• 제목/요약/키워드: alkaline agent

검색결과 210건 처리시간 0.026초

니켈도금기술을 이용만 알칼리형 연료전지용 Ni-PTFE전극의 개발 (Preparation of Ni-PTFE Electrode using Nickel Plating for Alkaline Fuel Cell)

  • 김재호;이영석
    • 한국수소및신에너지학회논문집
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    • 제20권4호
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    • pp.291-299
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    • 2009
  • Ni-plated polytetrafluoroethylene(Ni-PTFE) particles($25{\mu}m$, $500{\mu}m$) were prepared by using nickel electroless plating. The Ni content in Ni-PTFE particles increased with increasing the amount of reduction agent. At about 53 wt% Ni content, $25{\mu}m$ Ni-PTFE particles showed conductivity of 320S/m. The Ni-PTFE particles were formed into the Ni-PTFE plate using heat treatment at $350^{\circ}C$ under $10{\sim}1000kg/cm^2$. The Ni-PTFE plate displayed the high conductivity of 5100S/m due to the formation of 3-dimentional Ni network. The plate was used as an electrode in an alkaline fuel cell(AFC). In terms of the current density, the Ni-PTFE electrode having higher Ni content(53 wt%) showed improved performance.

탈지조성에 따른 철강용 알칼리탈지제의 합성 및 특성 (Synthesis and Characteristics of Alkaline Degreasing Agents for Steel Containing Degreasing Components)

  • 박은석;정동진;박홍수;함현식
    • 한국응용과학기술학회지
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    • 제20권2호
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    • pp.81-86
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    • 2003
  • To prepare alkaline degreasing agents(SADAs), tetrasodium pyrophosphate(TSPP), $Na_2CO_3$, Tetronix T-701 (T-701), Na-dioctyl sulfosuccinate(303C), Demol C, and MJU-100A were blended. The prepared degreasing agents were tested with steel specimens and the results were as follows. The degreasing powers of SADA-6($Na_2CO_3$ 50g/TSPP 25g/T-701 10g/303C 15g/Demol C 12g/MJU-100A 8g/water 130g mixture) for press-rust preventing oil were 98% and 99% degreasing at 4wt%, 70 $^{\circ}C$ and 90 $^{\circ}C$, respectively; for quenching oil, the degreasing power of SADA-6 was 92% degreasing at 4wt% and 70 $^{\circ}C$. From these results, it was proved that the SADA-6 exhibits a good degreasing power. Foam heights measured immediately after foaming by Ross & Miles method and Ross & Clark method at 6wt% and 60 $^{\circ}C$ were 16mm and 40mm, respectively. SADA-6 was proved a good low foaming degreasing agent.

알킬 알킬포스피네이트와 알킬 페닐포스피네이트들의 염기성 가수분해 (Alkaline Hydrolysis of Alkyl Alkylphosphinate and Alkyl Phenylphosphinates)

  • 양일우;정영진
    • 한국응용과학기술학회지
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    • 제19권3호
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    • pp.161-166
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    • 2002
  • The alkaline hydrolysis of alkyl alkylphosphinate and alkyl phenylphosphinates have been studied at room temperature. The hydrolysis proceeded as an one-stage reaction($S_{N}$ 2) and involved a nucleophilic attack of the hydroxyl ion on the phosphorus atom. And the length of the alkoxy group in the phosphinate esters affected on hydrolysis. Therefore, the alkaline hydrolysis may be used as a method to decompose the chemical agents.

산성 사이징된 재활용 섬유와 중성 사이징의 상용성 (Compatibility of the Recycled Linerboard Made in Acid Sizing System under Neutral or Alkaline Papermaking Conditions)

  • 서만석;이경호;이학래
    • 펄프종이기술
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    • 제48권2호
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    • pp.56-60
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    • 2016
  • Neutral or alkaline papermaking provides many advantages in paper strength and processing conditions. It also provides the opportunity of using calcium carbonate fillers in papermaking. These diverse advantages have made almost all paper machines of printing and writing papers run under neutral and alkaline conditions. On the other hand, linerboard machines, which use recycled papers as a raw material, are running under acid conditions using a rosin sizing system. Because the recycled raw materials used by the linerboard industry contain significant amounts of alkaline papers, the linerboard industry has an interest in the possibility of using the neutral or alkaline papermaking opportunity. In this study, the compatibility of the recycled linerboards under neutral or alkaline papermaking conditions was examined by recycling them under various pH conditions. The sizing degree of the papers recycled under neutral or alkaline was significantly lower than that of acid formed papers indicating that during the neutral or alkaline recycling process the rosin sized papers lost their sizing efficiency. Recycling of acid formed linerboards under neutral or alkaline conditions increased the amount of foam, and the foam contained substantial amount of solid materials derived from the acid sizing systems. Use of cationic polyelectrolytes including PEI and poly-DADMAC improved the sizing degree of the recycled papers under neutral and alkaline conditions. PEI decreased the foam generation as well while poly-DADMAC did not show any reducing effect of the foam. These results suggest that PEI forms coordinate bonds with rosin acid and precipitate them onto the surface of recycled fibers, while the reaction products between poly-DADMAC and rosin acid ions still remain water soluble under neutral or alkaline conditions.

