• 제목/요약/키워드: 2-chlorophenol

검색결과 110건 처리시간 0.021초

Fe2O3/γ-Al2O3 세라믹촉매와 오존을 이용한 4-클로로페놀의 분해특성 (Decomposition Characteristics of 4-Chlorophenol Treated in Fe2O3 Supported γ-Alumina Catalyst and O3)

  • 박병기;이정민;서동수
    • 한국세라믹학회지
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    • 제41권6호
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    • pp.485-492
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    • 2004
  • 비정질알루미나와 기공형성제를 물과 혼합하여 원통형으로 성형하고 수화, 건조 및 소성하여 직경 5mm의 ${\gamma}$알루미나 펠릿을 제조하였다. 이를 Fe$(NO_{3})_{3}$.$9H{2}O$ 용액과 $CH{3}COOH$ 혼합용액에 침척시키고 $200^{\circ}C$ 온도로 3시간 수열처리 하여 펠릿을 담지시킨 후 건조와 소성공정을 통하여 촉매를 제조하였다. 이와 같이 수열법에 의해 제조딘 산화철 담지${\gamma}$알루미나 촉매를 환경촉매로 적용하기 위해 4-chlorophenol과 같은 난분해성물질을 촉매를 사용하지 않는 오존단독공정과 촉매를 사용하는 촉매오존(catalytic ozonation)공정으로 구분하여 OH 라티칼 전환반응 개시제로서의 기능과 그 분해특성을 비교하였다.

Two Different Pathways (a Chlorocatechol and a Hydroquinone Pathway) for the 4-Chlorophenol Degradation in Two Isolated Bacterial Strains

  • Bae, Hee-Sung;Rhee, Sung-Keun;Cho, Young-Gyun;Hong, Jong-Ki;Lee, Sung-Taik
    • Journal of Microbiology and Biotechnology
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    • 제7권4호
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    • pp.237-241
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    • 1997
  • Two isolated strains, Comamonas testosteroni CPW301 and Arthrobacter ureafaciens CPR706, were able to use 4-chlorophenol (4-CP) as a sole carbon and energy source. CPW301 was found to degrade 4-CP via a meta-cleavage pathway in which the chloro-substituent was eliminated even when 4-chlorocatechol was cleaved by the catechol 2, 3-dioxygenase. In contrast, CPR706 removed chloride from 4-CP prior to the ring-fission reaction, producing hydroquinone as a transient intermediate during 4-CP degradation. CPR706 exhibited much higher tolerance for 4-CP than CPW301, which was indicated by the maximum degradable concentration and degradation rate.

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A kinetic study of 4-chlorophenol biodegradation by the novel isolated Bacillus subtilis in batch shake flask

  • Sandhibigraha, Sudhansu;Chakraborty, Sagnik;Bandyopadhyay, Tarunkanti;Bhunia, Biswanath
    • Environmental Engineering Research
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    • 제25권1호
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    • pp.62-70
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    • 2020
  • Here in this work, a 4-chlorophenol (4-CP)-degrading bacterial strain Bacillus subtilis (B. subtilis) MF447840.1 was isolated from the drain outside the Hyundai car service center, Agartala, Tripura, India. 16S rDNA technique used carried out for genomic recognition of the bacterial species. Isolated bacterial strain was phylogenetically related with B. subtilis. This strain was capable of breaking down both phenol and 4-CP at the concentration of 1,000 mg/L. Also, the isolated strain can able to metabolize five diverse aromatic molecules such as 2-chlorophenol, 2,4-dichlorophenol, 2,4,6-trichlorophenol, 4-nitrophenol, and pentachlorophenol for their growth. An extensive investigation was performed to portray the kinetics of cell growth along with 4-CP degradation in the batch study utilizing 4-CP as substrate. Various unstructured models were applied to evaluate the intrinsic kinetic factors. Levenspiel's model demonstrates a comparatively enhanced R2 value (0.997) amongst every analyzed model. The data of specific growth rate (μ), saturation constant (KS), and YX/S were 0.11 h-1, 39.88 mg/L, along with 0.53 g/g, correspondingly. The isolated strain degrades 1,000 mg/L of 4-CP within 40 h. Therefore, B. subtilis MF447840.1 was considered a potential candidate for 4-CP degradation.

