The Experts below are selected from a list of 6180 Experts worldwide ranked by ideXlab platform
Jihua Wang - One of the best experts on this subject based on the ideXlab platform.
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overview of membrane technology applications for Industrial Wastewater Treatment in china to increase water supply
Resources Conservation and Recycling, 2015Co-Authors: Xiang Zheng, Zhenxing Zhang, Dawei Yu, Xiaofen Chen, Rong Cheng, Jiangquan Wang, Qingcong Xiao, Jihua WangAbstract:Abstract Treating and reusing Industrial Wastewater is one of many means to improve water supply capacity, especially within developing countries. In the past 15 years, remarkable progress has been achieved on the commercial applications of membrane technology in China. The membranes demand in China exceeded 30 billion yuan (US$ 4.8 billion) in 2010, amounting for about 15% of the world total. However, the sate-of-the-art of membrane applications in Industrial Wastewater Treatment is not well understood and documented. This study performs a national survey of membrane plants and membrane manufacturers to investigate the characteristics of membrane technology applications for Industrial Wastewater Treatment to increase water supply in China. The data obtained from the survey of membrane plants were confirmed with the survey of membrane manufacturers. It is aimed to provide comprehensive information of membrane technology applications for Industrial Wastewater Treatment in China to guild the future development of the same kind of applications. The results indicate that 6.7 million m3 of Wastewater per day (2.4 billion m3 per year) Treatment capacity applies membrane technology. 580 membrane plants have been successfully applied in practice for different Industrial Wastewater Treatment. Petrochemical, power generation, and steel industries account for the majority of membrane technology applications, from both of number of membrane plants and Treatment capacity. Northern Chinese provinces which are rich in coal, crude petroleum, and ferrous ore but scarce in water resources have seen the most of membrane practices. Water withdrawal for the power generation industry decreased substantially recently, as water use and reuse efficiency has been improved due to wide applications of advanced Wastewater Treatment methods such as membrane technology. With increasingly stringent emission standards faced by industry and water resources shortages confronted with China, it is expected membrane technology will play key role to address water quality and quantity issues in China. Membrane market in China is expected to grow at a relative high annual rate of approximate 15% for the next decade. It is worthy to note that environmental impacts due to membrane technology applications for Industrial Wastewater Treatment, including membrane pollution and high salinity water, shall be addressed.
Huu Hao Ngo - One of the best experts on this subject based on the ideXlab platform.
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An electrocatalytic membrane reactor with self-cleaning function for Industrial Wastewater Treatment
Angewandte Chemie - International Edition, 2011Co-Authors: Yu-guang Yang, Xuekai Song, Tonghua Wang, Benqiao He, Xiaoping Liang, Jianxin Li, Hong Wang, Huu Hao NgoAbstract:Controlling membrane fouling: An electrocatalytic reactor with a TiO2/C membrane that functions both as filter and anode was designed for Industrial Wastewater Treatment. During Wastewater Treatment, the TiO2/C membrane generates microflows that alleviate concentration polarization and reactive intermediates that decompose organic foulants on the membrane surface or in pores into CO2 and H2O or small biodegradable products (see picture).
Vinay M. Bhandari - One of the best experts on this subject based on the ideXlab platform.
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Industrial Wastewater Treatment, Recycling and Reuse
2014Co-Authors: Vivek V. Ranade, Vinay M. BhandariAbstract:DESCRIPTION Industrial Wastewater Treatment, Recycling and Reuse is an accessible reference to assist you when handling Wastewater Treatment and recycling. It features an instructive compilation of methodologies, including advanced physico-chemical methods and biological methods of Treatment. It focuses on recent industry practices and preferences, along with newer methodologies for energy generation through waste.
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Industrial Wastewater Treatment, Recycling, and Reuse-Past, Present and Future
Industrial Wastewater Treatment Recycling and Reuse, 2014Co-Authors: Vivek V. Ranade, Vinay M. BhandariAbstract:The concept of Wastewater Treatment is not new, but the current definitions of Wastewaters and Treatments have a relatively recent origin. Industrialization has played a major role in this area and has been the driving force for many Treatment methodologies that are being practiced today. There is a better understanding of the importance of protecting the environment and enhancing overall sustainability today. This chapter considers the past and present states of Industrial Wastewater Treatment. It also outlines future challenges and likely developments in Industrial Wastewater Treatment, recycling, and reuse.
