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Online since: April 2014
Authors: Salam K. Al-Dawery
Introduction Various methods have been proposed to treat the water/wastewater contaminated with organic compounds, the use of granular activated carbon (GAC) is a most common and widely preferred material due to its high surface area, low specificity, high removal efficiency and fast adsorption kinetics.
References [1] Kaushal Naresh Gupta, Nandagiri Jagannatha Rao, and Govind Kumar Agarwal, Adsorption of Toluene on Granular Activated Carbon, International Journal of Chemical Engineering and Applications, Vol. 2 , No. 5 , (2011) 352-358
Gupta, Removal of volatile organic compounds by cryogenic condensation followed by adsorption Chemical Engineering Science 57 (2002) 2679 – 2696 [3] C.
Balasubramanian, Electrochemical regeneration of granular activated carbon saturated with organic compounds, Chemical Engineering Journal [8] E.P.L.
Al-Dawery “Photocatalyzed Degradation of Tartrazine in Wastewater Using TiO2 and UV Light”, Journal of Engineering Science & Technology, Volume 8, Issue 6, (2013) 693-702
Online since: January 2013
Authors: Gang Xu, Tian Li Li, Li Cun Fang
SAW sensor analyses of simulation results The velocity of the SAW on the piezoelectric substrate material is 3472 m/s, the IDT consists of 50 pairs of electrodes, each reflector include 100 gridlines, the width and spacing of the IDT and the reflective finger are 2 μm, The center distances between the IDT and the two reflectors are 2000μm and 4,000 μm separately.
Journal of Zhejiang University(Engineering Science), 2011, 45(11): 2068-2072.
Chinese Journal of Biomedical Engineering, 2010, 29(4): 601-606.
Chinese Journal of Sensor Technology. 2011, 24(4). 498-502.
Journal of Tsinghua University(Science and Technology), 2001, 41(11):45-48.
Online since: November 2012
Authors: De Sheng Yin, Wei Xing Qing
For the complexity of the material property, it is scarcely to simulate this physical phenomenon in the laboratory.
Chinese Journal of Rock Mechanics and Engineering, 1994, 13(4):299-308.
Journal of Hydraulic Engineering, 1998, (7): 55-59.
Journal of Wuhan Univ. of Hydr. and Elec.
Rock Mechanics[M].New York:Elsevier Science, 1974 [9] Nelson.
Online since: March 2015
Authors: Juan Wang, Jun Qiang Li, Zhi Wei Gao
Acknowledgements This work was financially supported by National Natural Science Foundation of China (No.61105104 and No.11102057).
Ahn: Journal of Mechanical Science and Technology, Vol. 23 (2009), p.1911 [2] Z.
Li: Journal of Harbin Institute of Technology, Vol. 39 (2007), p.1732 ( In Chinese) [5] D.
Zhao: Journal of Mechanical Engineering, Vol. 46 (2010), p.177 ( In Chinese) [7] Q.H.
Preumont: Journal of Intelligent Material Systems and Structures, Vol. 21(2010), p.1543
Online since: October 2013
Authors: Qian Qian Liu, Shan Liu, Rui Li
Bulletin of Chinese Academy of Sciences.1992.(2):119-123
Journal of Hydraulic Engineering.1996.14(2):26-33
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Journal of the China Railway Society.12.2010
Online since: January 2014
Authors: Dong Sheng Shen, Yao Ying Huang, Xiao Man Lv, Kai Ping Tian
Acknowledgements: The research was supported by National Natural Science Foundation of China (No.51209124) References [1]Zhu B.F.1999.
Chinese Journal of Rock Mechanics and Engineering 31(1):113-122 [5]Zhu, B.F.2010.
Journal of Hohai university 30(2):101-104 [7]Huang Y.Y., Zhou S.W., and Fu X.F.
Journal of Sichuan University (Engineering Science Edition) 45(4):34-38 [8]Zhang G.X., Liu Y., and Jie M. et.al. 2012.
Journal of hydroelectric engineering 31(4):201-205 [9]Zhu B.F., and Xu P. 2004.
Online since: December 2014
Authors: Zhi Yun Wang, Lu Shen, Lin Ping Yu, Xiao Long Ma
Acknowledgment This study was funded by the National Science Foundation of China(51209028).This support is gratefully acknownledged.
Henan Science. 2012(30): 1085-1088.
Chinese Journal of Rock Mechanics and Engineering,2010(29):3865-3870.
Chinese Journal of Rock Mechanics and Engineering.2006,25(S1):3245-3249.
Chinese Journal of Geotechnical Engineering, 2009, 31(4): 622-627.
Online since: August 2014
Authors: Yong Zhi Cai
Research of Ni-Mn-Ga Shape Memory Alloy based Mechanical Vibration Detection Device Yongzhi Cai Liao ning Institute of Science and Technology, Benxi , China Email: caiding1970@126.com Keywords: Ni-Mn-Ga, Martensitic phase transformation, magnetoelastic, vibration Abstract.
This material is a type of material which exhibit strains under the influence of an applied magnetic field; they produce much larger strains by twinning, sometimes as large as 9%.
JIM, Material Transactions. 2000 , 41 (8) : 933 [2] B.
Soft Tetragonal Distortion in Ferromagnetic Ni2MnGa and Related Materials from First Principles.
Advanced Materials and Processes (J).
Online since: March 2014
Authors: Kazuaki Shiozawa, Tsuyoshi Fukumori, Atsushi Ikeda
The shape of S-N diagram depended on a kind of tested materials, applied stress ratio and loading mode.
The chemical composition of these materials is listed in Table 1.
Table 2 Mechanical properties of materials tested.
References [1] S.Kleiner and P.J.Uggowitzer, Mechanical anisotropy of extruded Mg-6%Al-1%Zn alloy, Materials Science and Engineering, A379 (2004) 258-263
[4] H.Zenner, and F.Renner, Cyclic material behaviour of magnesium die castings and extrusions, International Journal of Fatigue, 24 (2002) 1255-1260
Online since: October 2017
Authors: Lukas Baier, Toni Donhauser, Jörg Franke, Peter Schuderer
In addition to already mentioned technical restrictions exceptionally high stocks are necessary as it is common practice among building contractors to buy required building materials spontaneously rightat the plant if an unexpected demand occurs.
Donhauser et al., Simulation-Based Optimization of the Energy Consumption in the Hardening Process for Calcium Silicate Masonry Units, in: Applied Mechanics and Materials, volume 805, (2015), pp. 249-256
Simon,A Linear Decision Rule for Production and Employment Scheduling, in: Management Science, volume 2, no. 1, (1955), pp. 1-30
Whitin, Dynamic Version of the Economic Lot Size Model, in: Management Science, volume 5, no. 1, (1958), pp. 89-96
Manne, Programming of Economic Lot Sizes, in: Management Science, volume 4, no. 2, (1958), pp. 115-135