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Online since: August 2011
Authors: Jian Bo Jia, Yong Yang
Preparation of Crayfish Flavoring by Fermentation
Jia Jianbo1, a, Yang Yong1, b
1School of Life Science and Chemical Engineering, Huaiyin Institute of Technology,
Huaian, China 223001
ajjb_008@163.com, byongyang@hyit.edu.cn
Keywords: Lactobacillus helveticus; fermentation; enzymatic hydrolysis; crayfish flavoring
Abstract.
Materials and Methods Materials.
Chinese Journal of Analytical Chemistry, Vol. 2 (1998), p. 183
Food Science, Vol. 29 (2008), p. 196
Chinese Pharmacopoeia (China Medico-Pharmaceutical Sciences & Technology Publishing House, China 2010).
Materials and Methods Materials.
Chinese Journal of Analytical Chemistry, Vol. 2 (1998), p. 183
Food Science, Vol. 29 (2008), p. 196
Chinese Pharmacopoeia (China Medico-Pharmaceutical Sciences & Technology Publishing House, China 2010).
Online since: December 2010
Authors: Pei Yan Huang, Jian He Xie, Jin Xia Zhao
Acknowledgments
This study is supported by Supported by Guangdong Province Science Foundation for Doctor (No.10451009001004769), National Natural Science Foundation of China (No.10802023 and No.51078145), and Key Project of Guangdong Province Science Foundation (No.9251064101000016).
Construction and Building Materials.
International Journal of Materials and Product Technology.
Construction and Building Materials.
International Journal of Materials and Product Technology.
Online since: January 2011
Authors: Yasuyoshi Fukui, Hiroshi Okada, Takashi Tokuda, Hiroshi Kawai
The material is assumed to be an aluminium alloy and its Young modulus and Poisson ratios are set to be 70600 MPa and 0.3, respectively.
The rate of crack propagation is determined by the equivalent amplitude of fluctuations of the stress intensity factors, as written below: , (,) (2) and are the material constants in Paris law.
Nakaoka of Tokyo University of Science as a part of his bachelor project study.
Kikuchi: JSME Journal of Solid Mechanics and Materials Engineering Vol. 1 (2007), p. 699 [9] T.
Kamibeppu: Computer Modeling in Engineering & Sciences Vol. 10 (2005), p. 229 [18] H.
The rate of crack propagation is determined by the equivalent amplitude of fluctuations of the stress intensity factors, as written below: , (,) (2) and are the material constants in Paris law.
Nakaoka of Tokyo University of Science as a part of his bachelor project study.
Kikuchi: JSME Journal of Solid Mechanics and Materials Engineering Vol. 1 (2007), p. 699 [9] T.
Kamibeppu: Computer Modeling in Engineering & Sciences Vol. 10 (2005), p. 229 [18] H.
Online since: January 2014
Authors: Xi Zhang, Wei Guang Li, Chang Yong Ye, Wan Yi Yang
Modified asphalt is a kind of new road materials with high quality.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant No. 51108374) and the Special Fund for the committee of science and technology of Ningbo transportation (Grant No. 201311).
Journal of Chang’an University, 2007, 27(6): 6-10
Holland: Elsevier Science B.V. 2001: 105-114
NEW BUILDING MATERIALS.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant No. 51108374) and the Special Fund for the committee of science and technology of Ningbo transportation (Grant No. 201311).
Journal of Chang’an University, 2007, 27(6): 6-10
Holland: Elsevier Science B.V. 2001: 105-114
NEW BUILDING MATERIALS.
Online since: January 2014
Authors: Wen Sheng Linghu, Chao Wang
Many materials have been used as adsorbents, such as activated carbon, silicon, diatomite and molecular sieve, etc [3,4].
All other materials used in experiment were of analytical grade.