전이금속산화물에 대한 다염소치환페놀류의 흡착과 산화 (제 1 보). ${\sigma}-MnO_2$(s)의 흡착특성과 환원성 용해 (Adsorption and Oxidation of Polychlorinated Phenols onto Transition Metal Oxides (I). Adsorption Characteristics and Reductive Dissolution of ${\sigma}-MnO_2$(s))

  • 윤종훈;임종완;이흥락;오상오;이선행
    • 대한화학회지
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    • 제35권3호
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    • pp.226-232
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    • 1991
  • 수용액에서 ${\sigma}-MnO_2$(s)에 대한 다염소치환페놀류의 흡착과 산활를 조사하였다. 제안된 메카니즘중에서 ${\sigma}-MnO_2$(s)에 대한 염소치환페놀류의 흡착반응은 용액의 pH와 염소치환페놀의 농도에 의존하였다. 흡착등온선은 Langmuir등온선의 형태이었다. 흡착분배계수의 pH의존성과 염소치환페놀의 옥타놀-물 분배계수와의 직선적인 관계로부터 흡착은 연소치환페놀류의 hydrophobicity에 지배되는 것으로 보였다. ${\sigma}-MnO_2$(s)의 환원성 용해속도로부터 구한 전자전이 반응속도는 염소치환페놀류의 농도와 매질의 pH에 거의 직선적으로 의존하였다. Meta위치 염소치환페놀류의 실험적인 속도상수($K_0$)는 염소치환페녹시 라디칼의 공명효과 때문에 ortho 및 para위치는 치환체보다 크게 작았다. 이것은 흡착반응 중 이 라디칼이 생성되며, 전자전이반응이 곧 속도결정단계임을 나타내는 것이다.

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POLYCHLORINATED NAPHTHALENE (PCN) AND DIBENZOFURAN (PCDF) CONGENER PATTERNS FROM PHENOL PRECURSORS IN THERMAL PROCESS: [I] A PRIORI HYPOTHESIS OF PCN AND PCDF FORMATION PATHWAYS FROM MONOCHLOROPHENOLS

  • Ryu, Jae-Yong;Kim, Do-Hyong;Choi, Kum-Chan;Suh, Jeong-Min
    • Environmental Engineering Research
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    • 제11권4호
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    • pp.217-231
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    • 2006
  • The gas-phase formation of polychlorinated naphthalenes (PCNs) and dibenzofurans (PCDFs) was experimentally investigated by slow combustion of the three chlorophenols (CPs): 2-chlorophenol (2-CP), 3-chlorophenol (3-CP) and 4-chlorophenol (4-CP), in a laminar flow reactor over the range of 550 to $750^{\circ}C$ under oxidative condition. Contrary to the a priori hypothesis, different distributions of PCN isomers were produced from each CP. To explain the distributions of polychlorinated dibenzofuran (PCDF) and PCN congeners, a pathway is proposed that builds on published mechanisms of PCDF formation from chlorinated phenols and naphthalene formation from dihydrofulvalene. This pathway involves phenoxy radical coupling at unsubstituted ortho-carbon sites followed by CO elimination to produce dichloro-9, 10-dihydrofulvalene intermediates. Naphthalene products are formed by loss of H and/or Cl atoms and rearrangement. The degree of chlorination of naphthalene and dibenzofuran products decreased as temperature increased, and, on average, the naphthalene congeners were less chlorinated than the dibenzofuran congeners. PCDF isomers were found to be weakly dependent to temperature, suggesting that phenoxy radical coupling is a low activation energy process. Different PCN isomers, on the other hand, are formed by alternative fusion routes from the same phenoxy radical coupling intermediate. PCN isomer distributions were found to be more temperature sensitive, with selectivity to particular isomers decreasing with increasing temperature.

