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A high-efficiency denitrification bioreactor for the treatment of acrylonitrile wastewater using waterborne polyurethane immobilized activated sludge

Journal Article


Abstract


Authors


  •   Dong, Honghong (external author)
  •   Wang, Wei (external author)
  •   Song, Zhaozheng (external author)
  •   Dong, Hao (external author)
  •   Wang, Jianfeng (external author)
  •   Sun, Shanshan (external author)
  •   Zhang, Zhongzhi (external author)
  •   Ke, Ming (external author)
  •   Zhang, Zhenjia (external author)
  •   Wu, Wei Min (external author)
  •   Zhang, Guangqing
  •   A/Prof Jie Ma, Jie (external author)

Publication Date


  • 2017

Citation


  • Dong, H., Wang, W., Song, Z., Dong, H., Wang, J., Sun, S., Zhang, Z., Ke, M., Zhang, Z., Wu, W., Zhang, G. & Ma, J. (2017). A high-efficiency denitrification bioreactor for the treatment of acrylonitrile wastewater using waterborne polyurethane immobilized activated sludge. Bioresource Technology, 239 472-481.

Scopus Eid


  • 2-s2.0-85019872222

Ro Metadata Url


  • http://ro.uow.edu.au/eispapers1/311

Number Of Pages


  • 9

Start Page


  • 472

End Page


  • 481

Volume


  • 239

Abstract


Authors


  •   Dong, Honghong (external author)
  •   Wang, Wei (external author)
  •   Song, Zhaozheng (external author)
  •   Dong, Hao (external author)
  •   Wang, Jianfeng (external author)
  •   Sun, Shanshan (external author)
  •   Zhang, Zhongzhi (external author)
  •   Ke, Ming (external author)
  •   Zhang, Zhenjia (external author)
  •   Wu, Wei Min (external author)
  •   Zhang, Guangqing
  •   A/Prof Jie Ma, Jie (external author)

Publication Date


  • 2017

Citation


  • Dong, H., Wang, W., Song, Z., Dong, H., Wang, J., Sun, S., Zhang, Z., Ke, M., Zhang, Z., Wu, W., Zhang, G. & Ma, J. (2017). A high-efficiency denitrification bioreactor for the treatment of acrylonitrile wastewater using waterborne polyurethane immobilized activated sludge. Bioresource Technology, 239 472-481.

Scopus Eid


  • 2-s2.0-85019872222

Ro Metadata Url


  • http://ro.uow.edu.au/eispapers1/311

Number Of Pages


  • 9

Start Page


  • 472

End Page


  • 481

Volume


  • 239