Table 2 Qe value at different temperature and pH Temperature oC pH = 3.0 pH = 4.0 Pb2+ Cu2+ Ni2+ Zn2+ Pb2+ Cu2+ Ni2+ Zn2+ 25 5.3 7.0 5.4 6.6 6.2 7.5 5.7 6.8 35 5.0 6.8 5.2 6.3 6.0 7.2 5.5 6.4 45 4.6 5.9 4.3 5.0 5.1 6.2 4.3 5.1 Fig 2 Effect of initial concentration of metal ions on the adsorption of heavy metals Acknowledgements The financial support by the National Natural Science Foundation of China (No. 21143003, No. 21107073) and the Natural Science Foundation of Zhejiang province (No.
Horng: Journal of University of Science and Technogy Beijing Vol. 14 (2007), p. 77 [5] H.
All other materials used in experiment were of analytical grade.
Table 2 Qe value at different temperature and pH Temperature oC pH = 3.0 pH = 4.0 Pb2+ Cu2+ Ni2+ Zn2+ Pb2+ Cu2+ Ni2+ Zn2+ 25 5.3 7.0 5.4 6.6 6.2 7.5 5.7 6.8 35 5.0 6.8 5.2 6.3 6.0 7.2 5.5 6.4 45 4.6 5.9 4.3 5.0 5.1 6.2 4.3 5.1 Fig 2 Effect of initial concentration of metal ions on the adsorption of heavy metals Acknowledgements The financial support by the National Natural Science Foundation of China (No. 21143003, No. 21107073) and the Natural Science Foundation of Zhejiang province (No.
Horng: Journal of University of Science and Technogy Beijing Vol. 14 (2007), p. 77 [5] H.
Online since: December 2010
Authors: Jian Ping Hu, Jia Guo Zhu
Acknowledgment
Project is supported by National Natural Science Foundation of China (No. 61071049), Scientific Research Fund of Zhejiang Provincial Education Department (No.
Z200908632), and supported by Ningbo Natural Science Foundation (No. 2009A610066).
Jeong: IEEE Journal of Solid-State Circuits, Vol. 33 (1998), p. 696
Hu: Advanced Materials Research, Vols. 121-122 (2010), p. 281
Su: Applied Mechanics and Materials, Vols. 29-32 (2010), p. 1930.
Z200908632), and supported by Ningbo Natural Science Foundation (No. 2009A610066).
Jeong: IEEE Journal of Solid-State Circuits, Vol. 33 (1998), p. 696
Hu: Advanced Materials Research, Vols. 121-122 (2010), p. 281
Su: Applied Mechanics and Materials, Vols. 29-32 (2010), p. 1930.
Online since: February 2014
Authors: Qi Zhou, Yue Wen, Ning Ding, Li Han
Materials and Methods
Reactors.
PCRRK09004), the National Science Foundation of China (51078284), and the Key Special Program on the S&T for the Pollution Control and Treatment of Water Bodies of China (2011ZX07303-002).
[6] Cervantes F.J., Enriquez J.E., Mendoza-Hernandez M.R., Razo-Flores E. and Field J.A., The role of sulphate reduction on the reductive decolorization of the azo dye reactive orange 14, Water Science & Technology 54(2006) 171–177
[10] Lin S., Wang Y. and Yen C., Kinetic theory of biostimulation for azo dye decolorization using immobilized cell system, Journal of the Taiwan Institute of Chemical Engineers 43(2012) 399-408
[12] Ding N., Huang J., Wen Y. and Zhou Q., Comparison of different types of redox mediators on the chemical reduction of azo dye by sulfide, Advanced Materials Research 518-523 (2012) 289-294.
PCRRK09004), the National Science Foundation of China (51078284), and the Key Special Program on the S&T for the Pollution Control and Treatment of Water Bodies of China (2011ZX07303-002).
[6] Cervantes F.J., Enriquez J.E., Mendoza-Hernandez M.R., Razo-Flores E. and Field J.A., The role of sulphate reduction on the reductive decolorization of the azo dye reactive orange 14, Water Science & Technology 54(2006) 171–177
[10] Lin S., Wang Y. and Yen C., Kinetic theory of biostimulation for azo dye decolorization using immobilized cell system, Journal of the Taiwan Institute of Chemical Engineers 43(2012) 399-408
[12] Ding N., Huang J., Wen Y. and Zhou Q., Comparison of different types of redox mediators on the chemical reduction of azo dye by sulfide, Advanced Materials Research 518-523 (2012) 289-294.
