• Title/Summary/Keyword: 과망간산칼륨

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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 $CuSO_4$.

나일틸라피아 치어에 미치는 염화나트륨, 포르말린 및 과망간산칼륨의 급성독성

  • 박인석;최경철;노재구;김동수
    • Proceedings of the Korean Aquaculture Society Conference
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    • 2003.10a
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    • pp.113-113
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    • 2003
  • 본 연구에서는 나일틸라피아, Oreochomis niloticus를 대상으로 염화나트륨, 포르말린 및 과망간산칼륨에 의한 24시간 급성독성 조사를 실시하였다. 부화 후 14일의 양식산 나일틸라피아 치어(평균 전장 14.8±1.1 mm, 평균 체중 0.05±0.01 g)를 공시어로 사용하였다. 3반복 실험 후의 각 농도에 따른 24시 간 LC/sub 50/ 값과 95% 유의수준에서의 상한치와 하한치는 Litchfield and Wilcoxon 법(US EPA, 1978)에 따른 'probit analysis' software로 계산하였다. 각 처리군의 24시간 LC/sub 50/은 매우 좁은 농도 범위 내에서 급성독성 값에 대한 신뢰범위가 결정되었으며, 처리 농도 증가에 따라 매우 유의한 농도 의존성을 나타내었다. 대조군 나일틸라피아 치어는 희석수에 24시간 처리시 모두 생존하였다. 염화나트륨의 24시간 LC/sub 50/ 값은 18.6‰ 이었으며 95% 신뢰한계의 상한치는 18.7‰, 하한치는 18.5‰ 이었다. 포르말린의 24시간 LC/sub 50/ 값은 152 ppm 이었으며 95% 신뢰한계의 상한치는 156 ppm, 하한치는 148 ppm 이었다. 과망간산칼륨의 24시간 LC/sub 50/ 값은 2.09 ppm 이었으며 95% 신뢰한계 상한치는 2.11 ppm, 하한치는 2.07 ppm 이었다. 포르말린과 과망간산칼륨의 24시간 처리시 죽은 나일틸라피아 치어 개체들은 공통적으로 호흡 장애로 기인된다고 판단되는, 아가미덮개 열림과 아울러 입이 열렸고, 표피 점액에 손상을 입는 독성 증후를 보였다. 본 연구 결과와 더불어 앞으로, 1시간 혹은 2시간의 영향농도(Effect concentration) 파악, stage 민감도 조사, 처리 시간 및 처리 환경을 달리한 급성독성에 관한 연구가 필요할 것이다.}C$에서 전반적으로 증가하였으며, 저 수온인 15$^{\circ}C$는 4 시간까지 낮아지다가 이후 증가 되었다. Hb농도는 3$0^{\circ}C$$25^{\circ}C$에서 전반적으로 증가하는 경향을 보였으나 4 시간째 일시적으로 감소하는 경향을 보였다. 15$^{\circ}C$에서는 4시간째까지는 감소되었다가 6 시간째에는 높아지는 경향을 보였다. 이러한 증가된 경향은 온도가 높아질수록 용존 산소의 포화도가 낮아져 산소부족 요인에 의해 적혈구수의 증가와 함께 Ht수치도 높아지며 아가미운동을 통한 혈액으로의 산소운반이 능동적으로 이루어지고 있음을 나타내고 있다. 혈장 코티졸의 농도는 $25^{\circ}C$에서는 증가하는 경향을 보였으며, 1$0^{\circ}C$및 3$0^{\circ}C$에서는 1 시간까지 증가되었다가 회복되는 경향을 나타내었다. 신장에서의 SOD활성은 $25^{\circ}C$인 경우 대조구보다 높은 값을 유지하였다. 하지만, 30도에서는 4 시간째까지 증가하는 경향을 보였으나 이후 감소하는 경향을 보였으며, 저온인 1$0^{\circ}C$에서는 감소하였다. 간장에서의 CAT의 활성은 3$0^{\circ}C$인 경우 4시간까지 $25^{\circ}C$ 및 15$^{\circ}C$에서는 2 시간까지 증가하였다가 이후 낮아지는 경향을 보였다. 이상의 결과로 고ㆍ저 수온변화에 따른 스트레스가 장기화될 경우 어체의 건강상에 문제점의 발생하여 대량 폐사 및 질병발생의 야기될 것으로 사료된다.은 먹이 공급 6시간 후 가장 높은 값인 44.19$\pm$

