• Title/Summary/Keyword: 염소산화

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Removal of Diclofenac, Ibuprofen and Naproxen using Oxidation Processes (산화공정에서의 Diclofenac, Ibuprofen 및 Naproxen의 제거특성 평가)

  • Son, Hee-Jong;Yoo, Soo-Jeon;Hwang, Young-Do;Roh, Jae-Soon;Yoo, Pyung-Jong
    • Journal of Korean Society of Environmental Engineers
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    • v.31 no.10
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    • pp.831-838
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    • 2009
  • In order to evaluate a removal characteristic of diclofenac, ibuprofen and naproxen by oxidizing agents, $Cl_2,\;O_3$ and $O_3/H_2O_2$ are used as oxidants in this study. In case of that $Cl_2$ is used for oxidizing pharmaceuticals, ibuprofen is not removed entirely at $Cl_2$ dose range of 0.5~5.0 mg/L for 60 minutes, however, removal tendency of diclofenac and naproxen are so obviously at $Cl_2$ dose higher than 0.5 mg/L. In addition, as $Cl_2$ dose and contact time are increased, the removal rate of diclofenac and naproxen is enhanced. When $O_3$ is used as oxidizing agent, ibuprofen is not eliminated at $O_3$ dose range of 0.2~5.0 mg/L. On the contrary, 72~100% of diclofenac and 49~100% of naproxen are removed at $O_3$ dose of 0.2~5.0 mg/L. From experiments using $O_3/H_2O_2$ as an oxidant, we can find that $O_3/H_2O_2$ is much more effective than $O_3$ only for removal of diclofenac and naproxen. Moreover, the efficiency is raised according to increase of $H_2O_2$ dose, however, experiments using $O_3/H_2O_2$ show that oxidation of pharmaceuticals is less effective as $H_2O_2$ to $O_3$ ratio increased to above approximately 1.0. On reaction rate constant and half-life of diclofenac, ibuprofen and naproxen depending on $Cl_2$, $O_3$ and $O_3/H_2O_2$ dose, an oxidation of pharmaceuticals by $Cl_2$ and $O_3$ particularly has a comparatively high reaction rate constant and short half-life comparing $O_3/H_2O_2$. From above results, we can fine that diclofenac and naproxen can be easily eliminated in oxidation processes.

Study on Destruction of Chlorinated Organic Compounds in a Two Stage Molten Carbonate Oxidation System (2단 용융탄산염산화시스템에서 염소유기화합물 분해에 관한 연구)

  • Eun, Hee-Chul;Yang, Hee-Chul;Cho, Yung-Zun;Lee, Han-Soo
    • Korean Chemical Engineering Research
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    • v.46 no.6
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    • pp.1148-1152
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    • 2008
  • Molten carbonate oxidation (MCO) is one of the promising alternative technologies for the treatment of the chlorinated organic compounds because it is capable of trapping chlorine during a destruction of them. In this study, destructions of chlorinated organic compounds ($C_6H_5Cl$, $C_2HCl_3$ and $CCl_4$) and an insulated oil containing PCBs were performed by using the two stage molten carbonate oxidation system. MCO reactor temperature largely affected the destruction of the chlorinated organic compounds. Destruction of the chlorinated organics very efficient in the primary MCO reactor however a significant amount of CO was emitted from the MCO system. This CO emission was gradually decreased by an increase in the primary reactor temperature and oxidizing air feed rate. The HCl emission from the MCO system was below 7 ppm regardless of tested conditions. The chlorine collection efficiencies were in the range of 99.95-99.99%. The destruction of PCBs in the insulated oil was efficient at a temperature above $900^{\circ}C$ and overall destruction efficiency of them was determined as over 99.9999%.

Selective Removal of Cu in Ferrous Scrap by Chlorine gas (염소가스에 의한 철 스크랩 중 Cu의 선택적 제거)

  • Lee, So-Yeong;Sohn, Ho-Sang
    • Resources Recycling
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    • v.27 no.5
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    • pp.54-60
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    • 2018
  • The quality of steel produced from scrap can be adversely affected because of the buildup of tramp elements in recycled scrap. The tramp element of greatest concern is copper because of its effect on steel quality, even in small percentage quantities. In this study, possibility of removal of copper from ferrous scrap by using $Cl_2$ gas is experimentally examined in a small size experimental apparatus. Synthetic ferrous scraps containing copper were reacted with $Cl_2$ gas in various atmosphere. The copper was chloridized and evaporated, whereas iron was oxidized and was not reacted with Cl2 and oxygen mixture gas.

Influence of Dissolved Organic Nitrogen on Organic Chloramine Formation during Chlorination (염소 소독시 DON이 유기성 클로라민 생성에 미치는 영향)

  • Lee, Won-Tae
    • Journal of Korean Society of Environmental Engineers
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    • v.33 no.7
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    • pp.481-484
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    • 2011
  • Although formation of organic chloramines have been studied for decades, most of them have involved model organic compounds (e.g., amino acids) but not naturally occurring organic nitrogen in water. This study investigated formation of organic chloramines during chlorination of 16 natural organic matters (NOM) solutions which were isolated from surface water and contained dissolved organic nitrogen (DON). Organic chloramine yields per chlorine consumption was $0.25mg-Cl_2/mg-Cl_2$. Upon chlorination of NOM solutions, organic chloramines were rapidly formed within 10 minutes. The average organic chloramine yields upon addition of chlorine in to NOM solutions were $0.78mg-Cl_2/mg-DON$ at 10 minutes and $0.16mg-Cl_2/mg-DON$ at 24 hours. Organic chloramine yields increased as the dissolved organic carbon/dissolved organic nitrogen (DOC/DON) ratios decreased. Chlorination of molecular weight (10,000 Da) fractionated samples showed that the influence of DON molecular weights on the organic chloramine formation was minimal.