Online since: February 2014
Authors: Quan You Zhang, Wei Yi Chen, Yong Sheng Li
Materials and methods
Experimental procedure
Cell culture and isolation
Chondrocytes were isolated from articular cartilage of the femoral condyle of normal Wistar rabbits from a local abattoir (N=8, ages 3~5 month old) immediately after sacrifice.
Acknowledgements This study is supported by a grant from the National Science Foundation of China (NSFC 11032008) and a grant from the Youth Fund of Taiyuan University of Technology.
Wei: Chinese Journal of Theoretical and Applied Mechanics Vol. 39 (2007), p. 517-521 (In Chinese) [6] Q.Y.
Quek: Mechanics of Advanced Materials and Structures Vol. 12 (2005), p. 501-512 [20] F.P.T.
Chen: Science China-Physics Mechanics & Astronomy Vol. 56 (2013), p.2208-2215 [22] Q.Y.
Acknowledgements This study is supported by a grant from the National Science Foundation of China (NSFC 11032008) and a grant from the Youth Fund of Taiyuan University of Technology.
Wei: Chinese Journal of Theoretical and Applied Mechanics Vol. 39 (2007), p. 517-521 (In Chinese) [6] Q.Y.
Quek: Mechanics of Advanced Materials and Structures Vol. 12 (2005), p. 501-512 [20] F.P.T.
Chen: Science China-Physics Mechanics & Astronomy Vol. 56 (2013), p.2208-2215 [22] Q.Y.
Online since: February 2011
Authors: Qiang Li, Hui Zhao, Xiao Juan Qi, Li Hua Huo, Shan Gao
Introduction
Phthalocyanines, with excellent thermal and chemical stability due to its special macro-cycle conjugation structure, have received extensive research and used in such many aspects as dye, photocatalysis, medical science, organic semiconductor, sensor, photoelectricity, etc. [1, 2].
The metal phthalocyanine (MPc) is a p-type organic semiconductor material, which has exhibited a high sensitivity to harmful gases [3, 4].
This is because that metal phthalocyanines are p-type organic semiconductor materials, it is easy for the phthalocyanines to adsorb the electronic acceptor gases.
Acknowledgements The Project was supported by Heilongjiang Educational Department (1152G027, 11531274), Foundation of Heilongjiang Province Postdoctoral (LBH-Z09019), China Postdoctoral Science Foundation (20100471116).
Chen: Journal of East China University of Science and Technology Vol. 23 (1997) p550 [17] R.
The metal phthalocyanine (MPc) is a p-type organic semiconductor material, which has exhibited a high sensitivity to harmful gases [3, 4].
This is because that metal phthalocyanines are p-type organic semiconductor materials, it is easy for the phthalocyanines to adsorb the electronic acceptor gases.
Acknowledgements The Project was supported by Heilongjiang Educational Department (1152G027, 11531274), Foundation of Heilongjiang Province Postdoctoral (LBH-Z09019), China Postdoctoral Science Foundation (20100471116).
Chen: Journal of East China University of Science and Technology Vol. 23 (1997) p550 [17] R.
Online since: February 2006
Authors: Hong Jun Xu, Yu Can Fu, Jiu Hua Xu, Qing Long An
Acknowledgements
We would like to acknowledge the financial support of Aviation Science Foundation of China
(Grant No.02H52042) and Natural Science Foundation of Jiangsu Province of China (Grant
No.BK2002415).
Fu, et al: Science in China Series E 2002, Vol. 45 (2002), pp.261
Kang et al: Grinding of Difficult-to-cut Materials, (Press of National Defense Industry, China 1996).
Zhang: Journal of Materials Processing Technology, Vol.140 (2003), pp.224
Fu, et al: Science in China Series E 2002, Vol. 45 (2002), pp.261
Kang et al: Grinding of Difficult-to-cut Materials, (Press of National Defense Industry, China 1996).
Zhang: Journal of Materials Processing Technology, Vol.140 (2003), pp.224