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Online since: November 2012
Authors: Xin Zheng, Wei Guo, Shao Dong Liu
This is a waste pile material.
The contact stiffness is taken as the elastic modulus of corresponding material.
In the design of combined composite foundation, the highest carrying capacity and the most provincial materials will be achieved when the core-pile length is designed according to the optimal ratio.
The highest carrying capacity and the most provincial materials will be achieved when the core-pile length is designed according to length ratio. 2.
Vol.21 (2005), p.56 (in Chinese) [6] Guilin Sheng, Shutian Lu, Peng Bao and Jie Zhao: Journal of Henan University (Natural Science).
The contact stiffness is taken as the elastic modulus of corresponding material.
In the design of combined composite foundation, the highest carrying capacity and the most provincial materials will be achieved when the core-pile length is designed according to the optimal ratio.
The highest carrying capacity and the most provincial materials will be achieved when the core-pile length is designed according to length ratio. 2.
Vol.21 (2005), p.56 (in Chinese) [6] Guilin Sheng, Shutian Lu, Peng Bao and Jie Zhao: Journal of Henan University (Natural Science).
Online since: July 2011
Authors: Wen Bin Cao, Mei Jun Li
., Ltd, Luoyang 471039, China
2 Department of Inorganic Nonmetallic Materials, School of Materials Science and Engineering,
University of Science and Technology Beijing, Beijing 100083, China
aemail: limj@lirrc.com, bemail: wbcao@mater.ustb.edu.cn
Keywords: nanocrystalline, N-doped, TiO2, solvothermal synthesis, visible light
Abstract: N-doped TiO2 powders have been prepared by solvothermal synthesis using TiCl3 aqueous solution as precursor.
Ohwahi, Visible-Light Photocatalysis in Nitrogen-Doped Titanium Oxides, Science, 293 (2001) 269-271
Chung, Characterization of a TiO2 photocatalyst synthesized by the solvothermal method and its catalytic performance for CHCl3 decomposition, Journal of Photochemistry and Photobiology A: Chemistry, 144 (2001) 185-191
[10] S.Yin, T.Sato, Photocatalytic activity of platinum loaded fibrous titania prepared by solvothermal process, Journal of Photochemistry and Photobiology A: Chemistry, 169 (2005) 89-94
Ohwahi, Visible-Light Photocatalysis in Nitrogen-Doped Titanium Oxides, Science, 293 (2001) 269-271
Chung, Characterization of a TiO2 photocatalyst synthesized by the solvothermal method and its catalytic performance for CHCl3 decomposition, Journal of Photochemistry and Photobiology A: Chemistry, 144 (2001) 185-191
[10] S.Yin, T.Sato, Photocatalytic activity of platinum loaded fibrous titania prepared by solvothermal process, Journal of Photochemistry and Photobiology A: Chemistry, 169 (2005) 89-94
Online since: October 2014
Authors: Chao Yan Zhang
Introduction
In recent years, with the development of social economy, our country's textile industry also obtained fast development, as a labor-intensive industry, knitting enterprise production process is complex, involves more working procedure, the use of the raw materials of products and product variety, the management of the enterprise needs to be reasonable and effective solution to the management of the science of the production and business operation.
and technology company launched more types, some of them have been commercialized, also has certain advance on the function, but more for general software, in practice, there is no comprehensive application, at the same time system is developed for the big enterprise, in the development process needs the investment of manpower and material resources, knitting enterprise more for small and medium enterprises, popularization and application has the certain difficulty.
VB visualization and Access the power of operation, and both the advantages of simple operation, easy to master in the knitting enterprise management system development has obvious technical advantages, this article namely according to the characteristics of the knitting enterprise management, this paper introduces a management system based on VB and Access. 3.1System design This system in the Windows xp environment, database using Access 2003 established including raw material, such as inventory database, process database, database, software instead of data operation is flexible, simple, the data have a certain organizational structure, and can guarantee the integrity of the data, the security of database system, better accuracy and data processing capacity can meet the needs of small and medium-sized enterprises, also can realize the sharing of data.
Journal of shandong textile science and technology, 2010, (5) : 42 to 45
Journal of knitting industry, 2010, (9) : 4 to 6
and technology company launched more types, some of them have been commercialized, also has certain advance on the function, but more for general software, in practice, there is no comprehensive application, at the same time system is developed for the big enterprise, in the development process needs the investment of manpower and material resources, knitting enterprise more for small and medium enterprises, popularization and application has the certain difficulty.
