Hydrothermal decomposition of pentachlorophenol in subcritical andsupercritical water with sodium hydroxide addition |
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Authors: | PRABOWO Benedictus VERIANSYAH Bambang KIM Jae-Duck |
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Affiliation: | Supercritical Fluid Research Laboratory, Korea Institute of Science and Technology (KIST) - Department of Green Process and System Engineering, University of Science and Technology(UST), 39-1 Hawolgok-dong, Seoungbuk-gu, Seoul, 136-791, Korea |
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Abstract: | Hydrothermal decomposition of pentachlorophenol (PCP), (C6HCl5O), as the probable human carcinogen, was investigated in a tubular reactor under subcritical and supercritical water with sodium hydroxide (NaOH) addition. The experiments were conducted at a temperature of 300-420℃ and a fixed pressure of 25 MPa, with a residence time that ranged from 10 s to 70 s. Under the reaction conditions, the initial PCP concentrations were varied from 0.25 to 1.39 mmol/L and the NaOH concentrations were varied from 2.5 to 25 times of the concentrations of PCP. The result of this study showed that PCP conversion in supercritical water is highly dependent on the reaction temperature, residence times, and NaOH concentration. PCP conversion in subcritical water is, however, only dependent on reaction temperature. NaOH concentration and residence times were found to have little effect on PCP conversion in subcritical condition. It was found that NaOH concentration affected the dechlorinations of PCP in the supercritical water. The intermediates detected products were proposed to be tetrachlorophenol and trichlorophenol, respectively. |
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Keywords: | pentachlorophenol hydrothermal decomposition supercritical water subcritical water addition sodium hydroxide supercritical water subcritical water pentachlorophenol decomposition intermediates products little effect conditions however concentrations residence time result study conversion dependent reaction temperature times |
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