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Ceramic membrane technology for water and wastewater treatment: A critical review of performance, full-scale applications, membrane fouling and prospects

期刊

CHEMICAL ENGINEERING JOURNAL
卷 418, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.129481

关键词

Ceramic membrane; Water and wastewater treatment; Full-scale applications; Market prospects; Membrane fouling; Catalytic ceramic membranes

资金

  1. National Natural Science Foundation of China [51708325]
  2. Tsinghua SIGS Startup Funding [QD2020002N]
  3. Committee of Science and Technology Innovation of Shenzhen [KQJSCX20180320171226768, JCYJ20190813163401660]

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The application of ceramic membrane technology in water and wastewater treatment is rapidly growing, with its inherent advantages attracting attention and expected compound annual growth rate of 12% in the ceramic membrane market. Ceramic membranes outperform polymeric membranes in pollutant removal, fouling prevention, and cleaning efficiency.
Application of ceramic membrane technology in water and wastewater is rapidly growing. Inherent advantages of ceramic membrane including chemical/thermal stability, low fouling propensity and long lifespan make ceramic membrane technology attractive, and the ceramic membrane market is expected to achieve a compound annual growth rate of 12%. Ceramic membranes could be integrated with advanced oxidation processes such as in-situ ozonation that cannot be applied in the case of polymeric membrane due to their potential degradation during long-term exposure. In addition, the hybrid-ceramic membrane processes such as ceramic membrane bioreactor are superior to polymeric counterparts due to higher flux, higher pollutant removal, lower fouling rate and higher cleaning efficiency. Although ceramic membrane has high capital cost, life-cycle costs of ceramic and polymeric plants are comparable. Notably, full-scale ceramic membrane water/wastewater treatment plants have been installed in many countries such as Japan, USA, Singapore and United Kingdom. Given the attractiveness of this technology, performance of ceramic membrane is critically reviewed with a focus on their applications in water and wastewater treatment under mild conditions. In addition, fouling mechanisms and control strategies are elucidated and are compared with polymeric membranes. Importantly, for the first time, the status of fullscale applications and market prospects of ceramic membranes are critically analysed to show their future potential. Lastly, future research directions such as development of cost-effective ceramic membranes, understanding the biofouling evolution and economic evaluation of physicochemical processes for fouling control are proposed.

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