VB visualization and Access the power of operation, and both the advantages of simple operation, easy to master in the knitting enterprise management system development has obvious technical advantages, this article namely according to the characteristics of the knitting enterprise management, this paper introduces a management system based on VB and Access. 3.1System design This system in the Windows xp environment, database using Access 2003 established including raw material, such as inventory database, process database, database, software instead of data operation is flexible, simple, the data have a certain organizational structure, and can guarantee the integrity of the data, the security of database system, better accuracy and data processing capacity can meet the needs of small and medium-sized enterprises, also can realize the sharing of data.
Journal of shandong textile science and technology, 2010, (5) : 42 to 45
Journal of knitting industry, 2010, (9) : 4 to 6
Online since: May 2012
Authors: Quan Yu, Xiao Yu Qin, Si Yuan Zhang, Shao Ji Zhou
Materials and Procedures.
Pilgrim, in: Drying 91, edted by D.R McGraw, Elseier Science Publishers, Amsterdam (1991)
Magasinar: International Sugar Journal, Vol 98 (1996), p.18
[4] E.Hugot: Hand book of Cane Sugar Engineering ( Elseier Science Publishers, Amsterdam 1996)
Sugar Journal, (2011), p.8
Pilgrim, in: Drying 91, edted by D.R McGraw, Elseier Science Publishers, Amsterdam (1991)
Magasinar: International Sugar Journal, Vol 98 (1996), p.18
[4] E.Hugot: Hand book of Cane Sugar Engineering ( Elseier Science Publishers, Amsterdam 1996)
Sugar Journal, (2011), p.8
Online since: December 2011
Authors: Qing Ju Hao, Si Chen Liu, Qing Ling Li, Yan Shi, Chang Sheng Jiang
Materials and methods
Experimental materials.
Acknowledgment This work was jointly supported by the Key Project of Science and Technology of Chongqing Science & Technology Commission of China (CSTC, 2009AC7011 and 2010AC7006), the National Undergraduate Innovational Experimentation Program (Grant No. 101063504), and the Undergraduate Innovative “Guangjiong” training project of College of Resources and Environment, Southwest University (No. 20100310).
[6] Tao Wang, Tingfeng Liu, Zhanqi Gao, Analysis of pollution characteristics of fly ash from municipal solid waste incineration, Journal of Nanjing University (National Sciences). 44(1) (2008) 65-70
Journal of Suzhou University. 21(1) (2005) 66-70
Acknowledgment This work was jointly supported by the Key Project of Science and Technology of Chongqing Science & Technology Commission of China (CSTC, 2009AC7011 and 2010AC7006), the National Undergraduate Innovational Experimentation Program (Grant No. 101063504), and the Undergraduate Innovative “Guangjiong” training project of College of Resources and Environment, Southwest University (No. 20100310).
[6] Tao Wang, Tingfeng Liu, Zhanqi Gao, Analysis of pollution characteristics of fly ash from municipal solid waste incineration, Journal of Nanjing University (National Sciences). 44(1) (2008) 65-70
Journal of Suzhou University. 21(1) (2005) 66-70
Online since: June 2010
Authors: Yong Feng Li, Jie Xuan Deng, Shuang Gao, Xin Yao, Hong Chen
Supported: National 863 Program (2006AA05Z109), Shanghai Science and Technology Committee (071605122)
Correspondence authors: LI Yong-feng ,E-mail: dr_lyf@163.com
Materials and Methods
Microbes in Tests and CSTR The hydrogen production bacteria Biohydrogenbacterium R3 sp.nov.
Table 1 Composition of the normal molasses Component Percentage (%, w/w) Component Percentage (%, w/w) Dried materials 78-85 MgO 0.01-0.1 Total sugar 48-58 K2O 2.2-4.5 TOC 28-34 SiO2 0.1-0.5 TKN 0.2-2.8 Al2O3 0.05-0.06 P2O5 0.02-0.07 Fe2O3 0.001-0.02 CaO 0.15-0.8 Ash content 4-8 2 4 1 3 6 5 Chemical analysis The cell growth was measured in terms of dry cell weight.
Reference [1] Debabrata Das, Advances in biohydrogen production processes: An approach towards commercialization, International Journal of Hydrogen Energy, 2009 (34):7349~7357
[4] LIN Ming, REN Nan-qi, MA Xi-ping, WANG Ai-jie, MA Fang, WANG Xiang-jing, Selection and improvement of culture for hydrogen producing bacteria, Journal of Harbin Institute of Technology, 2003,35(4): 398~402
[5] State Environmental Protection Administration (SEPA), Water and Wastewater Monitoring Analysis Method(Ⅳ)(M) China Environment Science Press 2006,11: 102~210.
