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Online since: December 2023
Authors: Lee Hong Tee, Adityanindran Mahaindran, Xiaon Qin Meng, Bee Lin Chua, Kai Siang Oh
The solubility of the anthocyanins in the NADESs was measured in a unit of g/3g solvent, as opposed to the standard g/ 100g solvent, to reduce the sample size and amount of materials required.
Critical Reviews in Food Science and Nutrition, 57(14), (2017), p. 3072–3083
Critical Reviews in Food Science and Nutrition, (2022), p.1–16
Journal of Natural Products, 8(3), (2018), p. 679-690
Journal of Natural Products, 81(3), (2018), p. 679–690
Online since: August 2013
Authors: Bin He, Da Peng Jiang, Guo Cheng Zhang, Ying Hao Zhang
This work is supported by National Nature Science Foundation of China (Fund No. 51209051), National High-tech Research and Development Program of China (Fund No. 2011AA09A106), China Postdoctoral Science Foundation funded project (Fund No. 2012M520708), and Fundamental Research Funds for the Central Universities (No.
Song, Survery of PID paramenter tuning methods, Journal of Zhejiang University of Science and Technology, 2003: 15(04): 236-240
International Journal of Human Computer Studies, 1999, 51(2): 135-147
Pang, Simulation of fuzzy self-turning PID control based on simulink, in Proceedings of 2011 Applied Mechanics and Materials, 2011: 1644-1649
Guo, Study on Nonlinear Model and Predictive Control Based on Intelligent Algorithm, Wuhan: Huazhong University of Science and Technology, 2008: 69-78
Online since: July 2012
Authors: Jin Zhong Niu, Hao Shan Hao, Gui Min Tian, Li Li Zheng, Yong Guang Cheng, Shuang Mei Zhu
It is well known that TOP and TBP are hazardous, unstable, and expensive materials and generally require glove box operations.
Acknowledgements This work was supported by the Natural Science Research Program of Henan Educational Committee, China (12A430003, 12A140002), and the Key Science and Technology Program of Henan Province, China (Grant No.112102310543), Youth Fund of Henan Institute of Engineering, China (Y2010020).
Brus, Journal of Chemical Physics, Vol. 80 (1984), p. 7
Alivisatos, Science Vol. 310 (2005), p. 462
Bawendi, Journal of the American Chemical Society Vol. 115 (1993), p. 8706
Online since: October 2012
Authors: Xian Xiang Luo, Jian Qiang Yang, Rui Zhang
International Journal of Phytoremediation Vol. 10 (2008), p. 133-160
Journal of Hazardous Materials Vol. 164( 2009), p. 707-712
[6] Environmental monitoring in China: Chinese soil element background value.Beijing: China Environmental Science Publishers (1990), p.330-378, In Chinese
Heavy Metals Pollution and Relevant Ecological Risk Evaluation in Wetlands of Liaodong Gulf Area.Environmental Science and Technology Vol. 27(2004), p. 60-62, In Chinese
Environmental Science Vol. 29(2008), p. 2413-2418, In Chinese
Online since: August 2013
Authors: Peng Li Xue, Xiao Feng Sun, Yun Song, Yan Jun Cheng, De Zhi Sun
These parks conduct develop, produce, store and transport large quantities of flammable, explosive, toxic and hazardous chemicals such as oil and natural chemicals, basic organic chemical materials, life medicines, and novel chemical materials [1].
The park mainly engage in chemical, petrochemical, fine chemical and other industrial projects, involving raw materials, auxiliary materials, intermediate products, end products, fuels and other categories, many of them are hazardous articles and distributed in production units, storage tanks, loading and unloading locations, and wharfs
The hazardous chemicals in the production system of the chemical industry park mainly include raw materials, auxiliary materials, intermediate products, and end products etc. that are used in petrochemical processing, including flammables and explosives such as propylene, butadiene and hydrogen, extremely hazardous articles such as benzene and hydrocyanic acid, and fetid articles such as ammonia and styrene
Journal of Safety Science and Technology, vol. 4 (2008),p.73-75
Jiangsu Environmental Science and Technology, 37-41 (2006).
Online since: July 2011
Authors: Tao Wang, Wen Guang An
Break the constraints of time and space Using Web3D virtual technology, you can completely break the constraints of time and space to provide students with realistic, vivid perceptual learning materials, and help students overcome their difficulties in learning knowledge.
