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Online since: December 2012
Authors: Hong Yang, Li Li Ding
The response of Ruditapes philippinarum for thermal discharge
Hong Yang1, a, Lili Ding2,b
1College of Marine Sciences,Shanghai Ocean University, Shanghai, China
2College of Marine Sciences,Shanghai Ocean University, Shanghai, China
ahyang@shou.edu.cn, bdinglili0420@foxmail.com
Keywords: Ruditapes philippinarum,thermal shock, residual chlorine, toxic experiment.
Materials and methods Ruditapes philippinarum used in the experiment were purchased in Huinan Market, Pudong New Area, and Shanghai, China.
References [1] Hong Yang,Chunxin Li,Chunsheng Yin and Ming Chu:Journal Of Fisheries Of China Vol.35(7)(2011), p.1030.
[2] Zefu Cai,Hong Yang,Junpeng Jiao,Lili Ding,Jun Ding,Guixiang Dai and Junlin Ma:Journal Of Fisheries Of China Vol.35(8)(2011), p.1240.
[6] Lanfen Liu,Hong Hao and Guangsi Lu:Journal Of Hydraulic Engineering Vol.5(2004),p.94.
Materials and methods Ruditapes philippinarum used in the experiment were purchased in Huinan Market, Pudong New Area, and Shanghai, China.
References [1] Hong Yang,Chunxin Li,Chunsheng Yin and Ming Chu:Journal Of Fisheries Of China Vol.35(7)(2011), p.1030.
[2] Zefu Cai,Hong Yang,Junpeng Jiao,Lili Ding,Jun Ding,Guixiang Dai and Junlin Ma:Journal Of Fisheries Of China Vol.35(8)(2011), p.1240.
[6] Lanfen Liu,Hong Hao and Guangsi Lu:Journal Of Hydraulic Engineering Vol.5(2004),p.94.
Online since: August 2013
Authors: Bao Yang Yu, Hong Yu Ding, Jia Yu Tian
Journal of China Science and Technology Information, 2010, 12(14):244-247. in China
Determination of weighing values for assessment indexes of engineering materials based on analytic hierarchy procedure[J].
Journal of Lanzhou University of Technology, 2007, 33(2):17-19. in China
Journal of Sichuan Teachers College: Natural Science, 2009, 23(3):282-285.), in China
China Soft Science, 2004, (6):135-138. in China
Determination of weighing values for assessment indexes of engineering materials based on analytic hierarchy procedure[J].
Journal of Lanzhou University of Technology, 2007, 33(2):17-19. in China
Journal of Sichuan Teachers College: Natural Science, 2009, 23(3):282-285.), in China
China Soft Science, 2004, (6):135-138. in China
Online since: February 2012
Authors: Rong Liu, Zhi Qin Yang, Hao Guan
Deactivation Mechanism of SCR Catalyst Based on Nano-ZrO2
Rong Liu1, a, Zhiqin Yang2,b, Hao Guan3,c
1,2,3School of Geography Science, Nanjing Normal University, Nanjing 210042, China
aliurongle@163.com, byangzhiqin200@163.com,clandongkobe@126.com
Keywords: selective catalytic reduction (SCR), Zirconia nanoparticles, inactivation, SO2
Abstract.
In this study, due to the way by which water vapor is introduced, the characteristic peaks of water in the spectrum (a) ~ (d) are crystal water of the catalyst material.
Acknowledgements Supported by University Nature Science Foundation of Jiangsu Province,No. (008112TSJ0125) References [1] X.X.
[4] Wang Jing, Shen Boxiong, Liu Ting and Tian xiaojuan, Deactivation and Regeneration of SCR Catalyst Based on V2O5-TiO2, Environmental Science & Technology.33 (2010) 97-101 [5] B.
Applied Catalysis B: Environmental.7 (1996) 337-357 [7] G.S.Qi, R.T.Yang and R.Chang, MnOx-CeO2 Mixed Oxides Prepared by Co-precipitation for Selective Catalytic Reduction of NO with NH3 at Low Temperatures, Applied Catalysis B: Environmental. 51 (2004) 93-106 [8] J.H.Huang, H.Tong, Z.Q.Tong, J.F.Zhang and Y.Huang, Effects of H2O and SO2 on Mn-Fe/MPS Catalyst for NO Reduction by NH3 at Lower Temperatures, The Chinese Journal of Process Engineering. 8 (2008) 517-522 (In Chinese) [9] Z.Q.Yang, F.Yang and R.Liu, The Influence of Temperature on Zirconia Nanoparticles,Journal of Nanjing Normal University.10 (2010) 49-53(In Chinese) [10] Z.Xun, Study on Reduction of NO with Mn-Fe-Ce/TiO2 as Catalyst at Low Temperature and Molding of Catalyst.
In this study, due to the way by which water vapor is introduced, the characteristic peaks of water in the spectrum (a) ~ (d) are crystal water of the catalyst material.