효모를 사용한 친환경 인디고 염색: 알칼리수용액 종류에 따른 환원력 (Eco-friendly Indigo Dyeing using Baker's Yeast: Reducing Power according to Alkaline Solution Type)

  • 손경희;신윤숙
    • 한국염색가공학회지
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    • 제31권4호
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    • pp.249-257
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    • 2019
  • Baker's yeast(Saccharomyces cerevisiae) was used as a biocatalyst for eco-friendly indigo dyeing and the reducing power of yeast according to the alkaline solution type was compared. NaOH solution, lye, and buffer solution were used as alkaline solutions. The reducing power(K/S value, oxidation/reduction potential(ORP), pH) was monitored according to the elapsed time including the initiation of reduction, peak reduction, and the end of reduction. In all alkaline solutions, it was confirmed that yeast can be used reducing agent in indigo reduction dyeing. The pH stability and reducing power of buffer solution was better than that of NaOH alone. Although, pH and ORP stability of the reduction bath in lye were better than that of buffer solution, K/S value in buffer solution was higher compared to lye. The reducing power was different depending on the starting pH of the dye bath, and it was better when starting at pH 10.70 than at pH 11.30. Fastnesses to washing, rubbing, and light were relatively good with above rating 4. There was no significant difference in colorfastness depending on the type of alkaline solutions.

항산화제 및 금속착화합물이 1,2,4-benzenetriol에 의해 유도된 HL-60 세포의 DNA 손상에 대한 보호 효과 (Effect of Antioxidants and Chelating Agents on 1,2,4-benzenetriol-induced DNA damage in HL-60 cells analysed by alkaline comet assay)

  • 김선진;정해원
    • 한국환경성돌연변이발암원학회지
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    • 제20권1호
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    • pp.7-13
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    • 2000
  • The mechanisms of benzene toxicity is not fully elucidated, although the metabolism of benzene is very well understood. In order to study the mechanism of benzene toxicity, we investigated DNA damage induced by benzene metabolite, 1,2,4-benzenetriol (BT) in HL-60 cells by alkaline comet assay. To investigate the mechanism of cellular DNA damage induced by BT, the cells were treated with antioxidant such as vitamin C, SOD, catalase, and chelating agent such as deferoxamine (DFO), bathocuproinedisulfonic acid (BCDS). BT induced DNA damage in dose-dependent manner at concentration between 10$\mu\textrm{m}$ and 100$\mu\textrm{m}$. The antioxidant vitamin C itself induced DNA damage at higher concentration. The DNA damage induced by BT in HL-60 cells was protected at low concentraiton of vitamin C whereas no protective effect was found at high concentration. In hibitory effect of SOD on DNA damage by BT was observed and this suggested that BT produce superoxide anion (O2-) causing DNA damage. Catalase protected BT-induced DNA damage suggesting that BT produce H2O2 during autooxidation of BT. Both Fe(II)-specific cheiating agent, deferoxamine (DFO) and Cu(I)-specific chelating agent, bathocuproinedisulfonic acid (BCDS) inhibited BT0induced DNA damage. This suggested that DNA damage was caused by active species which was produced DAN damage. This suggested that DNA damage was caused by active species which was produced by the autooxidation of BT in the presence of Cu(II) and Fe(III). These findings suggest that reactive oxygen species play an important role in the mechanism of toxicity induced by benzene metabolites.

폐알카리 망간전지로부터 황산을 이용한 유가금속 회수 (Recovery of Valuable Metals from Spent Alkaline Manganese Batteries using Sulfuric Acid)

  • 신선명;강진구;손정수;양동효
    • 공업화학
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    • 제17권5호
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    • pp.517-520
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    • 2006
  • 망간산화물과 아연이 혼재되어 있는 폐알카리 망간전지로부터 황산용액에서 환원제로 과산화수소를 이용하여, 침출제 농도, 온도, 반응시간, 과산화수소의 양 등을 변화시키면서 망간과 아연의 침출거동을 조사하였다. 그 결과 고액농도 100 g/L, 황산농도 3.0 M, 반응온도 $60^{\circ}C$, 교반속도 200 r.p.m. 그리고 과산화수소를 첨가하지 않은 조건에서 아연과 망간의 침출율은 각각 97.7 %와 43.5 %를 나타내었으나, 반응온도 $60^{\circ}C$에서 과산화수소 30 mL를 첨가하였을 때는 아연과 망간의 침출율은 각각 99.6 %와 97.1%를 나타내어 환원제를 첨가하지 않은 조건보다 망간의 침출율이 약 2배 정도 증가하였다. 그러나 과산화수소 양이 30 mL 이상에서는 첨가되는 과산화수소의 양이 증가하여도 아연과 망간의 침출율의 변화는 거의 없었다.

