• Title/Summary/Keyword: permanganate

검색결과 105건 처리시간 0.022초

과망간산카리움 처리(處理)한 동물(動物) 아밀로이드 단백(蛋白)의 Congo red에 대한 염색반응(染色反應) (Staining Response of KMnO4-Treated Animal Amyloid Proteins to Congo red)

  • 김덕환
    • 농업과학연구
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    • 제13권1호
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    • pp.139-146
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    • 1986
  • 과망간산카리움법(法)을 이용(利用)하여 자연발생(自然發生)아밀로이드증(症)의 소(15례(例)), 개(1례(例)), 및 고양이 (1례(例)) 그리고 인공유발(人工誘發)아밀로이드증(症) (토끼, 1례(例))으로부터 채취(採取)한 아밀로이드단백(蛋白)의 침착장기(沈着臟器)에 대하여 침착(沈着)아밀로이드의 성상(性狀)을 조직화학적(組織化學的)으로 검사(檢査)하였다. 그 결과(結果), 소, 개 및 인공유발 토끼의 아밀로이드증(症)에서 각(各) 장기(臟器) 모두 적갈색(赤褐色)의 형광(螢光)및 녹색(綠色)의 편광(扁光)이 소실(消失)되어 과망간산카리움의 처리(處理)에 대해 감수성(感受性)이었다. 이 사실(事實)로 보아 소, 개 및 인공유발아밀로이드증례(症例) 모두 amyloid protein A(AA 단백(蛋白))에 상당(相當)하는 것으로 판명(判明)되었다. 반면 고양이 1증례(症例)에서는 과망간산카리움처리(處理) 후(後)에도 침착(沈着)아밀로이드의 Congo red에 대한 친화성(親和性)이 잔존(殘存)하였고 또한 신장(腎臟)의 사구체(絲球體)에 면역(免疫) 글리부린의 침착(沈着)이 인정(認定)된 점으로 보아, 본(本) 증례(症例)의 아밀로이드 단백(蛋白)은 amyloid light chain related protein (AL 단백(蛋白))에 상당(相當)하는 것으로 사료(思料)되었다.

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

  • 이용수;도시현;권영은;홍성호
    • 상하수도학회지
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    • 제30권2호
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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).

산화-막여과에 의한 망간 제거 시 과망간산과 차아염소산 복합 주입의 효과 (Multiple injection of permanganate and hypochlorite for manganese removal by oxidation combined with membrane filtration)

  • 곽효은;박정원;민소진;임주완;김기홍;이호성;남창현;박용민;박병규
    • 상하수도학회지
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    • 제32권3호
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    • pp.211-220
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    • 2018
  • The water containing soluble manganese may cause problems such as discolored water, unpleasant taste, fouling or scaling of pipes in water distribution system, and so on. Conventional water treatment processes using sand filtration or sedimentation after oxidation, however, cannot often meet manganese standard for drinking water. Two types of oxidants, potassium permanganate ($KMnO_4$) and sodium hypochlorite (NaOCl), were utilized at the same time for manganese oxidation, and then the precipitated manganese oxides were removed by low pressure membrane filtration in this study. In batch experiments, the multiple injection of both oxidants showed more effective manganese removal than did the single injection using either of them. Moreover, the deterioration of manganese removal at low temperature was less serious for the multiple injection than that for the single injection. Manganese removal by the continuous system of oxidation by multiple injection combined with membrane filtration was higher than those by batch experiments at the same oxidation conditions. In addition, less membrane fouling was observed for membrane filtration with oxidation during continuous membrane filtration than membrane filtration without oxidation. These results indicate that the oxidation by multiple injection coupled with membrane filtration was efficient and applicable to actual water treatment for manganese removal.

과망간산칼리에 의한 어류 아가미의 병리조직학적 변화와 수질에 따른 영향 (Histopathological changes in fish gills by potassium permanganate and influence of water quality)

  • 신미영;최동림;정준기;전세규
    • 한국어병학회지
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    • 제6권1호
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    • pp.21-55
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    • 1993
  • 해산어에서 넙치, 조피볼락, 담수어에서 비단잉어와 뱀장어의 4 어종에서 과망간산칼리에 의한 아가미의 조직변화를 관찰하였다. 해산어는 담수어에 비해 과망간산칼리에 더 민감하며, 1ppm의 저농도에서도 아가미의 조직변화가 일어났다. 뱀장어는 비단잉어보다 과망간산칼리에 대한 저항성이 더 높았다. 특히 뱀장어에서는 과망간산칼리에 노출된 어류의 아가미에서 점액세포의 증가가 두드러졌다, 사육수에서는 지하수에서보다 과망간산칼리의 영향이 훨씬 감소하는데, 이 차이가 유기물질의 양에 의한 것임은 사료농도별로 한 실험에서 확인되었다. 또한 용존산소에 따라서도 과망간산칼리의 효력이 영향을 받는다.