Acknowledgements Supported by University Nature Science Foundation of Jiangsu Province,No. (008112TSJ0125) References [1] X.X.
[4] Wang Jing, Shen Boxiong, Liu Ting and Tian xiaojuan, Deactivation and Regeneration of SCR Catalyst Based on V2O5-TiO2, Environmental Science & Technology.33 (2010) 97-101 [5] B.
Applied Catalysis B: Environmental.7 (1996) 337-357 [7] G.S.Qi, R.T.Yang and R.Chang, MnOx-CeO2 Mixed Oxides Prepared by Co-precipitation for Selective Catalytic Reduction of NO with NH3 at Low Temperatures, Applied Catalysis B: Environmental. 51 (2004) 93-106 [8] J.H.Huang, H.Tong, Z.Q.Tong, J.F.Zhang and Y.Huang, Effects of H2O and SO2 on Mn-Fe/MPS Catalyst for NO Reduction by NH3 at Lower Temperatures, The Chinese Journal of Process Engineering. 8 (2008) 517-522 (In Chinese) [9] Z.Q.Yang, F.Yang and R.Liu, The Influence of Temperature on Zirconia Nanoparticles,Journal of Nanjing Normal University.10 (2010) 49-53(In Chinese) [10] Z.Xun, Study on Reduction of NO with Mn-Fe-Ce/TiO2 as Catalyst at Low Temperature and Molding of Catalyst.
Online since: June 2013
Authors: Li Teh Lu, Tai Yi Yu, Yu Jie Chang, Che Ri E Lu
Pierce: Lecture Notes in Computer Science, Vol. 1281.
[3] J. van Leeuwen: Lecture Notes in Computer Science, Vol. 1000, Springer-Verlag, Berlin Heidelberg New York (1995)
Tezuka:Asian Journal on Energy and Environment(2007), p.503
Ma: International Journal of Life Cycle Assessment (2011), p.19
Kijima: Journal of Economic Dynamics & Control (2007), p.3478 [8] P.J.
[3] J. van Leeuwen: Lecture Notes in Computer Science, Vol. 1000, Springer-Verlag, Berlin Heidelberg New York (1995)
Tezuka:Asian Journal on Energy and Environment(2007), p.503
Ma: International Journal of Life Cycle Assessment (2011), p.19
Kijima: Journal of Economic Dynamics & Control (2007), p.3478 [8] P.J.
Online since: July 2011
Authors: Yue Li, Zhuo Wang, Jun Sheng Hu
Study on photocatalytic degradation of acid red 3R by Titanium dioxide coupling with magnetic field[J].Journal of Xi'an Jiaotong University, 2007,40 (7):851-855
Environmental Science and Technology, 2002, 25 (l):11-12
Photoelectric degradation of reactive brilliant red X-3B on three different anodes[J].Chinese Journal of Catalysis,2005,26 (7):557-562
Anodic destruction of 4-chlorophenol solution [J].Hazardous Materials, 2000, 75 (1):99-113
Science&Technology in Chemical Industry, 2010,18 (2):5-8
Environmental Science and Technology, 2002, 25 (l):11-12
Photoelectric degradation of reactive brilliant red X-3B on three different anodes[J].Chinese Journal of Catalysis,2005,26 (7):557-562
Anodic destruction of 4-chlorophenol solution [J].Hazardous Materials, 2000, 75 (1):99-113
Science&Technology in Chemical Industry, 2010,18 (2):5-8
Online since: August 2013
Authors: Shan Shan Lu, Ling Quan Dai, Jing Qiao Mao, Hui Chao Dai
Materials and Methods
1.1.
Acknowledgment This work was financially supported by the National Science Fund for Distinguished Young Scholars (No. 50925932) and National Natural Science Foundation of China (No. 51279047).
Dai: Journal of Food Agriculture & Environment Vol. 11 (2013), p. 896 [5] W.
Xia,et al: Journal of Hohai University(Natural Sciences) Vol. 35 (2004), p. 92 [6] D.G.
Journal of Food Agriculture & Environment Vol. 10 (2012), p. 1174
Acknowledgment This work was financially supported by the National Science Fund for Distinguished Young Scholars (No. 50925932) and National Natural Science Foundation of China (No. 51279047).
Dai: Journal of Food Agriculture & Environment Vol. 11 (2013), p. 896 [5] W.
Xia,et al: Journal of Hohai University(Natural Sciences) Vol. 35 (2004), p. 92 [6] D.G.
Journal of Food Agriculture & Environment Vol. 10 (2012), p. 1174
Online since: October 2011
Authors: Wu Liang Peng, Pu Yu Yuan
Apart from the coal transportation system are two main transport and tunneling stone cargo flow, there are also materials (including equipment) and personnel transport stream transport stream, etc.; ventilation system including air intake and return air, it should adjust the air flow; the two large-scale systems are systems for the mining services to ensure smooth production.
