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Combination of advanced oxidation processes and gas absorption for the treatment of chlorinated solvents in waste gases.

(2001) WATER SCIENCE AND TECHNOLOGY. 44(9). p.173-180
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MLA
Dewulf, Jo, Herman Van Langenhove, E DE SMEDT, et al. “Combination of Advanced Oxidation Processes and Gas Absorption for the Treatment of Chlorinated Solvents in Waste Gases.” WATER SCIENCE AND TECHNOLOGY 44.9 (2001): 173–180. Print.
APA
Dewulf, Jo, Van Langenhove, H., DE SMEDT, E., & GEUENS, S. (2001). Combination of advanced oxidation processes and gas absorption for the treatment of chlorinated solvents in waste gases. WATER SCIENCE AND TECHNOLOGY, 44(9), 173–180.
Chicago author-date
Dewulf, Jo, Herman Van Langenhove, E DE SMEDT, and S GEUENS. 2001. “Combination of Advanced Oxidation Processes and Gas Absorption for the Treatment of Chlorinated Solvents in Waste Gases.” Water Science and Technology 44 (9): 173–180.
Chicago author-date (all authors)
Dewulf, Jo, Herman Van Langenhove, E DE SMEDT, and S GEUENS. 2001. “Combination of Advanced Oxidation Processes and Gas Absorption for the Treatment of Chlorinated Solvents in Waste Gases.” Water Science and Technology 44 (9): 173–180.
Vancouver
1.
Dewulf J, Van Langenhove H, DE SMEDT E, GEUENS S. Combination of advanced oxidation processes and gas absorption for the treatment of chlorinated solvents in waste gases. WATER SCIENCE AND TECHNOLOGY. 2001;44(9):173–80.
IEEE
[1]
J. Dewulf, H. Van Langenhove, E. DE SMEDT, and S. GEUENS, “Combination of advanced oxidation processes and gas absorption for the treatment of chlorinated solvents in waste gases.,” WATER SCIENCE AND TECHNOLOGY, vol. 44, no. 9, pp. 173–180, 2001.
@article{148126,
  author       = {Dewulf, Jo and Van Langenhove, Herman and DE SMEDT, E and GEUENS, S},
  issn         = {0273-1223},
  journal      = {WATER SCIENCE AND TECHNOLOGY},
  language     = {eng},
  number       = {9},
  pages        = {173--180},
  title        = {Combination of advanced oxidation processes and gas absorption for the treatment of chlorinated solvents in waste gases.},
  volume       = {44},
  year         = {2001},
}

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