• 제목/요약/키워드: Hydroxide ion

검색결과 277건 처리시간 0.207초

치아재식술 시 근관충전재로 사용된 수산화칼슘 제재의 치근단 조직 반응 및 치근 흡수의 평가 (PERIAPICAL TISSUE REACTION AND ROOT RESORPTION FOLLOWING REPLANTATION WITH DIFFERENT CALCIUM HYDROXIDE PASTES IN RAT)

  • 송상채;이승종;정일영;이찬영;금기연
    • Restorative Dentistry and Endodontics
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    • 제26권2호
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    • pp.111-120
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    • 2001
  • Calcium hydroxide pastes is widely used in conventional endodontics. Along with the expanded clinical use of calcium hydroxide, literatures suggest mixing calcium hydroxide with other substance. Among added substances the vehicle plays the most importance role in the overall process because it is directly related with the velocity of ionic dissociation of $Ca^{2+}$ and OH ion. In this study, we evalutated and compared periapical tissue response and root resorption after canal was filled with mixture of saline and calcium hydroxide(Junsei Chemical Co.. Japan) as a aqueous vehicle, Metapaste(Meta Co., Korea) as a viscous vehicle paste, Vitapex(Neo Dental, Japan) as a oily vehicle paste and IRM(Caulk Dentsply, USA) in replantation of rat molar. A total of 31 maxillary first molars of Sprague-Dawley female rats, 30 days old were used. The upper 1st molar was extracted and the mesiobuccal canal was filled with mixture of saline and calcium hydroxide, Metapaste, Vitapex. IRM and then replanted. Rats were sacrificed 3 weeks after replantation. the maxillae were removed. section of 4 micron were cut and stained with hematoxylin-eosin, Apical tissue response were observed under light microscope. The results were as follows: 1. Saline mixing group and Metapaste group were significant different in fibrous capsule width compared to Vitapex group and IRM group(P<0.05). 2. Saline mixing group. Metapaste group. Vitapex group and IRM group did not prevent root resorption and there were no statistical difference. 3. In saline mixing group and Metapaste group. loss of pastes were observed in all samples. From the results of our study. we observed loss of pastes in saline mixing group and Metapaste group because of water soluble property and assumed it was related to inflammation in apical area and sealing ability of material. So, we should study and develop calcium hydroxide vehicle which is easily removed and more stable and because of only 3 weeks observation we need more evaluation in long period.

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침전법에 의한 폐수중의 철이온 제거에 관한 기초 연구 (A Basic Study on the Removal of Iron Ion in Waste Water by the Precipitation Method)

  • 강동현;김형석;조동성
    • 자원리싸이클링
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    • 제2권2호
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    • pp.16-21
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    • 1993
  • 본 연구에서는 폐수중에 함유된 철이온을 제거하기 위하여 2가와 3가 칠이온을 함유하는 용액의 pH를 침전점이상으로 조절함으로서 형성된 수산화철 침전의 침강 특성을 조가하여 다음과 같은 결과를 얻었다. 수산 이온의 농도 증가는 수산화철 침전의 침강 속도를 빠르게 하고 이때 CaO가 효과적이었다. 고분자 엉김제는 수산화철 침전의 초기 침강 속도를 빨라지게 하지만 과량은 침강 속도를 저하시킨다. 수산화철 침전의 농도가 높아지면 침강 속도가 크게 감소되므로 수산화물로서 침전시켜 제거할 철이온의 농도는 $10^{-2}$mol/ㅣ이하로 조절됨이 바람직하다.

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이온 교환 공정에 의한 귀중한 수산화 리튬의 회수: 리뷰 (Recovery of Valuable Lithium Hydroxide by Ion Exchange Process: A Review)

  • 살센벡 아샐;라즈쿠마 파텔
    • 멤브레인
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    • 제32권6호
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    • pp.401-410
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    • 2022
  • 수산화리튬(LiOH)에 대한 수요는 현재의 대안들에 비해 환경에 대한 효율성과 안전성 때문에 매년 증가하고 있다. 리튬은 다른 염분과 염수 호수에서 발견될 수 있으며, 나중에 합성되어 다양한 용도로 LiOH를 생성한다. 리튬 이온을 분리 및 회수하기 위해 다양한 방법이 사용되며, 그 중 가장 일반적인 방법은 전기투석법(ED)이다. ED는 이온을 한쪽에서 다른 쪽으로 밀어내는 구동력으로서 그 층의 전위차에 작용하는 멤브레인 기반 분리 기술이다. ED의 이온교환막(IEM)은 유체역학적 부피에 따라 상이한 이온의 선택성이 달라지기 때문에 공정을 효율적으로 만든다. 본 총설에서는 리튬이온의 회수를 향상시키기 위한 ED와 IEM의 서로 다른 변화 전략이 논의된다.