Inhibitory Effect of Chlorine Dioxide on Phenoloxidase Activation of the Indianmeal Moth, Plodia interpunctella (화랑곡나방(Plodia interpunctella)의 페놀옥시데이즈 활성화에 대한 이산화염소의 억제 효과)

  • Kim, Minhyun;Kwon, Hyeok;Kim, Wook;Kim, Yonggyun
    • The Korean Journal of Pesticide Science
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    • v.20 no.2
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    • pp.138-144
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    • 2016
  • Phenoloxidase (PO) is an oxidizing enzyme and plays crucial roles in insect immunity and cuticle sclerotization. High oxidizing activity of chlorine dioxide gives effective control activities against microbes and insect pests. These allowed us to assess any inhibitory activity of chlorine dioxide against PO with respect to insect immunity. PO activities of the Indeanmeal moth, Plodia interpunctella, was detected in both hemocytes and plasma. Upon bacterial challenge, PO activity was significantly increased especially in plasma. However, the immune challenge coupled with chlorine dioxide treatment did not enhance PO activity. When different chlorine dioxide concentrations were incubated with activated PO by immune challenge, they did not inhibit the activated PO. These results indicate that chlorine dioxide suppresses PO activity by inhibiting PO activation.

In Vitro Hemolysis and Methemoglobin Formation in Olive Flounder (Paralichthys olivaceus) Erythrocytes Induced by Potassium Permanganate, Stabilized Chlorine Dioxide, Formalin and Copper Sulphate (과망간산칼륨, 안정화이산화염소, 포르말린, 황산동이 넙치(Paralichthys olivaceus) 적혈구에 미치는 시험관내 용혈작용 및 메트헤모글로빈 생성 효과)

  • Jung, Sung-Hee;Kim, Jin-Woo
    • Journal of fish pathology
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    • v.18 no.2
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    • pp.179-185
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    • 2005
  • In Vitro hemolysis and methemoglobin (MetHb) formation in olive flounder rythrocytes were investigated using potassium permanganate ($KMnO_4$) ranging from 2 to 250 ppm, stabilized chlorine dioxide ($S-ClO_2$)ranging from 3.13 to 400 ppm, formalin (37% formaldehyde) ranging from 31.3 to 2,000 ppm and copper sulphate ($CuSO_4$) ranging from 0.04 to 5 ppm. Remarkable hemolysis was found to be induced at $KMnO_4$ concentrations of 31.3-250 ppm and $CuSO_4$ concentrations of 0.63-5 ppm. On the other hand, MetHb formation could not be found at the same treatment concentrations. It is suggested that the cell-damaging system of $KMnO_4$ may be similar from that of $CuSO_4$ in the erythrocytes of olive flounder. Remarkable hemolysis and MetHb formation were found to be induced at $S-ClO_4$ concentrations of more than 25 ppm and 6.25 ppm, respectively. Only $S-ClO_2$ showed both hemolysis and MetHb formation among the chemicals used in the present study. Formalin did not provoke hemolysis at the highest concentration of 2,000 ppm but induced MetHb formation at ranging from 250 to 2,000 ppm. These findings reveal that the mechanism involved in formalin-induced cell-damaging effects differs from that induced by $S-ClO_2$ to olive flounder erythrocytes compared with $KMnO_4$ and $CuSO_4$.

Analysis of the Contents in Stabilized Chlorine Dioxide (안정화 이산화염소의 성분분석)

  • Shin, Ho-Sang;Oh-Shin, Yun-Suk
    • Analytical Science and Technology
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    • v.12 no.5
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    • pp.403-407
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    • 1999
  • A method for detecting chlorine dioxide in drinking water was developed by the modified iodometric titration. This method requires prior removal of interfering chemicals such as chlorine and/or other oxidants: the interferents are removed by $N_2$ purging. Chlorite and chlorate were successfully quantified by the ion chromatography-conductivity detection. Stabilized chlorine dioxide that is commercially available contained only traces of chlorine dioxide (0.01-0.09%). In reality, its main component is chlorite.

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도금폐수처리의 개선방법에 관한 연구

  • 이내우;최재욱;안병환;임이택;우창호
    • Proceedings of the Korean Institute of Industrial Safety Conference
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    • 1997.11a
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    • pp.261-266
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    • 1997
  • 가장 넓게 쓰이고 있는 알칼리염소법에 의한 도금폐수 처리법은 약 50년전에 Dodge와 Zabban에 의해 발표된 이론에 기초하고, 이것은 pH 및 ORP에 의존하는 반응으로 차아염소산이 시안화물을 시안산염으로 산화시키는 것이며, 알칼리조건하에서 염소화를 하는 동안에 시안화물이 파괴되고 중금속염은 침전을 생성한다. 이 반응은 1단계에서 시안산기가 바로 시안산나트륨으로 되는 것이 아니고 반응의 중간생성물인 염화시아노겐(CNCI)이라고 하는 독성물질이 생성되기 때문에 안전상의 문제가 있다. 또 알카리 염소법은 고농도일 경우에는 처리가 대단히 어렵고, 저농도일지라도 철, 니켈 및 구리와 같이 중금속성분이 다량 혼입되면 배출허용기준치이하로 처리하기는 사실상 불가능하다. (중략)

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