Table 1 Composition of the normal molasses Component Percentage (%, w/w) Component Percentage (%, w/w) Dried materials 78-85 MgO 0.01-0.1 Total sugar 48-58 K2O 2.2-4.5 TOC 28-34 SiO2 0.1-0.5 TKN 0.2-2.8 Al2O3 0.05-0.06 P2O5 0.02-0.07 Fe2O3 0.001-0.02 CaO 0.15-0.8 Ash content 4-8 2 4 1 3 6 5 Chemical analysis The cell growth was measured in terms of dry cell weight.
Reference [1] Debabrata Das, Advances in biohydrogen production processes: An approach towards commercialization, International Journal of Hydrogen Energy, 2009 (34):7349~7357
[4] LIN Ming, REN Nan-qi, MA Xi-ping, WANG Ai-jie, MA Fang, WANG Xiang-jing, Selection and improvement of culture for hydrogen producing bacteria, Journal of Harbin Institute of Technology, 2003,35(4): 398~402
[5] State Environmental Protection Administration (SEPA), Water and Wastewater Monitoring Analysis Method(Ⅳ)(M) China Environment Science Press 2006,11: 102~210.
Online since: December 2012
Authors: Chuan Min Chen, Li Xing Jiang, Song Tao Liu, Yu Ze Jiang
Control of Hg0 Re-emission from Simulated Wet Flue Gas Desulfurization Liquors by Sodium Dithiocarbamate
Chuanmin Chen1, a, Lixing Jiang1, Songtao Liu1 and Yuze Jiang2
1School of Environmental Science & Engineering, North China Electric Power University, Baoding, 071003, China
2Shandong Electric Power Research Academy, Jinan 250002, China
achuanminchen@gmail.com
Keywords: Wet flue gas desulfurization, DTCR, Hg2+ reduction, Re-emission inhibition
Abstract.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (51076045), Hebei Provincial Natural Science Foundation of China (E2012502043, B2011502027) and Fundamental Research Funds for the Central Universities.
Journal of Hazardous Materials, 2009, 172(2-3): 1106-1110
Journal of Hazardous Materials, 2011, 196(0): 160-165
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (51076045), Hebei Provincial Natural Science Foundation of China (E2012502043, B2011502027) and Fundamental Research Funds for the Central Universities.
Journal of Hazardous Materials, 2009, 172(2-3): 1106-1110
Journal of Hazardous Materials, 2011, 196(0): 160-165
Online since: October 2011
Authors: Bao Sheng Yang, Yun Yun Li
Study on The Behaviors of Steel Reinforced Concrete Cloumns
Baosheng Yang1,a, Yunyun Li2,b
1 Inner Mongolia university of science & technology, Baotou, The Inner Mongolia Autonomous Region ,010000,China
2 Inner Mongolia university of science & technology, Baotou, The Inner Mongolia Autonomous Region ,010000,China
ayangbs-tj@126.com, bliyunyun_1972@126.com,
Keywords: steel reinforced high-strength concrete, column, axial compression ratio,slenderness ratio.
Steel reinforced concrete structure is a kind of structural form which embed steel in reinforced concrete, it makes steel, reinforcement, concrete three kinds of materials work collaboratively to resist various external effects. it is also called steel reinforced concrete structure.
STUDY ON REINFORCED CONCRETED CARRYING CABACILITY OF STEEL REINFORCED CONCRETE.civil engineering journal,2000.33(5) [2] Zhaohongtie.
Science press, 2001 [3] Chengwenxiang, chengzhongfan, jianghong etc.
Dalian University of Technology Journal,2000.33(5)
Steel reinforced concrete structure is a kind of structural form which embed steel in reinforced concrete, it makes steel, reinforcement, concrete three kinds of materials work collaboratively to resist various external effects. it is also called steel reinforced concrete structure.
STUDY ON REINFORCED CONCRETED CARRYING CABACILITY OF STEEL REINFORCED CONCRETE.civil engineering journal,2000.33(5) [2] Zhaohongtie.
Science press, 2001 [3] Chengwenxiang, chengzhongfan, jianghong etc.
Dalian University of Technology Journal,2000.33(5)
Online since: October 2010
Authors: Qing Shan Shi, Shao Zao Tan, You Sheng Ouyang, Qiu Hui Yang, Ai Mei Chen, Wen Ru Li, Xiu Lin Shu, Jing Feng, Jin Feng, Yi Ben Chen
Several kinds of inorganic materials had been chosen as the carriers of copper, such as zeolite [5], montmorillonite [6], titanium dioxide [7], activated carbon fiber [8], phosphate glass fiber [9] and silicon dioxide [10].
Therefore, CuZrP-3 shows excellent antibacterial activity and water resistance and has the potential to be used in antibacterial materials and products.