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Chemical Effects of Nuclear Transformations in Metal Permanganates (금속 과망간산염의 핵변환에 의한 화학적 효과)

  • Lee, Byung-Hun;Kim, Bong-Whan
    • Journal of Radiation Protection and Research
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    • v.11 no.1
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    • pp.15-21
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    • 1986
  • The chemical effects resulting from the capture of the thermal neutrons by manganese in different crystalline permanganates, that is, potassium permanganate, sodium permanganate, silver permanganate, barium permanganate and ammonium permanganate, have been investigated. The distribution of radioactive manganese formed has been determined by using different absorbents and ion-exchangers, that is, manganese dioxide, alumina, Zeolite A-3, Kaolinite and Dowex-50. The distribution of radioactive manganese in various adsorbents and ion-exchangers has almost similar result for each permanganate. The affinity for radioactive manganous ion is greatest for Dewex-50. A significant increase of retention is shown through the thermal annealing and the retention depends on the first ionization potential of metal ion in permanganates.

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층류 박리된 관유동에 관한 실험적 연구

  • 이상준
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.14 no.4
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    • pp.937-944
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    • 1990
  • 본 연구에서는 파이프내에 부분 오리피스판을 장착하여 이 장애벽 전후에서 발생하는 유동현상을 박리 전단층의 유동구조와 재부착 경계층을 중심으로 실험적으로 연구하였다. 측정방법으로 유동의 속도장변화를 구하기 위하여 NMR 위상 영상법을 사용하였고, 과망간산칼륨을 염료로 가시화 실험을 수행하여 그 결과를 비교 검토하였 다.

Acute Toxicity of Sodium Chloride, Formaline and Potassium Permanganate to Nile Tilapia Fry (나일틸라피아 치어에 미치는 염화나트륨, 포르말린 및 과망간산칼륨의 금성독성)

  • 박인석;최경철;노재구;김동수
    • Journal of Aquaculture
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    • v.15 no.2
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    • pp.119-121
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    • 2002
  • A study on the acute toxicity in the Nile tilapia, Oreochromis niloticus fry showed that the 24hr-$LC_{50}$ was 18.6% for NaCl,152 ppm for formaline and 2.1 ppm for $KMnO_4$. The fry responded to narrow range of concentration of all the tested chemicals and their toxic effects were dose-dependent.

Chemical Oxygen Demand based on Spectrophotometric Measurement of Permanganate (흡광도 측정에 의한 화학적 산소 요구량)

  • Myung-Zoon Czae;Suw-Young Ly;Mi-Kyung Kim
    • Journal of the Korean Chemical Society
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    • v.38 no.12
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    • pp.880-884
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    • 1994
  • An indirect spectrophotometric method, presumably heretofore unmentioned, for the rapid determination of COD in the presence of chloride of high concentration is described. The alkaline sample is refluxed to react with a definite amount of permanganate, present in excess. A photometric measurement at 535 nm for the extent of the fading of the permanganate color after refluxing completes the procedure. The optimum conditions which give the absorbance-concentration plot the maximum linearity and slope in the range of 0∼5 ppm COD are as follows: reflux at $100\circC$ for 10 min in the presence of 0.15 mM permanganate and 0.2% NaOH with a sample size of 5 ml. An overall running time was less than 15 min. The t-test reveals that the proposed method is not significantly different from the official method.

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Manganese removal by KMnO4: Effects of bicarbonate and the optimum conditions (과망간산칼륨을 이용한 용해성 망간 제거: 중탄산염 영향 및 최적조건)

