• Title/Summary/Keyword: hypochlorite treatment

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벼 키다리병 방제를 위한 차아염소산나트륨 이용 (Use of Sodium Hypochlorite for the Control of Bakanae Disease in Rice)

  • 신동범;고재덕;이봉춘;강인정;강항원
    • 식물병연구
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    • 제20권4호
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    • pp.259-263
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    • 2014
  • 차아염소산나트륨의 벼 키다리병 종자소독제로서 활용 가능성을 구명하고자, 항균 활성 효과와 종자소독 효과를 연구한 결과, 차아염소산나트륨이 높은 항균 활성을 나타내어 $100{\mu}l/l$ 이상의 농도에서 균총이 형성되지 않았으며 $80{\mu}l/l$ 농도에서도 균 총형성이 현저히 낮았다. 벼 키다리병균 감염 벼 종자를 차아염소산나트륨 0.3% 농도로 8시간 침지 처리 시 종자소독효과가 90%로 높았다. 또한 차아염소산나트륨 0.5%, 0.3% 용액에 감염종자를 각각 12시간 처리하였을 벼 키다리병 발병율이 4.3%, 4.7%로 무처리 발병율 97.3%에 비해 현저히 억제되었으며, 유묘 출현율이 무처리 대비 29.1%, 26.9% 높았다. 그리고 벼 키다리병이 발생하여 자연 감염된 주남벼 종자를 사용하여 차아염소산나트륨 처리한 후 prochloraz 처리와, prochloraz를 처리한 후 차아염소산나트륨 처리의 종자 감염율이 각각 4.0%, 6.3% 로서 prochloraz 단독처리 13.7% 보다 낮은 경향을 보였으며, 벼 키다리병 발병율도 각각 3.7%, 8.3% 로 prochloraz 단독처리 14.3% 보다 낮았다. 아울러 차아염소산나트륨을 처리한 후 prochloraz를 처리한 것에서 더 높은 종자소독효과를 보였다.

Removal of Herbicide Glyphosate in a Drinking Water Treatment System

  • Navee, Angsuputiphant;Kim, Jang-Eok
    • 한국환경농학회지
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    • 제28권2호
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    • pp.186-193
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    • 2009
  • The removal efficiency of herbicide glyphosate in a drinking water treatment system was investigated. Four major processes of a drinking water treatment system were selected and experiments were performed separately including; treatments by sodium hypochlorite (NaOCl), a sedimentation process by PAC (polyaluminum chloride), ozonation and a GAC (granular activated carbon) treatment. In the sodium hypochlorite experiment, about 50% of the glyphosate was removed by 2 mg/L of hypochlorite and more than 90% was eliminated when 5 mg/L of NaOCl was applied. Also, AMPA, the main metabolite of glyphosate, was treated with hypochlorite. More than 30% of the AMPA was removed by 2 mg/L of hypochlorite and 50% by 5 mg/L. In the PAC experiment, it was determined that more than 60% could be removed. Further experiments were performed and the results indicated that the removed amount was dependent upon the amount of soil and upon the properties of the soil especially that of clay minerals. Ozonation could oxidize glyphosate to its byproducts at about a level of 50%. In contrast, when 1 mg/L of glyphosate was treated with GAC, the amount removed was negligible. The results of this experiment were conclusive. We confirmed that drinking water, which has been contaminated with water polluted with glyphosate can be effectively purified by the application of the drinking water treatment processes currently used.

Effect of Sodium Hypochlorite for Controlling Bacterial Blotch on Pleurotus ostreatus

  • Oh, Se-Jong;Kim, Han-Kyoung;Kim, Hee-Kyu;Fermor, T.R.
    • Mycobiology
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    • 제28권3호
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    • pp.123-126
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    • 2000
  • Sodium hypochlorite alkaline was tested against Pseudomonas tolaasii causing bacterial blotch on cultivated oyster mushroom (Pleurotus ostreatus). The minimum inhibitory concentration of sodium hypochlorite against P. tolaasii contained active chlorine (AC) at 1.4 mg/l on plate assay. The highest cultivation yield was obtained from the treatment of AC 5.7 mg/l. Treatment of sodium hypochlorite at the rate of higher than AC 11.4 mg/l resulted in reduced yields at the harvest. However, the population of total bacteria on the bed surface treated with AC 5.7 mg/l of sodium hypochlorite was maintained to some extent. Inhibitory concentration against total bacteria on the bed surface was over AC 22.8 mg/l. Mushroom mycelium was damaged and its growth strongly inhibited at the concentration of AC 200 mg/l. Mushroom caps showed yellowish symptom by chemical injury by treatments of AC 74.1 mg/l or higher. Sporocarps infected by P. tolaasii were irrevocable at any concentration of sodium hypochlorite. Routine watering with AC 5.7 mg/l from mushroom initiation to the end of picking resulted in reduced bacterial blotch incidence of 40% and 86% at two mushroom farms. The treatment resulted in higher quality mushroom production compared to that conventionally watered with tap water alone.

