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Online since: December 2012
Authors: Hong Lu, Jing Wang, Guang Fei Liu
Azo Dyes Biodegradation Based on Silicone Membrane-Aerated Bioreactor Jing Wang* a, Hong Lu, Guangfei Liu School of Environmental Science and Technology, Dalian University of Technology, Dalian, China aemail: jwang@dlut.edu.cn Keywords: Membrane-aerated bioreactor; Azo dyes; Biodegradation; Auto-oxidation.
Materials and methods Chemicals.
Acknowledgements The authors gratefully acknowledge the financial support from National Natural Science Foundation of China (No. 50978040; 210 77021).
Field, Water Science and Technology.
Zhou, Journal of Hazardous Materials.
Online since: November 2016
Authors: Hui Zhang, Jia Min Hu, Xian Kun Ji, Ding Fa Fu, Fu Lin Jiang
Progress in Materials Science. 2006;51:881-981
Progress in Materials Science. 2008;53:893-979
Materials Science and Engineering: A. 2004;382:30-4
Materials Science and Engineering: A. 2014;612:131-9
Progress in Materials Science. 2014;60:130-207
Online since: October 2010
Authors: Yasushi Niitsu, Kazuhiko Nitto, Naohito Kawai, Hideyuki Maekawa, Masayuki Morii, Toshikazu Hanazato, Chikahiro Minowa
However, owing both to the excellent properties of the original materials, in particular, Japanese Hinoki tree, and to the good conditions at the site, approximately 80% of the timbers materials are surviving from the original construction.
In order to solve this problem, the light materials of bark or bronze plate were usually used after the medieval period as the roofing materials for new construction of pagodas.
This alteration of roofing materials also might contribute to improvement of seismic performance, but might not contributed to wind performance.
The roofing materials of this pagoda are copper plates, indicating that this timber pagoda is lighter than the pagoda utilizing tiles with a mud layer for roofing.
Journal of Architecture and Building Science, 415,219-226 (in Japanese)
Online since: August 2011
Authors: Xiao Si Zhan, Ya Yun Chu
Any opinions, findings and conclusions or recommendations expressed in this material are those of the authors.
Journal of Software, 2002, 13(5): 946 – 956
Jourmal of Huazhong University Science & Technology ( Nature Science Edition ), 2007, 35(2): 22 – 25
Journal of Shandong University ( Engneering Science Edition), 2009, 39(2): 8 – 14
Journal of Nanjing University (Nature Science Edition), 2003, 39(4): 476~482
Online since: June 2014
Authors: Mao Quan Zheng, Yuan Bin Hou
It is characterized by large transport capacity, low power consumption, simple structure, and strong adaptability to raw materials.
But once the belt have problem of running deviation, slip, unglued, longitudinal tear and so on, light was materials scattered or cannot transfer material, or belt will be cut, torn or even fire.
Belt Spreading Materials and the Handling.
In general, spreading material failure of belt conveyors occurred, including three cases: spread material in Reprinted point, spread materials when belt left vacant in Concave section, spread materials when deviation.
Wang: Journal of China Coal Society, Vol.36 (2011), p.873-877.
Online since: September 2013
Authors: Xue Ping Ren, Zhi Liu Hu, Li Mi, Sheng Xu Liu, Yan Jun Zhao
Microstructure and Properties of Dissimilar Metals Welded Joint of New Tamping Tine Steel for Railway’s Maintenance Yanjun Zhao1, a, Zhiliu Hu1, b, Li Mi1, Xueping Ren2 and Shengxu Liu1 1 College of Materials Science and Engineering, Guangxi University, Nanning, Guangxi, 530004, China 2 School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083, China azhaoyanjun71@qq.com, bhuzhiliu2682@163.com Keywords: Dissimilar Metal Weld of HSLA, Tamping Tine, Low Strength Matching, Toughness.
Yang and Y.Zang: International Journal of Minerals, Metallurgy and Materials (2013), in press
Ghorbani: Materials and Design, Vol.32 (2011), p.1390
Baylan : Materials and Design, Vol.25 (2004), p.317
Albert : Material Science and Engineering A, Vol.292 (2000), p.74.
Online since: February 2011
Authors: Qin He Zhang, Chuan Yu Li, Ru Po Ma, Bao Tian Dong
Fig. 2 Connections among components in one customized application Information inheritance of material and assembly.
When the users select the material for the work-piece in the pre-processing of the first pass, there is no doubt that the material used in subsequent passes should be the same.
Furthermore, information of material properties and assembly can be inherited accurately in subsequent passes.
Acknowledgements The work is supported by Science and Technology Development Program of Shandong (Grant No. 2010GGX10421) and Program for New Century Excellent Talents in University (2007).
Behera and A.K.Lahiri: Journal of Materials Processing Technology Vol. 170 (2005), p. 323 [2] G.H.Herling and H.C.Bryant: Nuclear Instruments and Methods in Physics Research Section A Vol. 598 (2009), p. 667 [3] Q.Q.He, Q.H,Zhang, K.Q.Liu, J.H.Chen: International Technology and Innovation Conference(2006) [4] Abaqus 6.9 HTML Documentation/Abaqus Scripting User's Manual/ How does the Abaqus Scripting Interface interact with Abaqus/CAE(2009) [5] E.T.Ooi, S.Rajendran, J.H.Yeo and B.R.Zhang: Finite Elements in Analysis and Design Vol. 43 (2007), p.771
Online since: April 2012
Authors: Adayi Xieeryazidan, Amina Kader
Because of this fact, the removal material resulting from anodic electrochemical dissolution according to Faraday’s law is different along the profile, i.e. the removal material occurring at the outstanding points of the surface micro-profile is larger than the other parts of the surface micro-profile.
The change in the distribution density of the electric-current field makes the removal material different.
Table 1, which was obtained under the conditions used in the paper according to Table.2, shows that the removal material is reduction with the increasing of the angle, and the removal material along the profile of the arc is much smaller than that of the profile of the triangle.
Acknowledgement The research is supported by the National Nature Science Foundation of China under Grant 50965017.
Dean: International Journal of Machine Tools & Manufacture Vol. 40(2000), p.1637-1649 [3] J.D.Jeckson: Classical electrodynamics(3rd Edition)( Higher Education Press, Beijing 2004) , In Chinese.
Online since: June 2007
Authors: Motoo Asakawa, Satoshi Kajino
Fig. 8 shows material flow in drawing process.
The material yielded at σy + σr > σyo.
[4] Evans W. and Avitzur B.: Tran. of ASME, Journal of Lubrication Technology, (1968), p.72-80
[9] Kuntani N.and Asakwawa M.: Journal of the JSTP, Vol. 38, (1997), p.147-152
[10] Renz P., Steuff W. and Kopp R.: Wire journal international, (1996), p.64-69
Online since: August 2025
Authors: Nadeem Nadeem, Vivek Solanki, Abhishek Abhishek, Mukesh Kumar
Safety Science 167 (2023) 106283. https://doi.org/10.1016/j.ssci.2023.106283
Journal of Cleaner Production 280 (2021) 124314. https://doi.org/10.1016/j.jclepro.2020.124314
Science Bulletin 2095 (2023) 9273. https://doi.org/10.1016/j.scib.2023.08.015
Materials Today: Proceedings 2214 (2023) 7853. https://doi.org/10.1016/j.matpr.2023.06.223
Journal of Urban Management 12 (2023) 129–140. https://doi.org/10.1016/j.jum.2023.01.001