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Original Articles

The Cost Estimation of Thermal and Catalytic Incinerators for the Control of VOCs

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Pages 497-501 | Received 27 Jun 1990, Accepted 09 Jan 1991, Published online: 06 Mar 2012

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Sang Chai Kim & Jae Woon Nah. (2015) Recycling of a spent iron based catalyst for the complete oxidation of toluene: effect of palladium. Environmental Technology 36:2, pages 208-213.
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Ting-Ke Tseng, Hsin Chu & Han-Hsuan Hsu. (2003) The Catalytic Incineration of Trichloroethylene over γ-Alumina Supported Manganese Oxide Catalysta. Journal of Environmental Science and Health, Part A 38:6, pages 1159-1176.
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Hsin Chu, Guang Huei Hao & Ting Ke Tseng. (2001) The Kinetics of Catalytic Incineration of Dimethyl Sulfide and Dimethyl Disulfide over an MnO/Fe2O3 Catalyst. Journal of the Air & Waste Management Association 51:4, pages 574-581.
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D. R. van der Vaart, E. G. Marchand & Angela Bagely‐Pride. (1994) Thermal and catalytic incineration of volatile organic compounds. Critical Reviews in Environmental Science and Technology 24:3, pages 203-236.
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Beom-Sik Kim, Min Ki Kim & Sang Chai Kim. (2023) Performance of manganese-based catalyst comprising zinc oxide obtained from spent dry batteries for hydrocarbon oxidation. Chemical Engineering Journal 475, pages 146003.
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Young-Kwon Park, Sang-Chul Jung, Ho-Young Jung & Sang Chai Kim. (2023) Catalytic removal of VOCs using Pt loaded on used battery derived Zn. Korean Journal of Chemical Engineering 40:1, pages 91-96.
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Hossam A. Gabbar & Mohamed Aboughaly. (2021) Conceptual Process Design, Energy and Economic Analysis of Solid Waste to Hydrocarbon Fuels via Thermochemical Processes. Processes 9:12, pages 2149.
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Young-Kwon Park, Sang-Chul Jung, Ho-Young Jung, Shin Ying Foong, Su Shiung Lam & Sang Chai Kim. (2020) Performance of platinum doping on spent alkaline battery-based catalyst for complete oxidation of o-xylene. Environmental Science and Pollution Research 28:19, pages 24552-24557.
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Young-Kwon Park, Hocheol Song, Min Ki Kim, Sang-Chul Jung, Ho Young Jung & Sang Chai Kim. (2021) Recycling of a spent alkaline battery as a catalyst for the total oxidation of hydrocarbons. Journal of Hazardous Materials 403, pages 123929.
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Hyun Ji Lee, Jae Hwan Yang, Jeong Hyun You & Been Young Yoon. (2020) Sea-urchin-like mesoporous copper-manganese oxide catalysts: Influence of copper on benzene oxidation. Journal of Industrial and Engineering Chemistry 89, pages 156-165.
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Anirudh Krishnamurthy, Busuyi Adebayo, Teresa Gelles, Ali Rownaghi & Fateme Rezaei. (2020) Abatement of gaseous volatile organic compounds: A process perspective. Catalysis Today 350, pages 100-119.
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Ali Behnami, Khaled Zoroufchi Benis, Mohammad Shakerkhatibi, Siavash Derafshi & Mir Mohammad Chavoshbashi. (2018) A systematic approach for selecting an optimal strategy for controlling VOCs emissions in a petrochemical wastewater treatment plant. Stochastic Environmental Research and Risk Assessment 33:1, pages 13-29.
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Shengpan Peng, Wenhui Li, Yuzhou Deng, Weiman Li, Xiang Ma & Yunfa Chen. (2018) Removal of low concentration CH3SH with regenerable Cu-doped mesoporous silica. Journal of Colloid and Interface Science 513, pages 903-910.
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Sang Chai Kim, Seung Won Nahm & Young-Kwon Park. (2015) Property and performance of red mud-based catalysts for the complete oxidation of volatile organic compounds. Journal of Hazardous Materials 300, pages 104-113.
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Stefan Heyne & Simon Harvey. (2014) Impact of choice of CO 2 separation technology on thermo-economic performance of Bio-SNG production processes . International Journal of Energy Research 38:3, pages 299-318.
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Gulin Selda Pozan. (2012) Effect of support on the catalytic activity of manganese oxide catalyts for toluene combustion. Journal of Hazardous Materials 221-222, pages 124-130.
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Sang Chai Kim & Wang Geun Shim. (2008) Influence of physicochemical treatments on iron-based spent catalyst for catalytic oxidation of toluene. Journal of Hazardous Materials 154:1-3, pages 310-316.
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Sang Chai Kim & Wang Geun Shim. (2008) Recycling the copper based spent catalyst for catalytic combustion of VOCs. Applied Catalysis B: Environmental 79:2, pages 149-156.
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Ching-Huei Wang, Shiow-Shyung Lin, Chun-Liang Chen & Hung-Shan Weng. (2006) Performance of the supported copper oxide catalysts for the catalytic incineration of aromatic hydrocarbons. Chemosphere 64:3, pages 503-509.
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Ting-Ke Tseng, Hsin Chu, Tzu-Hsing Ko & Lung-Kai Chaung. (2005) The kinetic of the catalytic decomposition of methyl isobutyl ketone over a Pt/γ-Al2O3 catalyst. Chemosphere 61:4, pages 469-477.
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Ting-Ke Tseng, Hsin Chu, Tzu-Hsing Ko & Lung-Kai Chung. (2005) The operating performance and products distribution of the catalytic oxidation of methyl-isobutyl-ketone over a Pt/γ-Al2O3 catalyst. Journal of Hazardous Materials 122:1-2, pages 155-160.
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Ching-Huei Wang. (2004) Al2O3-supported transition-metal oxide catalysts for catalytic incineration of toluene. Chemosphere 55:1, pages 11-17.
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H. Chu, G.H. Hao & T.K. Tseng. (2003) Laboratory study of poisoning of a MnO/Fe2O3 catalyst by dimethyl sulfide and dimethyl disulfide. Journal of Hazardous Materials 100:1-3, pages 301-316.
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Ting-Ke Tseng, Hsin Chu & Han-Hsuan Hsu. (2002) Characterization of γ-Alumina-Supported Manganese Oxide as an Incineration Catalyst for Trichloroethylene. Environmental Science & Technology 37:1, pages 171-176.
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T.K Tseng & H Chu. (2001) The kinetics of catalytic incineration of styrene over a MnO/Fe2O3 catalyst. Science of The Total Environment 275:1-3, pages 83-93.
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Hsin ChuYiing-Yuan ChiouKuen-How HorngTing-Ke Tseng. (2001) Catalytic Incineration of C 2 H 5 SH and Its Mixture with CH 3 SH over a Pt/Al 2 O 3 Catalyst . Journal of Environmental Engineering 127:5, pages 438-442.
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H. Chu, W.T. Lee, K.H. Horng & T.K. Tseng. (2001) The catalytic incineration of (CH3)2S and its mixture with CH3SH over a Pt/Al2O3 catalyst. Journal of Hazardous Materials 82:1, pages 43-53.
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H. Chu & W.T. Lee. (1998) The effect of sulfur poisoning of dimethyl disulfide on the catalytic incineration over a Pt/Al2O3 catalyst. Science of The Total Environment 209:2-3, pages 217-224.
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H. Chu & K. Horng. (1998) The kinetics of the catalytic incineration of CH3SH and (CH3)2S over a Pt/Al2O3 catalyst. Science of The Total Environment 209:2-3, pages 149-156.
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