Electrochemical Study of the Copolymer Formation Between o-Chlorophenol and o-Hydroxyphenol

  • Sayyah, Said M.;Abd-Elrehim, Said S.;Azooz, Rehab E.;Mohamed, Fatma
    • 대한화학회지
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    • 제58권3호
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    • pp.289-296
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    • 2014
  • Electrochemical copolymerization of o-chlorophenol (oCP) with o-hydroxyphenol (oHP) was carried out in aqueous $H_2SO_4$ by using cyclic voltammetry (CV) technique. In addition, CV was used to evaluate the differences in electrochemical characteristics of the copolymer in comparison with the corresponding homopolymers, poly(o-chlorophenol) (PoCP) and poly(o-hydroxyphenol) (PoHP). The variation of peak currents with respect to sweep rates was compared between copolymer and homopolymers, PoCP and PoHP, films. Further support for copolymer characterization was obtained by recording UV-visible, IR spectra and elemental analysis. The mechanism of the electrochemical polymerization has been discussed. The monomer reactivity ratios ($r_1$ and $r_2$) were calculated using Fineman-R$\ddot{o}$ss method and was found to be 0.4 and 1.3 repetitivelly and the copolymer structure is a block structure and more rich in oHP units.

Degradation of Chlorophenols and Phenol Mixtures by Cooperative Activities of Chlorophenol-degrading Strains

  • Bae, Hee-Sung;Cho, Young-Gyun;Lee, Sung-Taik
    • Journal of Microbiology and Biotechnology
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    • 제7권1호
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    • pp.43-48
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    • 1997
  • Three strains capable of degrading a chlorophenol were isolated by selective enrichment from soils contaminated with industrial wastewater. A Pseudomonas solanacearum TCP114 could use 2,4,6-trichlorophenol (TCP) as sole carbon and energy source, while two strains of Pseudomonas testosteroni CPW301 and Arthrobacter ureafaciens CPR706 could use 4-CP. All isolates also grew well on phenol. The degradation of one component by a pure strain was strongly affected by the presence of other compounds in the medium, CPW301 and CPR706 entirely lost the ability to degrade 4-CP and phenol in the presence of TCP. TCP114 also lost the ability to degrade phenol when 4-CP was added to the culture medium. These restrictions on the degradability could be overcome by employing defined mixed cultures (TCP114 and one strain of 4-CP degrading strains). All three components were successfully degraded by defined mixed cultures through their cooperative activities. It was also demonstrated that defined mixed cultures could be immobilized by using calcium alginate for the semi-continuous degradation of the three component mixture. Immobilization could not only accelerate the degradation rate, but also allowed the reuse of the cell mass several times without loss of the cells' degrading capabilities.

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플라즈마 방식 열분해 가스화용융시설의 공정별 클로로벤젠 및 클로로페놀 배출거동에 관한 연구 (A Study on the Chlorobenzene and Chlorophenol Behavior in Plasma Type Pyrolysis/Gasfication/Melting Process)