  • Lee, Yong-Soo;Do, Si-Hyun;Kwon, Young-Eun;Hong, Seong-Ho
    • Journal of Korean Society of Water and Wastewater
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    • v.30 no.2
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    • pp.207-213
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    • 2016
  • This study is focused on manganese (Mn(II)) removal by potassium permanganate ($KMnO_4$) in surface water. The effects of bicarbonate on Mn(II) indicated that bicarbonate could remove Mn(II), but it was not effectively. When 0.5 mg/L of Mn(II) was dissolved in tap water, the addition of $KMnO_4$ as much as $KMnO_4$ to Mn(II) ratio is 0.67 satisfied the drinking water regulation for Mn (i.e. 0.05 mg/L), and the main mechanism was oxidation. On the other hand, when the same Mn(II) concentration was dissolved in surface water, the addition of $KMnO_4$, which was the molar ratio of $KMnO_4/Mn(II)$ ranged 0.67 to 0.84 was needed for the regulation satisfaction, and the dominant mechanisms were both oxidation and adsorption. Unlike Mn(II) in tap water, the increasing the reaction time increased Mn(II) removal when $KMnO_4$ was overdosed. Finally, the optimum conditions for the removals of 0.5 - 2.0 mg/L Mn(II) in surface water were both $KMnO_4$ to Mn(II) ratio is 0.67 - 0.84 and the reaction time of 15 min. This indicated that the addition of $KMnO_4$ was the one of convenient and effective methods to remove Mn(II).

A Study on the Degradation of Cyanobacterial Toxin, Microcystin LR Using Chemical Oxidants (화학적 산화제를 이용한 남조류 독소, 마이크로시스틴 LR의 분해연구)

  • Pyo, Dong-Jin;Kim, Eun-Jung
    • Journal of the Korean Chemical Society
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    • v.48 no.5
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    • pp.467-472
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    • 2004
  • Cyanobacterial toxins, microcystins which exist in korean lakes show strong toxicity to fish, cattles and human. In this study, we tried to degrade microcystin LR using various chemical oxidants, Chlorine, Potassium permanganate and Hydrogen Peroxide. The detection method for the concentrations of microcystin LR in water samples was Enzyme-Linked Immunosorbent Assay (ELISA) method using the monoclonal antibody of microcystin. Chlorine degraded microcystin LR effectively at the concentration of 800 pg/mL microcystin LR and 12 ppm chlorine. The reaction took 40 minutes at pH 7. Potassium Permanganate also degraded microcystin LR successfully at the concentration of 2000 pg/mL microcystin LR and 1.2 ppm chlorine. The degradation reaction took 60 minutes at pH 7. In the case of hydrogen peroxide, the degradation rate of microcystin LR was very slow because of the slow reaction rate.

Designing a Reaction Model for Ozon Contactor in Advanced Water Treatment Systems (고도정수처리설비에서 오존접촉조의 반응 특성에 대한 모델 설계)

  • 박정호;이진락;서종진;이해영
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.15 no.1
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    • pp.70-77
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    • 2001
  • This paper present a fuzzy mxlel of describing reacton features for ozon contactor in advanced water treatn-ent systems. Input and output variables are chosen by considenng the object of ozon processing and several parameters related to management of water quahty. Dissolved organic carbon concentration, $UV_{254}$ absorptIon and $KM_NO_4$ consumption are proposed as common variables in input and outp.lt variables. Furthermore own concentration, raw water's temperature and contact time are suggested as input variables, Membership hmctions for input variables have triangular type share and the grades in each lrembership function are determined by investigating process data gathered at pilot planl The decision parts of fuzzy model have linear combination form of input variables and coefficients included in such linear equations are computedd with process clata in the sense of least square error Also fuzzy trodel suggested in this paper is partitioned by 3 independent fuzzy rnxlels using the characteristics of having no interactions armng output variables. As a result, such fuzzy mxlel has rrerits in computation and comprehension. According to simulatIon results, fuzzy moIel's outputs give almost similar data to process output under same input conditions.

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Assessing the Impact of Liquid Potassium Permanganate on Litter Quality of Poultry (액상 과망간산칼륨 적용시 육계 깔짚의 특성 평가)

  • Choi, In-Hag
    • Journal of Environmental Science International
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    • v.29 no.1
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    • pp.119-122
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    • 2020
  • The effects of liquid potassium permanganate (KMnO4) on the litter quality of poultry were investigated. Two-hundred-forty 0-day-old broiler chickens (Arbor Acres) were randomly assigned to two treatments with four replicated pens of 30 chickens each. Treatment liquid KMnO4 at a rate of 50 g of liquid KMnO4/kg of poultry litter was sprayed onto the litter surface using a small hand pump; others served as a control that was applied without liquid KMnO4 additions. Compared with controls, the treatment liquid KMnO4 showed no differences in pH, total nitrogen and ammonia concentration. It was concluded that liquid KMnO4 did not significantly increase poultry litter quality. Mechanisms relating to increasing litter pH and ammonia using liquid KMnO4 are an oxidant agent (not acid-foaming agents).