경화된 하이드로탈사이트 혼입 포틀랜드 시멘트 페이스트의 염소이온 고정능력 평가 (Evaluation of Chloride Ion Binding Capacity of Hardened Portland Cement Paste Containing Hydrotalcite)

  • 한재도;이윤수;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2018년도 춘계 학술논문 발표대회
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    • pp.27-28
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    • 2018
  • Deterioration of reinforced concrete structures due to salt corrosion is a phenomenon that can be easily seen, and the main reason for deterioration is chloride ion. Therefore, researches are actively conducted to control chlorine ion penetration worldwide. The purpose of this study is to evaluate the chloride ion fixation capacity of Portland cement paste containing Hydrotalcite. For this purpose, cement paste containing 0%, 2.5%, and 5% of Hydrotalcite was sealed and cured for 28 days, and the cured cement paste was crushed. Chloride ion solution was prepared at a concentration of 0.5M using NaCl, and the powdered cement paste was reacted for a specific time in aqueous chloride ion solution. After the reaction, the concentration of the chloride ion aqueous solution was measured using a silver nitrate potentiometric titrator, and the reacted cement paste was analyzed using XRD and FT-IR.

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가수분해에 의한 2, 4, 6-Trinitrotoluene(TNT) 처리 (2, 4, 6-Trinitrotoluene(TNT) Treatment by the Alkaline Hydrolysis)

  • 권범근;김종오
    • 한국지반환경공학회 논문집
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    • 제13권9호
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    • pp.69-74
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    • 2012
  • 본 연구에서는 염기성 수산화이온을 이용한 TNT의 분해 특성을 조사하였다. 이를 위해 TNT 처리 시 분광학적인 변화 특성을 관찰하고, pH 영향 및 반응생성물에 대해 정량적으로 조사하였다. 실험결과, pH=12에서 가수분해에 의해 TNT 수용액이 갈색을 띄는 파장 400-600nm 범위 내에서 흡광도가 증가함을 관찰하였다. 수용액 상의 pH=12에서 TNT 가수분해 시 pseudofirst-order 속도상수는 $0.0022min^{-1}$으로 나타났으며, 그 반응속도는 매우 느린 것으로 초기 TNT 농도인 $44{\mu}M$이 약 90% 정도 분해되려면 약 1,047min(17.44hrs)이 소요될 것으로 예상되었다. 반응 생성물로는 아질산이온과 포름산이 주로 생성되며, 기타 미량 성분으로 질산이온, 옥살산 등이 확인되었다.

새로운 6-Substituted Pyridazin-3(2H)-one 유도체 및 토토머형의 합성 (Synthesis of its Tautomeric Forms and New 6-Substituted Pyridazin-3(2H)-one Analogs)

  • 김채원;박명숙
    • 약학회지
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    • 제57권5호
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    • pp.316-322
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    • 2013
  • The new pyridazinone analogs were synthesized for development of candidates to retain anticancer activity. Various 6-substituted pyridazin-3(2H)-ones were prepared from the pyridazinyl chloride 3a~d via endothermic nucleophilic substitution with hydroxide ion as nucleophile for 2~48 h. Pyridazinyl chloride 3a~d could be converted to hydroxypyridazines (or pyridazin-3(2H)ones) using 1~5 equivalents of water (or 1 equivalent of sodium hydroxide) at reflux in DMF. The tautomerism of lactim form to lactam form was also accomplished in pyridazine derivatives. Formation of pyridazinones 10 was undertaken with stirring using sodium hydroxide at reflux in DMF for 2 h. Synthetic compounds were identified using NMR spectrum.

Chemical characteristics of mineral trioxide aggregate and its hydration reaction

  • Chang, Seok-Woo
    • Restorative Dentistry and Endodontics
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    • 제37권4호
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    • pp.188-193
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    • 2012
  • Mineral trioxide aggregate (MTA) was developed in early 1990s and has been successfully used for root perforation repair, root end filling, and one-visit apexification. MTA is composed mainly of tricalcium silicate and dicalcium silicate. When MTA is hydrated, calcium silicate hydrate (CSH) and calcium hydroxide is formed. Formed calcium hydroxide interacts with the phosphate ion in body fluid and form amorphous calcium phosphate (ACP) which finally transforms into calcium deficient hydroxyapatite (CDHA). These mineral precipitate were reported to form the MTA-dentin interfacial layer which enhances the sealing ability of MTA. Clinically, the use of zinc oxide euginol (ZOE) based materials may retard the setting of MTA. Also, the use of acids or contact with excessive blood should be avoided before complete set of MTA, because these conditions could adversely affect the hydration reaction of MTA. Further studies on the chemical nature of MTA hydration reaction are needed.