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Determination of Optimum Coagulants (Ferric Chloride and Alum) for Arsenic and Turbidity Removal by Coagulation

  • Choi, Young-Ik;Jung, Byung-Gil;Son, Hee-Jong;Jung, Yoo-Jin
    • 한국환경과학회지
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    • 제19권8호
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    • pp.931-940
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    • 2010
  • The Raw water from Deer Creek (DC) reservoir and Little Cottonwood Creek (LCC) reservoir in the Utah, USA were collected for jar test experiments. This study examined the removal of arsenic and turbidity by means of coagulation and flocculation processes using of aluminum sulfate and ferric chloride as coagulants for 13 jar tests. The jar tests were performed to determine the optimal pH range, alum concentration, ferric chloride concentration and polymer concentration for arsenic and turbidity removal. The results showed that a comparison was made between alum and ferric chloride as coagulant. Removal efficiency of arsenic and turbidity for alum (16 mg/L) of up to 79.6% and 90.3% at pH 6.5 respectively were observed. Removal efficiency of arsenic and turbidity for ferric chloride (8 mg/L) of up to 59.5% at pH 8 and 90.6% at pH 8 respectively were observed. Optimum arsenic and turbidity removal for alum dosages were achieved with a 25 mg/L and 16 mg/L respectively. Optimum arsenic and turbidity removal for ferric chloride dosages were achieved with a 20 mg/Land 8 mg/L respectively. In terms of minimizing the arsenic and turbidity levels, the optimum pH ranges were 6.5 and 8for alum and ferric chloride respectively. When a dosage of 2 mg/L of potassium permanganate and 8 mg/L of ferric chloride were employed, potassium permanganate can improve arsenic removal, but not turbidity removal.

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

  • 표동진;김은정
    • 대한화학회지
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    • 제48권5호
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    • pp.467-472
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    • 2004
  • 남조류 독소인 마이크로시스틴은 여름철 우리나라 여러 호수들에 존재하여 물고기와 가축 그리고 인간에게 강한 독성을 나타내는 독소이다. 본 연구에서는 화학적 산화제인 염소($Cl_2$), 과망간산칼륨($KMnO_4$), 과산화수소수($H_2O_2$)를 이용하여 마이크로시스틴중 가장 독성이 강한 마이크로시스틴 LR의 분해실험을 시도하였다. 수중 마이크로시스틴LR의 농도 측정은 마이크로시스틴 LR의 단일클론항체를 이용한 효소면역흡착분석법으로 측정하였다. 실험결과 염소는 마이크로시스틴 LR의 농도 800 pg/mL, $Cl_2$의 농도 12 ppm, 암소방치시간 40분, pH 7에서 가장 잘 분해되었으며, 또한 pH 8 이상에서는 독소 파괴가 눈에 띄게 감소하였다. 과망간산칼륨의 경우 마이크로시스틴 LR의 농도 2000 pg/mL, $KMnO_4$의 농도 1.2 ppm, 암소방치시간 60분, pH 7에서 가장 잘 분해되었다. 그러나 과산화수소수에 의한 마이크로시스틴 LR의 분해는 느린 화학 반응 속도 때문에 효과적이지 못함을 알수 있었다.

CONTROL OF DIATOM BY PREOXIDATION AND COAGULATION IN WATER TREATMENT

  • Seo, Jeong-Mi;Kong, Dong-Soo;Ahn, Seoung-Koo;Kim, Hyun-Ook
    • Environmental Engineering Research
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    • 제11권1호
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    • pp.45-53
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    • 2006
  • Conventional coagulation is still the main treatment process for algae removal in water treatment. The coagulation efficiency can be significantly improved by the preoxidation of algae-containing water. Jar test was conducted to determine the optimal condition for the removal of diatoms, especially Cyclotella sp. by preoxidation and the subsequent coagulation. The effects of various concentration of PAC (Polyaluminum chloride) on coagulation with and without preoxidation using chlorine or potassium permanganate at different pHs (7.7 and 9.0) were evaluated. At pH 7.7, preoxidation with 2ppm $Cl_2$ followed by coagulation with 7.5 ppm PAC coagulant could reduce Cyclotella sp. concentration by 86%. At pH 9.0, preoxidation with 1 mg $KMnO_4/L$ followed by coagulation with 12.5 ppm PAC coagulant reduced Cyclotella sp. concentration by 85%. Non-linear regression was applied to determine the optimal condition. At pH 7.7 and 9.0, R was over 0.9, respectively. The pH of algal blooming water is over 9.0. Algae (diatom; Cyelotella sp.) can be controlled in the following ways: preoxidation with 1 mg $KMnO_4/L$ followed by coagulation with 12.5 ppm PAC coagulant can remove 80% algae from water. If water pH is adjusted to 7.7, it was expected that less amount of coagulant (7.5 or 10 mg PAC /L) after preoxidation ($Cl_2$ 2 ppm or $KMnO_4$ 0.33, 1 ppm) would be needed to achieve similar level of algae removal. The oxidation with 0.33ppm $KMnO_4$ followed by coagulation with 7.5 ppm PAC coagulant was preferable due to cost-effectiveness of treatment condition and color problem after treatment.

