Artificial neural network modeling on trichloroethylene biodegradation in a packed-bed biofilm reactor and its comparison with response surface modeling approach

Author:

Yu FengORCID,Bobashev GeorgiyORCID,Bienkowski Paul R.,Sayler Gary S.

Funder

RTI Surgical

RTI International

Publisher

Elsevier BV

Subject

Biomedical Engineering,Environmental Engineering,Bioengineering,Biotechnology

Reference56 articles.

1. U.S. Environmental Protection Agency (EPA), Risk evaluation for trichloroethylene: CASRNL 79-01-6 (EPA Document No. #740R18008). Office of Chemical Safety and Pollution, 2000 〈https://www.epa.gov/sites/default/files/2020–11/documents/1._risk_evaluation_for_trichloroethylene_tce_casrn_79–01-6.pdf〉.

2. Kinetics of trichloroethylene cometabolism and toluene biodegradation: Model application to soil batch experiments;El-Farhan;J. Environ. Qual.,2000

3. Potential for co-metabolic oxidation of TCE and evidence for its occurrence in a large-scale aquifer survey;Gafni;Water Res.,2020

4. Molecular characterization of microbial communities in a peat-rich aquifer system contaminated with chlorinated aliphatic compounds;Ghezzi;Environ. Sci. Pollut. Res.,2021

5. Distribution characteristics and health risk assessment of volatile organic compounds in the groundwater of Lanzhou City, China;Liu;Environ. Geochem. Health,2020

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