Students can do experiment in the designed virtual environment for many times without the depletion of machines and materials, and that enables students to get more experiments and help them to enhance their impressions and learning effect.
In a real construction environment, a real pair and crystal top are needed, and at the end of the experiment, these materials will not be used again.
If it is a virtual construction, students can operate on a computer, so there will be no worry about students who may waste the materials and that also allows students to carry out the virtual construction of multiple operations to deepen their understanding of what they learn.
References [1] Liu Gao, A Research on Web3D-Based Long-Distance Experiment Teaching, Popular Science, 2009, (7) [2] Liu Lin, Modern Long-Distance Teaching Model Based on Emotional Computer and Web3D technology, Chinese Distance Education, 2008, (7) [3] Zhu Shaoping, A Study on Web3D-Based Long-Distance Practice Teaching, China Educational Informationization, 2009, (3) [4] Chen Dan, The Application Study of Web3D Technology in Network Teaching, Educational Information, 2006. (3) [5] Zhang Wei, The Applications of Web3D Technology in Multimedia Teaching, Changchun Normal University Journal (Natural Science), 2010.2
Online since: March 2013
Authors: Mohamad Rusop, Zuraida Khusaimi, Nurul Afaah Abdullah
Porosity of the material is the main factor for the sensitivity and response time of ZnO sensors [22, 23].
Doping introduced to the base material can improve the performance of gas sensing [14].
Therefore, because of their large specific surface areas, nanostructured gas sensor materials are capable in distinguishing other gas molecules at lower concentration and present better sensing properties compared to gas sensors based on bulk materials.
International Journal of Chemical Engineering and Applications 2 (2011) 4
World Academy of Science, Engineering and Technology 67, (2012)
Online since: June 2019
Authors: Anton A. Gnidenko
Quantum-Mechanical Simulation of the Defects Influence on the Shear Rupture in γ-TiAl GNIDENKO Anton Institute of Material Science, Far Eastern Branch of the Russian Academy of Sciences, 153 Tihookeanskaya St., Khabarovsk, 680042, Russia agnidenko@mail.ru Keywords: density functional theory, pseudopotential, modeling, titanium aluminide, chromium, tungsten, shear, rupture, defects.
Vacancy type defects mainly degrade the strength characteristics of the material.
Gamma titanium aluminides as prospective structural materials, Intermetallics. 8 (2000) 1339-1345
Processing and applications of intermetallic γ-TiAl-based alloys, Advanced Engineering Materials. 2 (2000) 551-570
Role of vacancies in work hardening and fatigue of TiAl alloys, International Journal of Plasticity, 42 (2013) 83-100
Online since: July 2014
Authors: Song Zhou Chen
Introduction As a branch of solid mechanics, fracture mechanics is a science and studies the strength of the materials or structures with crack and crack extension rule.
It is a major determinant of the crack tip stress field strength, is the crack area public factor of stress component value and it also is the important parameter of the crack in engineering component wether it is damaged or not .When the stress intensity factor K is not greater than the material fracture toughness Kc, we think the buckling does not destroy; On the contrary, the engineering materials will lose their job functions.
Since 1961, when the fracture mechanics were introduced in the research of concrete material, we have been studying the formation, development and characteristics of concrete crack.
Underground structures[M], science press, Beijing, 1991 [3] Renhun Jia.
Journal of Chongqing jiaotong institute .1991(10)
Online since: December 2006
Authors: Soon Jong Yoon, Sun Kyu Cho, Hyung Joong Joo, Seung Sik Lee, Joo Kyung Park
Material used for retrofit is the fiber reinforced plastic (FRP) which has physical, chemical, and mechanical properties being superior to conventional materials such as steel and concrete.
Materials Properties FRP was wrapped continuously and automatically at the lap-spliced lower end region of each specimen by using the automatic wrapping machine developed in this research project.
Further experimental investigation must be conducted on the larger number of specimens with more experimental parameters such as thickness of FRP, wrapping fiber orientation, different wrapping materials, and so on.
Chio: Proceedings of the Advanced Composite Materials and Structures 4 th International Conference, Alberta, Canada (2004), p. 129
Ma: Journal of Structural Engineering, ASCE, Vol. 123, No. 10 (1997), p. 1357.