NH4OH용액이 반도체 소자용 구리 박막 표면에 미치는 영향 (Cleaning Effects by NH4OH Solution on Surface of Cu Film for Semiconductor Devices)

  • 이연승;노상수;나사균
    • 한국재료학회지
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    • 제22권9호
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    • pp.459-464
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    • 2012
  • We investigated cleaning effects using $NH_4OH$ solution on the surface of Cu film. A 20 nm Cu film was deposited on Ti / p-Si (100) by sputter deposition and was exposed to air for growth of the native Cu oxide. In order to remove the Cu native oxide, an $NH_4OH$ cleaning process with and without TS-40A pre-treatment was carried out. After the $NH_4OH$ cleaning without TS-40A pretreatment, the sheet resistance Rs of the Cu film and the surface morphology changed slightly(${\Delta}Rs:{\sim}10m{\Omega}/sq.$). On the other hand, after $NH_4OH$ cleaning with TS-40A pretreatment, the Rs of the Cu film changed abruptly (${\Delta}Rs:till{\sim}700m{\Omega}/sq.$); in addition, cracks showed on the surface of the Cu film. According to XPS results, Si ingredient was detected on the surface of all Cu films pretreated with TS-40A. This Si ingredient(a kind of silicate) may result from the TS-40A solution, because sodium metasilicate is included in TS-40A as an alkaline degreasing agent. Finally, we found that the $NH_4OH$ cleaning process without pretreatment using an alkaline cleanser containing a silicate ingredient is more useful at removing Cu oxides on Cu film. In addition, we found that in the $NH_4OH$ cleaning process, an alkaline cleanser like Metex TS-40A, containing sodium metasilicate, can cause cracks on the surface of Cu film.

Purification ana properties of alkaline pretense produced by Bacillus sp. KCTC 1723

  • 정영희;민영희;고영희
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 1986년도 추계학술대회
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    • pp.532.2-532
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    • 1986
  • Alkaline protease which is an important enzyme used in detergents, leather tanning and food industry was produced by alkalophilic bacterium, Bacillus sp. KCTC 1723 isolated from soil. The maximum productivity of the enzyme in alkaline medium containing 1% sodium bicarbonate was obtained by incubating for 3 days at 37$^{\circ}C$. The optimum pH of the enzyme was 11.5 and calcium ion was effective on stabilization of the enzyme at high temperature. The enzyme was not inhibited by metal chelating agent such as El)TA but inhibited by diisopropyl fluorophosphate. Purification of the enzyme was carried out DEAE- and CM-cellulose column chromatographies and molecular weight of the purified enzyme was determined

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알칼리성 모발처리제를 이용한 후처리제 개발 (Development of an After-treatment Agent, Using an Alkaline Hair Treatment)

  • 김혜균
    • 디지털융복합연구
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    • 제15권1호
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    • pp.509-517
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    • 2017
  • 최근, "웰빙" 바람을 타고, 주로 치료목적으로만 이용 되어온 이온수의 효능이 알려지면서, 이에 대한 관심이 조금씩 높아지고 있다. 이온수는 물을 전기분해 하면 쉽게 얻을 수 있는데, 전해질의 첨가 유 무와 이온 선택성 격막의 유 무에 따라 강산성, 강알칼리성, 중성 또는 알칼리성, 약산성, 약알칼리성 등의 이온수가 생성된다. 알칼리성 전해 이온수는 체내의 때를 씻게 해 주어 성인병의 증세를 서서히 없애주고, 신진대사와 혈액 점도를 낮추는데 중요한 기능을 한다. 현재 펌 촉진제의 알칼리성분을 사용하는 분야는 전무한 상태이며, 뷰티 시장의 향상과 시간단축으로 인한 수익 창출이 가능하며, 고객에게는 모발의 손상이 없고 모발의 잡균들을 제거함으로써 고객의 거친 모발에 에너지와 영양을 충전하여 손상된 모발을 빠르게 복구 할 수 있으며 염색/펌 시술 후 손상도니 머릿결을 복구 와 화학성분 제거 및 끈적임 없이 매끄럽고 윤기 있는 머릿결을 유지 할 수 있는 고효율의 알칼리성 모발후 처리제의 개발이 절실하다.