Grantee Research Project Results
Publications Details for Grant Number R828598C753
Adsolubilization and Photocatalysis in a Semiconducting Monolithic Reactor for Wastewater Treatment
RFA:
Gulf Coast Hazardous Substance Research Center (Lamar University) (1996)
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Reference Type | Reference Title | Journal | Author | Citation | Progress Report Year | Document Sources |
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Abstract | Photodegradation of organic compounds on surfactant-modified titania. | None | Yuan Q, Ravikrishna R, Lin H, Valsaraj KT | Yuan Q, Ravikrishna R, Lin H, Valsaraj KT. Photodegradation of organic compounds on surfactant-modified titania. In: Abstracts of the 94th Air & Waste Management Association Annual Conference & Exhibition, Orlando, FL, June 24-28, 2001, Abstract #36, Session No:AE-2e. |
R828598 (Final) R828598C753 (2001) |
not available |
Journal Article | Reusable adsorbents for dilute solution separation. 6. Batch and continuous reactors for the adsorption and degradation of 1,2-dichlorobenzene from dilute wastewater streams using titania as a photocatalyst. | SEPARATION AND PURIFICATION TECHNOLOGY | Lin HF, Ravikrishna R, Valsaraj KT | Lin HF, Ravikrishna R, Valsaraj KT. Reusable adsorbents for dilute solution separation. 6. Batch and continuous reactors for the adsorption and degradation of 1,2-dichlorobenzene from dilute wastewater streams using titania as a photocatalyst. Separation and Purification Technology 2002;28(2):87-102. |
R828598 (Final) R828598C753 (2001) |
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Journal Article | A titania thin film annular photocatalytic reactor for the degradation of polycyclic aromatic hydrocarbons in dilute water streams | JOURNAL OF HAZARDOUS MATERIALS | Lin HF, Valsaraj KT | Lin HF, Valsaraj KT. A titania thin film annular photocatalytic reactor for the degradation of polycyclic aromatic hydrocarbons in dilute water streams. Journal of Hazardous Materials 2003;99(2):203-219. |
R828598 (Final) R828598C753 (Final) |
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Journal Article | Development of an optical fiber monolith reactor for photocatalytic wastewater treatment. | JOURNAL OF APPLIED ELECTROCHEMISTRY | Lin H, Valsaraj KT | Lin H, Valsaraj KT. Development of an optical fiber monolith reactor for photocatalytic wastewater treatment. Journal of Applied Electrochemistry 2005;35(7-8):699-708. |
R828598 (Final) R828598C753 (Final) |
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Journal Article | Reusable adsorbents for dilute solution separation. 5. Photodegradation of organic compounds on surfactant-modified titania. | SEPARATION AND PURIFICATION TECHNOLOGY | Yuan QZ, Ravikrishna R, Valsaraj KT | Yuan QZ, Ravikrishna R, Valsaraj KT. Reusable adsorbents for dilute solution separation. 5. Photodegradation of organic compounds on surfactant-modified titania. Separation and Purification Technology 2001;24(1-2):309-318. |
R828598 (Final) R828598C753 (2001) R828598C753 (Final) |
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Presentation | Investigations into reactor designs for photocatalytic wastewater treatment | None | Lin HF, Valsaraj KT | Lin HF, Valsaraj KT. Investigations into reactor designs for photocatalytic wastewater treatment. Presented at the Third Trivandrum International Symposium on Recent Trends in Photochemical Sciences, Trivandrum, India, January 5-7, 2004. |
R828598 (Final) R828598C753 (Final) |
not available |
Presentation | Mineral oxides as reusable adsorbents for wastewater treatment. | None | Valsaraj KT | Valsaraj KT. Mineral oxides as reusable adsorbents for wastewater treatment. Presented at the International Conference on Materials for Advanced Technologies, ICMAT 2001, Singapore, July 1-6, 2001. |
R828598 (Final) R828598C753 (2001) |
not available |
Presentation | Monolith photocatalytic reactor for water treatment | None | Valsaraj KT, Lin HF | Valsaraj KT, Lin HF. Monolith photocatalytic reactor for water treatment. Presented at the 225th American Chemical Society National Meeting, New Orleans, LA, March 23-27, 2003. |
R828598 (Final) R828598C753 (Final) |
not available |
The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.