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"This book consists of one hundred and nine selected papers presented at the 2015 International Conference on Materials Engineering and Environmental Science (MEES2015), which was successfully held in Wuhan, China during September 25-27, 2015. All papers selected for this proceedings were subjected to a rigorous peer-review process by at least two independent peers. The papers were selected based on innovation, organization, and quality of presentation. The MEES2015 covered a wide spectrum of research topics, ranging from fundamental studies, technical innovations, to industrial applications in Chemical Material and Chemical Processing Technology, Composite Materials, Alloy Materials and Met...
This contains selected and peer-reviewed papers from the 4th Annual International Conference on Material Science and Environmental Engineering (MSEE), December 16-18 2016, in Chengdu, China. Interactions of building materials, biomaterials, energy materials and nanomaterials with surrounding environment are discussed. With abundant case studies, it is of interests to material scientists and environmental engineers.
This contains selected and peer-reviewed papers from the 4th Annual International Conference on Material Science and Environmental Engineering (MSEE), December 16-18 2016, in Chengdu, China. Interactions of building materials, biomaterials, energy materials and nanomaterials with surrounding environment are discussed. With abundant case studies, it is of interests to material scientists and environmental engineers.
The 2016 International Conference on Materials Science, Energy Technology and Environmental Engineering (MSETEE 2016) took place May 28-29, 2016 in Zhuhai City, China. MSETEE 2016 brought together academics and industrial experts in the field of materials science, energy technology and environmental engineering. The primary goal of the conference was to promote research and developmental activities in these research areas and to promote scientific information interchange between researchers, developers, engineers, students, and practitioners working around the world. The conference will be held every year serving as platform for researchers to share views and experience in materials science, energy technology and environmental engineering and related areas.
Collection of selected, peer reviewed papers from the 2014 International Conference on Material Engineering and Environment Science (MEES 2014), September 13-14, 2014, Wuhan, China. The 91 papers are grouped as follows: Chapter 1: Environmental Science and Ecology, Chapter 2: Materials Physics and Chemistry, Chapter 3: Materials Engineering and Processing Materials.
These proceedings concentrate on Materials Science and Environmental Science and contain extensive new knowledge, concerning materials science and environmental science, from researchers all over the world. The papers are divided into: Materials Engineering and its Application to Technology; and Environmental Materials and Advanced Biochemical Techniques. Volume is indexed by Thomson Reuters CPCI-S (WoS).
Annotation Collection of selected, peer reviewed papers from the 2014 International Conference on Material Engineering and Environment Science (MEES 2014), September 13-14, 2014, Wuhan, China. The 91 papers are grouped as follows: Chapter 1: Environmental Science and Ecology, Chapter 2: Materials Physics and Chemistry, Chapter 3: Materials Engineering and Processing Materials.
The International Conference on Energy, Environment and Materials Science (EEMS2015) was held in Guangzhou, China, from August 25 - 26, 2015. EEMS2015 provided a platform for academic scientists, researchers and scholars to exchange and share their experiences and research results within the fields of energy science, energy technology, environmental science, environmental engineering, motivation, automation and electrical engineering, material science and engineering, the discovery or development of energy, and environment and materials science.
Volume is indexed by Thomson Reuters CPCI-S (WoS). The purpose of this collection is to disseminate the latest developments in the field of the environmental degradation of structural materials, hydrogen degradation, stress corrosion cracking, hydrogen and corrosion fatigue. The result is an excellent guide to the experimental study and modeling of environmentally-assisted cracking, advanced materials technologies and case studies of materials failure in various industrial applications.