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Journal of The Air & Waste Management Association | 2007

Simultaneous removal of NO and SO2 by high-temperature fluidized zero-valent iron processes.

Shiao-Shing Chen; Chih-Yu Cheng; Chung-Cheng Wei; Chao-Heng Tseng

Abstract A new approach to simultaneously remove nitrogen mon-oxide (NO) and sulfur dioxide (SO2) by zero valent iron (ZVI) was investigated. Three different parameters, temperature, flux, and ZVI dosage, were tested in fluidized ZVI column studies containing 500 ppmv of NO and SO2, respectively. Under the ZVI dosage of 0.5 g at flux of 0.6 L/cm2·min for temperature 573 K, there is neither NO nor SO2 reduction. For 623 K and 673 K, complete removal for NO and >90% removal for SO2 were achieved. For temperatures of 723 K and 773 K, 100% removal was achieved for both NO and SO2. The amounts of NO or SO2 reduction (as milligrams of NO or SO2 per gram ZVI) increased as temperature increased, and linearities were observed with both correlation coefficients >0.97. Compared with NO, SO2 had earlier breakthrough because of a slower diffusion rate and less reactivity but higher mass reduction because of a higher molecular weight for SO2 (64 g/mol for SO2 and 30 g/mol for NO). At same temperature, both NO and SO2 reductions (as milligrams of NO or SO2 per gram of ZVI) were constant regardless of either flux or ZVI dosage variation, but breakthrough time was affected by both flux and ZVI dosage. A parameter weight of ZVI/flux (W/F) was developed to represent these two parameters at the same time to assess the breakthrough time of NO and SO2. Higher breakthrough time was achieved for higher W/F value. Moreover, interestingly, longer breakthrough time and more NO and SO2 mass reduction were achieved for combined NO and SO2 than individual NO or SO2 treated by ZVI, and both oxidation and reduction reactions occurred instead of a reduction reaction only. Chemical reactions among ZVI/NO, ZVI/ SO2, and ZVI/NO/SO2 were also proposed and verified by X-ray diffraction analyses.


Atmospheric Environment | 2005

Effectiveness of street sweeping and washing for controlling ambient TSP

Yu-Min Chang; Chih-Mei Chou; Kuo-Tung Su; Chao-Heng Tseng


Journal of Analytical and Applied Pyrolysis | 2003

Pyrolysis product distribution of waste newspaper in MSW

Chao-Hsiung Wu; Ching-Yuan Chang; Chao-Heng Tseng; Jyh-Ping Lin


Fuel | 2002

Pyrolysis products of uncoated printing and writing paper of MSW

Chao-Hsiung Wu; Ching-Yuan Chang; Chao-Heng Tseng


Environmental Science & Technology | 2001

Enhanced effect of in-situ generated ammonium salts aerosols on the removal of NOx from simulated flue gas.

Chao-Heng Tseng; Tim C. Keener; Joo-Youp Lee; Soon-Jai Khang


Industrial & Engineering Chemistry Research | 2001

The Effects of Pulsed Corona Discharge on SO2 Absorption into Water

Joo-Youp Lee; Soon-Jai Khang; Chao-Heng Tseng; Tim C. Keener


Archive | 1999

Nitrogen oxides removal by pulsed corona enhanced wet electrostatics precipitation

Chao-Heng Tseng; Tim C. Keener; Soon-Jai Khang


international symposium on environmentally conscious design and inverse manufacturing | 2005

Eco-efficiency Evaluation of the Eco-industrial Cluster

Allen H. Hu; Sin-How Shih; Chia-Wei Hsu; Chao-Heng Tseng


Developments in Chemical Engineering and Mineral Processing | 2008

The Role of Ammonium-Sulfur Aerosols on Nitrogen Oxides Removal by Pulsed Corona Enhanced Wet Electrostatics Precipitation with Ammonia and Ozone Injection

Chao-Heng Tseng; Tim C. Keener; Soon-Jai Khang; Joo-Youp Lee


Archive | 2004

STUDIES OF NO REMOVAL FROM FLUE GAS BY ZERO VALENT IRON

Shiao-Shing Chen; Chih-Yu Cheng; Chih-Hui Tang; Chao-Heng Tseng

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Tim C. Keener

University of Cincinnati

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Soon-Jai Khang

University of Cincinnati

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Joo-Youp Lee

University of Cincinnati

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Chih-Yu Cheng

National Taipei University of Technology

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Ching-Yuan Chang

National Taiwan University

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Shiao-Shing Chen

National Taipei University of Technology

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Allen H. Hu

National Taipei University of Technology

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Chih-Hui Tang

National Taipei University of Technology

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Chih-Mei Chou

National Taipei University of Technology

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