  • 신찬기;신대윤;김기헌;손지환
    • 환경위생공학
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    • 제22권2호
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    • pp.9-20
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    • 2007
  • The incineration process has commonly used for wastes amount reduction and thermal treatments of pollutants as the technologies accumulated. However, the process is getting negative public images owing to matter of hazardous pollutants emission. Specially dioxins became a main issue and were mostly emitted from municipal solid wastes incineration. In this reason, pyrolysis/gasification/melting process is presented as an alternative of incineration process. The pyrolysis/gasification/melting process, a novel technology, is middle of verification of commercial plant and development of technologies in Korea. But the survey about the pollutant emission from the process, and background data in these facilities is necessary. So in this survey, t is investigated that the behavior of chlorobenzenes and chlorophenols in plasma type pyrolysis/gasification/melting plant of pilot scale. We investigated discharging behavior of each phase of chlorobenzene through each process in the plsasma type pyrolysis/gasification/melting process. From this result, it was found that about 99 percent of particle-phase chlorobenzene was removed, but on the other hand gas-phase chlorobenzene was increased by about 600 percent through heat exchanger, flue gas cooling, system and semi dry absorption bag filter(SDA/BF). Also, this investigation presented that di-chlorobenzene(DCB) tri-chlorobenzene(TCB), tetra-chlorobenzene(TeCB), penta-chlorobenzene (PCB), except mono-chlorobenzene(MCB) and hexa-chlorobenzene(HCB) were increased through the flue gas cooling system and the semi dry absorption bag filter(SDA/BF). It was investigated that concentration of particle-phase chlorophenol was decreased by about 66 percent, but on the other hand, concentration of gas-phase chlorophenol was increased by about 170 percent through heat exchanger, flue gas cooling system, and semi dry absorption bag filter(SDA/BF). Also, it was found that di-chlorophenol(DCP), tri-chlorophenol(TCP), and penta-chlorophenol(PCP) were increased through the flue gas cooling system, and the semi dry absorption bag filter(SDA/BF). It can be considered that small-scale pilot facility and short investigation period might cause the concentration increase through the flue gas cooling system and the semi dry absorption bag filter(SDA/BF). A further study on real-scale pilot facility and accurate investigation may be required.

Synergistic Effect on the Photocatalytic Degradation of 2-Chlorophenol Using $TiO_2$Thin Films Doped with Some Transition Metals in Water

  • 정오진
    • Bulletin of the Korean Chemical Society
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    • 제22권11호
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    • pp.1183-1191
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    • 2001
  • The metallorganic chemical vapor deposition (MOCVD) method has been used to prepare TiO2 thin films for the degradation of hazardous organic compounds, such as 2-chlorophenol (2-CP). The effect of supporting materials and metal doping on the photocatalytic activity of TiO2 thin films also has been studied. TiO2 thin films were coated onto various supporting materials, including stainless steel cloth(SS), quartz glass tube (QGT), and silica gel (SG). Transition metals, such as Pd(II), Pt(IV), Nd(III) and Fe(III), were doped onto TiO2 thin film. The results indicate that Nd(Ⅲ) doping improves the photodegradation of 2-CP. Among all supporting materials studied, SS(37 ${\mu}m)$ appears to be the best support. An optimal amount of doping material at 1.0 percent (w/w) of TiO2-substrate thin film gives the best photodegration of 2-CP.

다이옥신 전구물질인 Chlorophenol 의 열분해에 관한 연구 (The Study of Pyrolysis Characteristics of Dioxin Precursor Chlorophenol)

  • 정태섭;김종국;김경수;윤병석
    • 대한환경공학회지
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    • 제22권1호
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    • pp.179-185
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    • 2000
  • 도시쓰레기 소각로에서 다이옥신류의 생성과 대기로의 방출을 최소화하기 위해 소각로의 후 연소 영역에서 다이옥신 전구물질의 원인이 되는 클로로페놀(이하 CP로 표기)의 거동에 대해 검토하였다. 전기관상로를 이용하여 온도조건 $300{\sim}500^{\circ}C$ 에서 CP을 주입하고 질소가스를 이용하여 반응시간을 조절하였으며 CP의 이성질체별 연소에 필요한 산소량은 계산된 실험식을 이용하여 주입하였다. 반응기내의 공간속도가 60~80/초의 조건에서 Mo-V계 촉매를 사용하여 촉매유무에 따른 CP의 분해 효율을 살펴보았다. 무촉매 열분해시 mono-CP은 74~80%, di-CP은 55~66%, tri-CP은 50~58%의 효율을 보였고, Mo-V계 촉매가 존재할 때 mono-CP은 90~99.9%, di-CP은 86~97%, tri-CP은 76~99%의 효율을 나타내 Mo-V계 촉매를 사용함으로써 약 20~30%의 효율이 증가함을 확인할 수 있다.

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