Acknowledgement This work is financially supported by the National Natural Science Foundation of China (Grant Nos. 20676049, 20871058, 20971028), Foundation of Enterprise-University-Research Institute Cooperation of Guangdong Province and Ministry of Education of China (Grant Nos. 2007B090400105, 2008A010500005), and the Open Fundation of Guangdong Provincial Key Laboratory of Applied Microbiology (No.
Vol. 62(2008), p.2122 [3] S Z Tan, L C Ding, Y L Liu, Y S Ouyang and Y B Chen: Chinese Chemical Letters, Vol. 18 (1) (2007), p. 85 [4] Kawashita M, Tsuneyama S, Miyaji F, Kokubo T, Kozuka H and Yamamoto K: Biomaterials, Vol.21(4) (2000), p.393 [5] Ayben T and Semra Ü: Applied Clay Science, Vol.27 (2004), p. 13 [6] C H Hu and M S Xia: Applied Clay Science, Vol.31 (2006), p. 180 [7] Sunada K, Watanabe T and Hashimoto K: Environ.
B, Vol.110(2006), p. 24923 [11] Nishioka M, Nishimura T and Taya M: Biochemical Engineering Journal, Vol.20(2004), p.79 [12] S Z Tan, L LZhang, Y L Liu, Q S Shi, Y S Ouyang and Y B Chen: Journal of the Ceramic Society of Japan, Vol.116(2008), p.767 [13] Veríssimo C, Garrido F M S, Alves O L, Calle P, Martinez-Juarez A, Iglesias J E and Rojo J M: Solid State Ionics, Vol.100(1997), p.127 [14] Hindi K M, Ditto A J, Panzner M J, Medvetz D A, Han D S, Hovis C E, Hilliard J K, Taylor J B, Yun Y H, Cannon C L and Youngs W J: Biomaterials, Vol.30(2009), p. 3771 [15] G Ren,D Hu,E W Cheng,Vargas-Reus M A, and Reip PAllaker R P: Int.
Therefore, CuZrP-3 shows excellent antibacterial activity and water resistance and has the potential to be used in antibacterial materials and products.
Acknowledgement This work is financially supported by the National Natural Science Foundation of China (Grant Nos. 20676049, 20871058, 20971028), Foundation of Enterprise-University-Research Institute Cooperation of Guangdong Province and Ministry of Education of China (Grant Nos. 2007B090400105, 2008A010500005), and the Open Fundation of Guangdong Provincial Key Laboratory of Applied Microbiology (No.
Vol. 62(2008), p.2122 [3] S Z Tan, L C Ding, Y L Liu, Y S Ouyang and Y B Chen: Chinese Chemical Letters, Vol. 18 (1) (2007), p. 85 [4] Kawashita M, Tsuneyama S, Miyaji F, Kokubo T, Kozuka H and Yamamoto K: Biomaterials, Vol.21(4) (2000), p.393 [5] Ayben T and Semra Ü: Applied Clay Science, Vol.27 (2004), p. 13 [6] C H Hu and M S Xia: Applied Clay Science, Vol.31 (2006), p. 180 [7] Sunada K, Watanabe T and Hashimoto K: Environ.
B, Vol.110(2006), p. 24923 [11] Nishioka M, Nishimura T and Taya M: Biochemical Engineering Journal, Vol.20(2004), p.79 [12] S Z Tan, L LZhang, Y L Liu, Q S Shi, Y S Ouyang and Y B Chen: Journal of the Ceramic Society of Japan, Vol.116(2008), p.767 [13] Veríssimo C, Garrido F M S, Alves O L, Calle P, Martinez-Juarez A, Iglesias J E and Rojo J M: Solid State Ionics, Vol.100(1997), p.127 [14] Hindi K M, Ditto A J, Panzner M J, Medvetz D A, Han D S, Hovis C E, Hilliard J K, Taylor J B, Yun Y H, Cannon C L and Youngs W J: Biomaterials, Vol.30(2009), p. 3771 [15] G Ren,D Hu,E W Cheng,Vargas-Reus M A, and Reip PAllaker R P: Int.
Online since: December 2012
Authors: Yuan Hua Xie, Tong Zhu, Jin Han, Hui Liu, Xiao Jiang Liu
Materials and Methods
Experimental system.
Chiu and et al., Environmental Science and Technology. 45 (2011) 248-254
Zhao, Science of the Total Environment. 399 (2008) 121-127
Yasojima, Journal of Japan Society on Water Environment. 28 (2005) 671-676
Długoński, Journal of Hazardous Materials. 180 (2010) 323-331
Chiu and et al., Environmental Science and Technology. 45 (2011) 248-254
Zhao, Science of the Total Environment. 399 (2008) 121-127
Yasojima, Journal of Japan Society on Water Environment. 28 (2005) 671-676
Długoński, Journal of Hazardous Materials. 180 (2010) 323-331