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Hypochlorite treatment of polyamide membrane for improved reverse osmosis performance

  • Shao, P.;Kurth, C.J.
    • Membrane and Water Treatment
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    • 제4권1호
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    • pp.69-81
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    • 2013
  • The pH-dependent inter-conversion of the three free chlorine species ($Cl_2$, HOCl, OCl-) present in the aqueous hypochlorite solution was theoretically investigated. Each species was found overwhelmingly present in a characteristic pH range. Hypochlorite treatment of the polyamide membrane was carried out over these pH ranges and various membrane responses were observed. As pH is less than 8, membrane tends to be N-chlorinated by $Cl_2$ and HOCl, and N-chlorinated membrane showed reduced water permeance and salt rejection. As pH rises to 10-12, $OCl^-$ appears to be the dominating chlorine species. Membrane hydrolysis was found to well interpret the improved water permeance and salt rejection. When the pH is between 8-10, both N-chlorination and hydrolysis contribute to the response of the membrane, and the treated membrane showed improved salt rejection but reduced water permeation. Excessive hydrolysis occurred while the membrane was treated at pH 13 for the much stronger alkalinity.

유치의 근관 치료 중 차아염소산나트륨의 치근단 유입으로 인한 합병증 (Accidental Extrusion of Sodium Hypochlorite during Endodontic Treatment in a Primary Tooth)

  • 김민지;김진영;임수민
    • 대한소아치과학회지
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    • 제42권3호
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    • pp.264-269
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    • 2015
  • 차아염소산나트륨은 가장 자주 쓰이는 근관 세척제이지만, 그 독성과 부작용에 대해서는 많이 인식되어 있지 않다. 본 증례는 근관 치료 중 차아염소산나트륨이 치근단 조직으로 압출되어 심각한 합병증이 발생하였기에 이를 보고하는 바이다. 만 5세의 남자 환자에서 근관 치료 중 차아염소산나트륨이 치근단 조직으로 유입되어 갑작스런 통증 및 부종, 주위 조직의 피하출혈 그리고 근관 내의 지속적 출혈을 보였다. 환자는 입원치료를 받았고, 진통제와 항생제를 처방받았다. 근단공이 넓은 미성숙 영구치와 유치, 치근흡수, 천공이 일어난 치아에서는 근관 치료 시 차아염소산나트륨이 압출되지 않도록 더욱 각별한 주의가 필요하다. 합병증이 발생하였을 때에는 적절한 환자의 관리와 약물치료가 필요하다.

A Study on the Chemical Treatment Techniques of High Concentration Ammonia Nitrogen in Food Wastewater

  • Tae-Hwan JEONG;Su-Hye KIM;Woo-Taeg KWON
    • 웰빙융합연구
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    • 제6권3호
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    • pp.33-36
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    • 2023
  • Purpose: Since the food wastewater contains a high concentration of nitrogen, it is very important to find a way to efficiently remove it. Research design, data and methodology: A total of four experiments were conducted under different conditions to remove ammonia nitrogen present in the food wastewater. The experiment was designed by adding sodium hypochlorite to the raw food wastewater and varying conditions such as pH control, aeration/precipitation, and stirring. Results: The ammonia nitrogen removal rate in Experiment 1 was about 12% (sodium hypochlorite added), ammonia nitrogen increased about 4.7% in Experiment 2 (sodium hypochlorite added after aeration/precipitation in a bioreaction tank, stirring), and decreased about 52.5% (sodium hypochlorite added after controlling and stirring). Conclusions: When the concentration of sodium hypochlorite was high, ammonia nitrogen was best removed, and the pH was adjusted to 12, and sodium hypochlorite was added after stirring, and the removal was the second best. If the method of this study is further studied and developed, it can be basic data for ammonia nitrogen removal in the future.

Cation exchange membrane and anion exchange membrane aided electrolysis processes for hypochlorite generation

  • Seong K. Kim;Dong-Min Shin;Ji Won Rhim
    • Membrane and Water Treatment
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    • 제14권2호
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    • pp.55-63
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    • 2023
  • In this study, the influence of different IEMs (ion exchange membranes) to performance of the hypochlorite electrolysis unit with Cl2 recovery stream was investigated. More specifically, Nafion 117-a representative cation exchange membrane (CEM)-and aminated polypheylene oxide (APPO)-an anion exchange membrane (AEM)-were installed in the hypochlorite electrolysis unit, and the performance and the energy efficiency of the units were evaluated and compared. Regardless of whether CEM (Nafion 117) or AEM (APPO) was installed, the rate of hypochlorite generation was increased (by up to 24.3% and 22.2% for Nafion 117 and APPO, respectively) compared with the unit without an IEM. On the other hand, the power efficiency and the optimum operation condition of hypochlorite production units seem to depend on the conductivity and stability of the installed IEM. As the result, between Nafion 117 and APPO, higher performance and efficiency were achieved with Nafion 117, due to excellent conductivity and stability of the membrane.