ABS 수지상의 도금층 형성을 위한 에칭 방법 연구 (Study of Etching Method for Plating Layer Formation of ABS Resin)

  • 최경수;최기덕;신현준;이상기;최순돈
    • 한국표면공학회지
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    • 제47권3호
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    • pp.128-136
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    • 2014
  • In the present study, we successfully developed an eco-friendly chemical etching solution and proper condition for plating on ABS material. The mechanism of forming Ni plating layer on ABS substrate is known as following. In general, the etching solution used for the etching process is a solution of chromic acid and sulfuric acid. The etching solution is given to the surface resulting in elution of butadiene group, so-called anchor effect. Such a rough surface can easily adsorb catalyst resulting in the increase of adhesion between ABS substrate and Ni plating layer. However a use of chromic acid is harmful to environment. It is, therefore, essential to develop a new alternative solution. In the present study, we proposed an eco-friendly etching solution composed of potassium permanganate, sulfuric acid and phosphoric acid. This solution was testified to observe the surface microstructure and the pore size of electrical Ni plating layer, and the adhesive correlation between deposited layers fabricated by electro Ni plating was confirmed. The result of the present study, the newly developed, eco-friendly etching solution, which is a mixture of potassium permanganate 25 g/L, sulfuric acid 650ml/L and phosphoric acid 250ml/L, has a similar etching effect and adhesion property, compared with the commercially used chromium acid solution in the condition at $70^{\circ}C$ for 5 min.

Carboxylated Alginic Acid 및 이를 함유한 세정용 화장품의 납 흡착 효과 (Lead Adsorption by Carboxylated Alginic Acid and Its Application in Cleansing Cosmetics)

  • 박희연;장미순;카드니코바 이리나;김연계;임치원;윤호동
    • 한국수산과학회지
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    • 제43권5호
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    • pp.400-405
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    • 2010
  • This study investigated lead adsorption by carboxylated alginic acid and its application in cleansing cosmetics. Carboxylated alginic acid showed the highest lead adsorptivity after oxidation in a 4-6 mM hydrogen peroxide solution at $20-30^{\circ}C$ for 30-40 min. Carboxylated alginic acid adsorbed $648.1{\pm}2.8-653.0{\pm}2.9$ mg/g of lead dry mass at pH 4-6. Carboxylated alginic acid modified by hydrogen peroxide and potassium permanganate adsorbed $651.3{\pm}3.8$ and $639.9{\pm}4.0$ mg/g of lead dry mass, respectively. Carboxylated alginic acid showed higher lead adsorptivity after modification by hydrogen peroxide than by potassium permanganate, with an increase of ~30% compared with raw alginic acid. To access the potential application of carboxylated alginic acid in cleansing cosmetics, we investigated the lead adsorptivity, conditions of the cosmetics procedure, and cytotoxicity of various concentrations of cleansing cosmetics added to 5% carboxylated alginic acid. The ideal cosmetic concentrations combined with 5% carboxylated alginic acid were 70% for peeling gel, 20% for massage cream, 20% for foam cleansing and 40% for cleansing cream. There was no cytotoxicity in cleansing cosmetics combined with 5% carboxylated alginic acid.

한국형 부영양화지수(TSIKO)의 인자로서 TOC의 적용성 검토 (Examination of the Applicability of TOC to Korean Trophic State Index (TSIKO))

  • 김범철;공동수
    • 한국물환경학회지
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    • 제35권3호
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    • pp.271-277
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    • 2019
  • Korean Trophic State Index ($TSI_{KO}$) was developed in 2006, and was composed of COD ($COD_{Mn}$ based on permanganate method), Chlorophyll a (Chl.a) and total phosphorus (TP). However, $COD_{Mn}$ usually represents only 50-60% of total organic matter in stream or lake water due to low oxidizing power of permanganate. This study investigated the relationship between TOC and $COD_{Mn}$ based on the average data for the whole layer in 81 lakes in Korea, during the period 2013-2017. As a result, $COD_{Mn}$ was found to be 1.54 times more than TOC in 66 of the freshwater lakes and 3 brackish lakes (TOC measured using thermo-oxidation method). TOC was about a quarter of $COD_{Mn}$ in 8 coastal lakes (TOC measured using UV-persulfate oxidation method), and it appeared to be underestimated due to chloride interference. Using the data of 69 lakes with exception of 12 brackish lakes, $TSI_{KO}$(TOC) was developed based on the correlation between TOC and $COD_{Mn}$, while $TSI_{KO}$(COD) was replaced with $TSI_{KO}$(TOC). However, for trophic state assessment of brackish lakes, the $TSI_{KO}$(TOC) can only be utilized in case that TOC is measured through thermo-oxidation method. The determination coefficient of $TSI_{KO}$(Chl) to $TSI_{KO}$(COD) in 66 freshwater lakes and 3 brackish lakes was 0.83, while that to $TSI_{KO}$(TOC) was 0.68. This difference could be attributed to the recalcitrant organic part of TOC.