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Online since: November 2014
Authors: Sang Bing Tsai, Yong Qiang Zhang, Shen Shi Wen, Cheng Kuang Wang, Kuo Hua Lin
Introduction Watlton et al (1998) pointed out explicitly that green supply chain includes five parts – purchasing, materials management, transportation, packaging, recycling/reverse logistics.
(Tsireme et al., 2012; Payman & Cory, 2013; Constantin, Daniel & Antony, 2014) (1) Green purchasing means that producers should, in accordance with the green manufacturing requirements, choose suppliers who can supply environment-friendly materials, so that environmentally friendly materials are used as raw materials
International Journal of Purchasing and Materials Management, 34(2), 2-11
Journal of Cleaner Production, 52(8), 329-341.
Journal of Marketing, 41 (1), 77-79
Online since: July 2011
Authors: Nan Sheng Deng, Xu Zhang
Reference material was synthesized using the same procedures but omitting cyclodextrin.
Eichen: Journal of the American Chemical Society Vol. 109(1987), p. 6862–6863
Saponjic, et al.: The Journal of Physical Chemistry B Vol. 108(2004), p. 9105 –9110
Deng: Journal of Hazardous Materials Vol. 185(2011), p. 117–123
Fujitsuka, et al.: Chemistry-A European Journal Vol. 12(2006), p. 7585–7594.
Online since: February 2011
Authors: Shou Peng Wan, Jian Ming Wang, Lei Jia, Yuan Yuan Zhang, Xing Da Lu
Materials and methods Materials Soybean were purchased from supermarket, P.camemberti,Actinomucor elegans and Rhizopus, were persevered in the laboratory Selection of the mold strains The mold strains were prepared into spore suspension and inoculated into 13% soybean milk at the concentration of 1.0×108cfu/mL.
Acknowledgements This work was supported by Tianjin Municipal Science and Technology Commission, P.
-Z., Rombouts, F.M., Nout, M.J.R., A Chinese fermented soybean food, International Journal of Food Microbiology. 65 (2001) 1–10
International dairy journal. 8(1):17-23
International Journal of Food Microbiology.65:1-10
Online since: June 2015
Authors: Azizah Hanom Ahmad, M.K. Omar, Mohamad Rusop
Journal of Power Sources, 196.pp 3342-3345 [2] M.
Glassy materials for lithium batteries: electrochemical properties and devices performances.
Journal of Power and Sources,97-98.pp 610-615 [3] T.
Journal of Non-Crystalline Solids, 176.pp 105-115 [4] A.H.
Journal of Power Sources, 146.pp 51-57 [9] W.O.
Online since: July 2016
Authors: Yi Xia Zhang, Prabin Pathak
Material Model Concrete is a quasi-brittle material with different behavior in tension and compression.
Nanni, Behavior of precracked RC beams strengthened with carbon FRP sheets, Journal of Composites for Construction. 1(1997) 63-70
Megueni, On the reduce of interfacial shear stresses in fiber reinforced polymer plate retrofitted concrete beams, Materials and Design, 31(2010) 1508-1515
Maghsoudi, Finite element and experimental serviceability analysis of HSC beams strengthened with FRP sheet, American Journal of Applied Science, 4(9)(2007) 725-735
Wu, Finite element modeling of the shear capacity of RC beams strengthened with FRP sheets by considering different failure modes, Construction and Building Materials, 59(2014) 169-179
Online since: February 2011
Authors: Lin Hua, Qing Qing Liu, Wei Guo
Characterization of materials.
Journal of materials processing technology 110(1)(2001)1-9
Journal of materials processing technology 209(2009)3894-3904
Journal of Materials Processing Technology 182(2007)418-426
Journal of Materials Processing Technology 171(2006)437-445
Online since: September 2011
Authors: Jin Liang Wu, Yong Xing Zhang, Nian Peng
Since the composition of materials and geotechnical constitutive complexity, coupled with the particularity of seismic random loads in seismic shaking ,cause slope stability under earthquake research has become very complicated.
Fig4 Relation curve of dry density versus water content Calculation result analysis Fig5 El centro seismic,filling materials of type I,large,medium and small earthquake slope factor of safety vs. time curve Fig6 El centro seismic,filling materials of type II,large,medium and small earthquake slope factor of safety vs. time curve Fig7 El centro seismic,filling materials of type III,large,medium and small earthquake slope factor of safety vs. time curve Fig8 El centro seismic,filling materials of type IV,large,medium and small earthquake slope factor of safety vs. time curve AS the same analysis, slope stability safety coefficient can be obtained when the El centro wave was inputted , as shown in table 2: Table 2 Enter El centro seismic, with the dynamic finite element method to calculate the stability of the safety factor summary tables Filling Without seismic damage Safety factor K Safety coefficient reducing rates (%) 0.0g 0.1g 0.2g 0.4g 0.1g 0.2g 0.4g I 1.307
Journal of hydraulic engineering, 1999 (11), 66-71
Deep cover layer of high earth-rock DAMS on the dynamic stability analysis of rock mechanics [J].journal of engineering journal; 2005,24 (12)
Beijing: science press, 2002 [8] ZhaoJianFeng DuXiuLi, HanJiang, LiLiYun.
Online since: July 2014
Authors: Chun Neng Wang, Xi Ying Fan
Acknowledgements This project was financially supported by Xuzhou City Science and Technology Plan Project (Nos.
Lo: Journal of Materials Processing Technology, Vol. 209(2009) No.7, p.3469
Uzman: Materials & Design, Vol. 28 (2007) No.4, p.1271
Altan: Materials & Design, Vol. 31 (2010) No.1, p.599
Wang: Journal of Materials Processing Technology, Vol. 209 (2009) No.3, p.1302
Online since: October 2011
Authors: Jiong Yin, Wen Jing Zhu, Zheng Qiang Peng, Jing Lin Gao, Dong Xiang Zhao, Yu Jie Wang
Materials and methods 2.1 Insect All experimental adult T. papillosa were collected from lychee orchards at University of Hainan, Danzhou city, China (109 ° E, 19 ° N).
Journal of Plant Protection, 1965, 4(4): 329-339
Science Publishers, Inc. 2002: 153-230
Science, 1995, 269(5222): 347-350
Journal of Chemical Ecology, 1994, 20(1): 71-80
Online since: September 2013
Authors: Yan Qin Zhang, Yong Zhi Qu, Zhao Yue Shen, Wen Qiang Wu, Fan Biao Wu, Lei Yang Xu
Kim: Journal of Mechanical Engineering Science, Vol. 218 (2004), pp.309-316
[2] Okahata, Go, Okuyama, Shigeki: Advanced Materials Research, Vol. 325 (2011), pp.357-362
Zhang: Key Engineering Materials, Vol. 450 (2010), pp.63-66
Shao: Journal of Hydrodynamics, Vol. 23 (2011), pp.676-680
Yu: Advanced Science Letters, Vol. 4 (2011), pp.2738-3741.
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