com
Key words: Reverse Engineering; Surface Reconstruction; Geomagic; Precision Analysis
Abstract:The precision analysis of surface model is one of the key technologies in reverse engineering.Analyzed the error sources of surface accuracy in reverse engineering,proposed an evaluation indicators of the surface accuracy,which are whether the reconstructed model is qualified.Taking rearview mirror for example,compared with the reconstructed model and the original point cloud data by three-dimensional and two-dimensional methods in Geomagic Quality software,obtained the deviation value of the whole model and three different directions,the results show that the error of the most data points is in the range of permissible,which
[6] Pan Yang-Yu, Yu Zheng-quan.
[9] Wang Li-min, Zhou Tian-rui, Yuan Hui-ling.
[6] Pan Yang-Yu, Yu Zheng-quan.
[9] Wang Li-min, Zhou Tian-rui, Yuan Hui-ling.
Online since: October 2014
Authors: Bo Yang, Xiao Cong Wang, Shi Ping Li, Jin Mei Lin, Ai Zhi Yu, Mao Dong Li, Hui Zhang
References
[1] X.D.Li,Z.C.Yang: Study On theDetermination of Chlorine Content of City Life Garbage (Fuel Chemistry and Technology,China 2002),p. 563-568, (In Chinese)
[2] Y.M.Liu: Silver Nitrate Capacity Method and Mercury Rhodanate Spectrophotography for Determinating of Chloride in Water (Environmental Science Survey,China 2007),p. 87-88,(In Chinese)
[3] Y.H.L: Analytical Chemistry (Petroleum Industry Press , China 2008), (In Chinese)
[4] X.J.Tian,X.Q.Xian: Spectrophotometric Determination of Trace Amounts of Chloride Ions in Water (Instrumentation Analysis Monitoring, China 2004), p. 32-33, (In Chinese)
Online since: December 2014
Authors: Hai Bo Ouyang, Jie Fei, Li Yun Cao, Jian Feng Huang, Jia Yin Li, Xin Gang Kong, Cui Yan Li, Liu Qing Yang
Highly photocatalytic properties observed in 4ZnO·B2O3·H2O under UV-light for MB, RhB and MO degradation
Yang Liu-Qing a, Huang Jian-Feng b, Kong Xin-gang, Cao Li-Yun, Li Jia-Yin, Fei Jie, Li Cui-Yan, and Ouyang Hai-Bo
School of Material Science and Engineering, Shaanxi University of Science and Technology, Xi’an, Shaanxi, 710021, P.
[9] Tian Y., Guo Y., Jiang M., Sheng Y., Hari B., Zhang G., Jiang Y., Zhou B., Zhu Y., Wang Z..
[13] Xixi Shi, Ming Li, Hao Yang, Shuoping Chen, Liangjie Yuan, Keli Zhang, Jutang Sun.
[9] Tian Y., Guo Y., Jiang M., Sheng Y., Hari B., Zhang G., Jiang Y., Zhou B., Zhu Y., Wang Z..
[13] Xixi Shi, Ming Li, Hao Yang, Shuoping Chen, Liangjie Yuan, Keli Zhang, Jutang Sun.
Online since: August 2011
Authors: Xiao Xu Xu, Yong Peng Yu, Li Qun Yang
Huang Xu [29] used glutaraldehyde as crosslink, the mixture of chatoyant and silk fibroin solution immiscible aside, the drying film, prepared a chatoyant hybrid membrane Tian can Si Su, testing some of its basic properties were Tian can Si element and has a good solubility of chatoyant, a mixture of both stable after the mixed membrane permeability of composite membranes are well improved, while there was a significant increase in water absorption, and the film changed After the increase of mechanical strength.
Yang et al [42] studied different coagulants on the silk fibroin / cellulose blend membrane structure and pore formation.
(in chinese) [6] Yan Zhou, Yang Liu.
[42] Yang G, Zhang L, Liu Y.Journal of Membrane Science, 2000, 177(1-2):153-161.
Yang et al [42] studied different coagulants on the silk fibroin / cellulose blend membrane structure and pore formation.
(in chinese) [6] Yan Zhou, Yang Liu.
[42] Yang G, Zhang L, Liu Y.Journal of Membrane Science, 2000, 177(1-2):153-161.