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Industrial Wastewater Treatment, Recycling, and Reuse: An Overview
Industrial Wastewater Treatment Recycling and Reuse, 2014Co-Authors: Vivek V. Ranade, Vinay M. BhandariAbstract:Water availability; usage, Treatment, and discharge of used water; and possible ways of recycling and reusing this used water are briefly discussed here. Issues pertaining to Industrial Wastewaters, sources of generation, characterization of Wastewaters, and various methodologies of Wastewater Treatment have been reviewed along with economic perspectives of water management. Recent developments in the area of Industrial Wastewater Treatment, recycling, and reuse are also briefly outlined here.
Xiang Zheng - One of the best experts on this subject based on the ideXlab platform.
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overview of membrane technology applications for Industrial Wastewater Treatment in china to increase water supply
Resources Conservation and Recycling, 2015Co-Authors: Xiang Zheng, Zhenxing Zhang, Dawei Yu, Xiaofen Chen, Rong Cheng, Jiangquan Wang, Qingcong Xiao, Jihua WangAbstract:Abstract Treating and reusing Industrial Wastewater is one of many means to improve water supply capacity, especially within developing countries. In the past 15 years, remarkable progress has been achieved on the commercial applications of membrane technology in China. The membranes demand in China exceeded 30 billion yuan (US$ 4.8 billion) in 2010, amounting for about 15% of the world total. However, the sate-of-the-art of membrane applications in Industrial Wastewater Treatment is not well understood and documented. This study performs a national survey of membrane plants and membrane manufacturers to investigate the characteristics of membrane technology applications for Industrial Wastewater Treatment to increase water supply in China. The data obtained from the survey of membrane plants were confirmed with the survey of membrane manufacturers. It is aimed to provide comprehensive information of membrane technology applications for Industrial Wastewater Treatment in China to guild the future development of the same kind of applications. The results indicate that 6.7 million m3 of Wastewater per day (2.4 billion m3 per year) Treatment capacity applies membrane technology. 580 membrane plants have been successfully applied in practice for different Industrial Wastewater Treatment. Petrochemical, power generation, and steel industries account for the majority of membrane technology applications, from both of number of membrane plants and Treatment capacity. Northern Chinese provinces which are rich in coal, crude petroleum, and ferrous ore but scarce in water resources have seen the most of membrane practices. Water withdrawal for the power generation industry decreased substantially recently, as water use and reuse efficiency has been improved due to wide applications of advanced Wastewater Treatment methods such as membrane technology. With increasingly stringent emission standards faced by industry and water resources shortages confronted with China, it is expected membrane technology will play key role to address water quality and quantity issues in China. Membrane market in China is expected to grow at a relative high annual rate of approximate 15% for the next decade. It is worthy to note that environmental impacts due to membrane technology applications for Industrial Wastewater Treatment, including membrane pollution and high salinity water, shall be addressed.
Xiwang Zhang - One of the best experts on this subject based on the ideXlab platform.
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Recent progress in TiO2-mediated solar photocatalysis for Industrial Wastewater Treatment
International Journal of Photoenergy, 2014Co-Authors: Tong Zhang, Xiaoguang Wang, Xiwang ZhangAbstract:The current paper reviews the application of TiO2-mediated solar photocatalysis for Industrial Wastewater Treatment, starting with a brief introduction on the background of Industrial Wastewater and the development of Wastewater Treatment processes, especially advanced oxidation processes (AOPs). We, then, discuss the application of solar TiO2 photocatalysis in treating different kinds of Industrial Wastewater, such as paper mill Wastewater, textile Wastewater, and olive mill Wastewater. In the end, we compare solar TiO2 photocatalysis with other AOPs in terms of effectiveness, energy, and chemical consumption. Personal perspectives are also given, which may provide new insights to the future development of TiO2 photocatalysis for Industrial Wastewater.
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Recent Progress in TiO 2 -Mediated Solar Photocatalysis for Industrial Wastewater Treatment
International Journal of Photoenergy, 2014Co-Authors: Tong Zhang, Xiaoguang Wang, Xiwang ZhangAbstract:The current paper reviews the application of TiO2-mediated solar photocatalysis for Industrial Wastewater Treatment, starting with a brief introduction on the background of Industrial Wastewater and the development of Wastewater Treatment processes, especially advanced oxidation processes (AOPs). We, then, discuss the application of solar TiO2 photocatalysis in treating different kinds of Industrial Wastewater, such as paper mill Wastewater, textile Wastewater, and olive mill Wastewater. In the end, we compare solar TiO2 photocatalysis with other AOPs in terms of effectiveness, energy, and chemical consumption. Personal perspectives are also given, which may provide new insights to the future development of TiO 2 photocatalysis for Industrial Wastewater. © 2014 Tong Zhang et al.