Arsenic Removal from Water Using Various Adsorbents: Magnetic Ion Exchange Resins, Hydrous Ion Oxide Particles, Granular Ferric Hydroxide, Activated Alumina, Sulfur Modified Iron, and Iron Oxide-Coated Microsand

  • Sinha, Shahnawaz;Amy, Gary;Yoon, Yeo-Min;Her, Nam-Guk
    • Environmental Engineering Research
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    • 제16권3호
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    • pp.165-173
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    • 2011
  • The equilibrium and kinetic adsorption of arsenic on six different adsorbents were investigated with one synthetic and four natural types (two surface and two ground) of water. The adsorbents tested included magnetic ion exchange resins (MIEX), hydrous ion oxide particles (HIOPs), granular ferric hydroxide (GFH), activated alumina (AA), sulfur modified iron (SMI), and iron oxide-coated microsand (IOC-M), which have different physicochemical properties (shape, charge, surface area, size, and metal content). The results showed that adsorption equilibriums were achieved within a contact period of 20 min. The optimal doses of adsorbents determined for a given equilibrium concentration of $C_{eq}=10\;{\mu}g/L$ were 500 mg/L for AA and GFH, 520-1,300 mg/L for MIEX, 1,200 mg/L for HIOPs, 2,500 mg/L for SMI, and 7,500 mg/L for IOC-M at a contact time of 60 min. At these optimal doses, the rate constants of the adsorbents were 3.9, 2.6, 2.5, 1.9, 1.8, and 1.6 1/hr for HIOPs, AA, GFH, MIEX, SMI, and IOC-M, respectively. The presence of silicate significantly reduced the arsenic removal efficiency of HIOPs, AA, and GFH, presumably due to the decrease in chemical binding affinity of arsenic in the presence of silicate. Additional experiments with natural types of water showed that, with the exception of IOC-M, the adsorbents had lower adsorption capacities in ground water than with surface and deionized water, in which the adsorption capacities decreased by approximately 60-95%.

커피 찌꺼기를 흡착제로 한 니켈 폐수 처리 특성 (Treatment Features of Ni Wastewater by using Coffee Grounds as the Adsorbent)

  • 서명순;김동수
    • 한국물환경학회지
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    • 제21권1호
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    • pp.14-20
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    • 2005
  • A feasibility study has been conducted regarding the application of waste coffee grounds as an adsorbent for the treatment of nickel ion containing wastewater. The major variables which considered to influence the adsorbability of nickel ion were its initial concentration, reaction temperature, pH, and coexisting ion. The specific surface area of coffee grounds used in the experiment was found to be ca. $39.67m^2/g$, which suggesting its potential applicability as an adsorbent due to its relatively high surface area. In the experimental conditions, more than 90% of the initial amount of nickel ion was shown to adsorb within 15 minutes and equilibrium in adsorption was attained after 3 hours. The adsorption behavior of nickel ion was well explained by Freundlich model and kinetics study showed that the adsorption reaction was second-order. Adsorption was reduced with temperature and its change of enthalpy in standard state was estimated to be -807.05 kJ/mol. Arrhenius equation was employed for the calculation of the activation energy of adsorption and nickel ion was observed to adsorb on coffee grounds exoentropically based on thermodynamic estimations. As pH rose, the adsorption of nickel ion was diminished presumably due to the formation of cuboidal complex with hydroxide ion and the coexistence of cadmium ion was found to decrease the amount of nickel ion adsorption, which was proportional to the concentration of cadmium ion.

농도 분극 현상에서의 이온의 흐름과 pH 변화의 가시화 (Visualization of Ion Transport and pH Change in Ion Concentration Polarization)

  • 고성희;강관형
    • 한국가시화정보학회지
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    • 제8권4호
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    • pp.38-42
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    • 2010
  • Ion concentration polarization is an electrokinetic phenomenon which occurs in membrane systems, such as in an electrodialysis and fuel-cell system. But the phenomenon is not fully understood because hydrodynamics, electrokinetics and electrochemistry are coupled with each other. Here, we report that there occurs a change of pH value of buffer solution in concentration polarization phenomenon. To visualize the change of pH, the litmus solution which is one of the pH indicators was used. It is conjectured that the pH of solution changes because hydrogen ions were concentrated in cathodic side and hydroxide ions were concentrated in anodic side. We anticipate that this work may contribute to the fundamental understanding on the ion concentration polarization phenomenon.