Acknowledgment This research was funded by National Natural Science Foundation of China under Grant No.71071100 Reference [1] McEntire, International Journal of Emergency Management, Vol. 1(2003), p. 298-308
[2] J.L.Wybo, K.M.Kowalski, Safety science, Vol(30), p.131
Jonathan, American Journal of Preventive Medicine, Vol.28(2005), p.390
Dymon, International Journal of emergency Management, Vol. 1(2003), p. 227.
Acknowledgment This research was funded by National Natural Science Foundation of China under Grant No.71071100 Reference [1] McEntire, International Journal of Emergency Management, Vol. 1(2003), p. 298-308
[2] J.L.Wybo, K.M.Kowalski, Safety science, Vol(30), p.131
Jonathan, American Journal of Preventive Medicine, Vol.28(2005), p.390
Dymon, International Journal of emergency Management, Vol. 1(2003), p. 227.
Online since: November 2012
Authors: Yong Jun Deng, Dai Guo Chen, Hai Jun Wang, Yong Yao
Damper parameters are shown in Table 2, HADAS and the support installed in series in the structure, the materials of support is Q235, the cross section is the HW250x250x6x8 H beam (Figure3).
Journal of Building Structures, 2008, (4):1-9
[2] WANG Yayong.Lessons learn from building damages in the Wenchuan earthquake [J].Journal of Building Structures, 2008, 29(4):26-33
Science press [M].2006
Optimal Placement of Viscoelastic Dampers for Passive Response Control [J].Journal of Vibration and Shock.
Journal of Building Structures, 2008, (4):1-9
[2] WANG Yayong.Lessons learn from building damages in the Wenchuan earthquake [J].Journal of Building Structures, 2008, 29(4):26-33
Science press [M].2006
Optimal Placement of Viscoelastic Dampers for Passive Response Control [J].Journal of Vibration and Shock.
Online since: November 2012
Authors: Zhen Jie Qian, Ding Guo Zhang
Impact Dynamics of Multi-link Robots with Link and Joint Flexibility
Zhenjie Qian 1, Dingguo Zhang1,a
1School of Sciences, Nanjing University of Science and Technology, Nanjing 210094, PR China
a zhangdg419@mail.njust.edu.cn
Keywords: Impact, Flexible-joint, Flexible-link, Dynamics
Abstract.
Thus, the elastic potential energy of the system is, (6) where is Young’s modulus of the material, is the shear modulus of the material; is the polar area moment of inertia of the link’s cross section about the neutral axis, and are the area moments of inertia of the link’s cross section about the and axes, respectively.
ASME Journal of Mechanical Design.
Chinese Journal of Theoretical and Applied Mechanics.Vo1.43(2011).NO.5. p.886.
Journal of Mechanical Engineering.
Thus, the elastic potential energy of the system is, (6) where is Young’s modulus of the material, is the shear modulus of the material; is the polar area moment of inertia of the link’s cross section about the neutral axis, and are the area moments of inertia of the link’s cross section about the and axes, respectively.
ASME Journal of Mechanical Design.
Chinese Journal of Theoretical and Applied Mechanics.Vo1.43(2011).NO.5. p.886.
Journal of Mechanical Engineering.
Online since: October 2012
Authors: Yun Fei Zhong, Lu Jing Fu, Tao Zhou
Based on Median Pyramid Transform of the Color Image Inverse Halftoning
Yunfei Zhong1,a, Lujing Fu2,b and Tao Zhou1,a
1School of Packaging and Materials Engineering, Hunan University of Technology
Zhuzhou 412007, China
2School of Internet of Things, Jiangnan University, Wuxi 214122, China
amaczone@163.com, bkuaileangle0415@163.com
Keywords: Pyramid Transform, Median Filter, Inverse Halftoning, Color Printing.
Acknowledgment This work is supported by Natural Science Research Project of Hunan University of Technology (Grant No. 2011HZX03), Science and Technology Planning Project of Hunan Province (Grant No. 2011GK3079), Natural Science Foundation of China (Grant No. 61171192), College Students Research Learning and Innovative Experiment Plan Project of Hunan Province (Grant No. [2011]272).
Zeng: Journal of Xi’an Jiaotong University , Vol. 39 (2005) No.2, pp.1340-1343.
Naouma: Internation Journal of Electronics and Communications, Vol. 59 (2005), pp.128-133
Zhang: Journal of Xidian University, Vol. 33 (2006) No.3, pp.917-921.
Acknowledgment This work is supported by Natural Science Research Project of Hunan University of Technology (Grant No. 2011HZX03), Science and Technology Planning Project of Hunan Province (Grant No. 2011GK3079), Natural Science Foundation of China (Grant No. 61171192), College Students Research Learning and Innovative Experiment Plan Project of Hunan Province (Grant No. [2011]272).
Zeng: Journal of Xi’an Jiaotong University , Vol. 39 (2005) No.2, pp.1340-1343.
Naouma: Internation Journal of Electronics and Communications, Vol. 59 (2005), pp.128-133
Zhang: Journal of Xidian University, Vol. 33 (2006) No.3, pp.917-921.