광질(光質), 생장조절물질(生長調節物質) (GA, BA, ABA) 및 Sodium Hypochlorite의 처리가 상치 (Lactuca sativa L.) 종자의 발아(發芽)에 미치는 영향(影響) (Effects of Light Source, Plant Growth Regulators (GA, BA, ABA) and Sodium Hypochlorite on 'Grand Rapid' Lettuce (Lactuca Sativa L.) Seed Germination)

  • 이영복;김영래
    • 농업과학연구
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    • 제10권2호
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    • pp.242-248
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    • 1983
  • 상치종자(種子)에 광질(光質), 생장조절물질(生長調節物質), soduim hypochlorite침지처리하여 발아시험(發芽試驗)한 결과(結果)는 다음과 같다. 1. 자연광(自然光) 및 적색광하(赤色光下)에서 GA 및 BA는 발아(發芽)를 촉진(促進)시켰으며, 청색광(靑色光)이나 ABA는 발아(發芽)를 억제(抑制)시켰다. 2. 생장조절물질(生長調節物質)의 복합처리시(複合處理時) GA 농도(濃度)가 높아질수록 발아율(發芽率)은 상승(上乘)하며 암흑하(暗黑下)에서는 BA농도(濃度) 10ppm에서 발아율상승효과(發芽率上乘效果)가 컸다. 3. Sodium hypochlorite 20분(分) 이상(以上) 침지처리로 암흑하(暗黑下)에서도 85%이상(以上)의 발아율(發芽率)을 보였다. 4. ABA하(下)에서도 sodium hypochlorite 침지처리로 발아율상승효과(發芽率上乘效果)를 볼 수 있었다.

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실험실 폐수중 Aflatoxin 감소를 위한 화학적 처리에 관한 연구 (Chemical Treatment for the Destruction of Aflatoxins in Laboratory Waste Water)

  • 김종규
    • 한국환경보건학회지
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    • 제18권2호
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    • pp.52-56
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    • 1992
  • The ability of chemicals, 10% sodium hypochlorite, 28% ammonium hydroxide, 5% sodium hydroxide, 5% sodium bicarbonate, 0.1% hydrochloric acid, 5% hydrogen peroxide, and 5% acetone, to destroy aflatoxins in laboratory waste water containing 3.26 ppb of B$_{1}$ 7.64 ppb of B$_{6}$3 ppb of G$_{1}$, and 11.39 ppb of G$_{2}$ with the total of 29.11 ppb was investigated. High performance liquid chromatograph (HPLC) was used for the separation and quantitation of aflatoxins. Treatment for 2 hours by the chemicals affected the destruction of aflatoxins and the most effective chemical was 10% sodium hypochlorite (p<0.05). Sodium hypochlorite concentrations more than 1% significantly reduced aflatoxin B$_{2}$, G$_{1}$, G$_{2}$ and total aflatoxins and more than 3% reduced B$_{1}$ (p<0.05). No further significant decreases were observed above the concentration of 5% for all 4 aflatoxins. Complete destruction of aflatoxins B$_{2}$, G_{1}$, and G$_{2}$ was achieved by 5% sodium hypochlorite at 48 hours and B$_{1}$ at 72 hours.

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목질계 Biomass의 변환이용(제1보)-기계펄프로부터 용해용펄프의 제조- (Conversion of Woody Biomass for Utilization( I )-The Preparation of Dissolving Pulp from Mechanical Pulp-)

  • 양재경;임부국;이종윤
    • 펄프종이기술
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    • 제29권3호
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    • pp.51-59
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    • 1997
  • Dissolving pulp is a low yield(30∼35%) bleached chemical pulp that has a high cellulose content (95% or higher) suitable for use in cellulose derivatives such as rayon, cellulose acetate. This research was studied for dissolving pulp preparation as the raw material of viscose rayon from commertial pulps. (TMP, CP, DIP) In the change of pulp(cellulose) characteristics after sodium hypochlorite and solvolysis treatment. the following results were obtained In the case of sodium hypochlorite pretreatment, we have obtained pulp that high purity cellulose, but degree of polymerization was inclined to decrease less than 170∼240. Comparing sodium hypochlorite pretreatment and solvolysis pretreatment, solvolysis pretreatment is superior to sodium hypochlorite process for making dissolving pulp. We think that the low degree of polymerization of cellulose because of increasing degradation of cellulose during delignification treatment.

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