• 제목/요약/키워드: cyanide ion

검색결과 61건 처리시간 0.021초

Kinetic Studies on the Addition of Potassium Cyanide to α,N-Diphenylnitrone

  • 김태린;김영호;변상용
    • Bulletin of the Korean Chemical Society
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    • 제20권6호
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    • pp.712-714
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    • 1999
  • The rate constants for the nucleophilic addition of potassium cyanide to α,N-diphenylnitrone and its derivatives (p-OCH3, p-CH3, p-Cl, and p-NO2) were determined by ultraviolet spectrophotometer at 25℃, and the rate equations which can be applied over a wide pH range were obtained. On the basis of pH-rate profile, adduct analysis, general base catalysis and substituent effect, a plausible mechanism of this addition reaction was proposed: At high pH, the cyanide ion to carbon-nitrogen double bond was rate controlling, however, in acidic media, the reaction proceeded by the addition of hydrogen cyanide molecule to carbon-nitrogen double bond after protonation at oxygen of a,N-diphenylnitrone. In the range of neutral pH, these two reactions occured competitively.

논시안 금도금층의 조직과 경도에 미치는 Tl+ 과 Pd2+ 이온첨가의 영향 (Effect of addition of Tl+ and Pd2+ on the texture and hardness of the non-cyanide gold plating layer)

  • 허원영;손인준
    • 한국표면공학회지
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    • 제55권6호
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    • pp.460-468
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    • 2022
  • Due to its high electrical conductivity, low contact resistance, good weldability and high corrosion resi-stance, gold is widely used in electronic components such as connectors and printed circuit boards (PCB). Gold ion salts currently used in gold plating are largely cyan-based salts and non-cyanic salts. The cya-nide bath can be used for both high and low hardness, but the non-cyanide bath can be used for low hardness plating. Potassium gold cyanide (KAu(CN)2) as a cyanide type and sodium gold sulfite (Na3[Au(SO)3]2) salt as a non-cyanide type are most widely used. Although the cyan bath has excellent performance in plating, potassium gold cyanide (KAu(CN)2) used in the cyan bath is classified as a poison and a toxic substance and has strong toxicity, which tends to damage the positive photoresist film and make it difficult to form a straight side-wall. There is a need to supplement this. Therefore, it is intended to supplement this with an eco-friendly process using sodium sulfite sodium salt that does not contain cyan. Therefore, the main goal is to form a gold plating layer with a controllable hardness using a non-cyanide gold plating solution. In this study, the composition of a non-cyanide gold plating solution that maintains hardness even after annealing is generated through gold-palladium alloying by adding thallium, a crystal regulator among electrolysis factors affecting the structure and hardness, and changes in plating layer structure and crystallinity before and after annealing the correlation with the hardness.

Ion-Sensitive Field Effect Transistor-Based Multienzyme Sensor for Alternative Detection of Mercury ions, Cyanide, and Pesticide

  • Vyacheslav, Volotovskky;Kim, Nam-Soo
    • Journal of Microbiology and Biotechnology
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    • 제13권3호
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    • pp.373-377
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    • 2003
  • Various groups of industrial and agricultural pollutants (heavy metal ions, cyanides, and pesticides) can be detected by enzymes. Since heavy metal ions inhibit urease, cyanides inhibit peroxidase, organophosphorus and carbamate pesticides inhibit butyrylcholinesterase, these enzymes were co-immobilized into a bovine serum albumin gel on the surface of an ion-sensitive field effect transistor to create a bioprobe that is sensitive to the compounds mentioned above. The sensitivity of the present sensor towards KCN corresponded to $1\;\mu\textrm{M}$ with 1 min of incubation time. The detection limits for Hg(II) ions and the pesticide carbofuran were 0.1 and $0.5\;\mu\textrm{M}$, respectively, when a 10 min sensor incubation time in contaminated samples was chosen. The total time for determining the concentrations of all species mentioned did not exceed 20 min.

Continuous Flow Analyzer(CFA)를 이용한 담배 주류연 중 Hydrogen Cyanide(HCN)의 최적 분석방법 구명 (Characteristics of Optimized Analytical Method of Hydrogen Cyanide in Cigarette Mainstream Smoke by Using Continuous Flow Analyzer(CFA))

  • 나승주;어성재;김도연;복진영;황건중
    • 한국연초학회지
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    • 제31권1호
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    • pp.39-44
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    • 2009
  • Hydrogen cyanide (HCN) is present in both the particulate and vapor phase of cigarette mainstream smoke. It is one of the 44 harmful substances on Hoffmann's list and is known to be a major ciliatoxic agent in cigarette mainstream smoke. Typically the determination of HCN in cigarette mainstream smoke has been done through colorimetric and electrochemical techniques, such as UV-spectrophotometry (UV), continuous flow analyzer (CFA), ion chromatography (IC) and capillary GC-ECD. In particular, CFA commonly has been using analysis hydrogen cyanide in cigarette smoke and the basic principle is pyridine-pyrazolone reaction. In this study, the more optimized analytical method is suggested isonicotinic acid-pyrazolone reaction method than previous pyridine-pyrazolone reaction method, a commonly used method for the determination of cyanide in water and air, by CFA. Sample collection was optimized by trapping particulate and vapor phase of smoke separately. The optimum NaOH concentration of the trapping solution was shown to be 0.2 M. HCN was stable up to 6 hours in this concentration but only 3 hours in 0.1 M solution. The sensitivity of this method was fairly good and it might be used in analysis of HCN in cigarette mainstream smoke.

오존에 의한 폐수처리에 관한 연구 -도금폐액의 CN이온 분해와 사진 폐수의 COD 처리- (Studies on the Decomposition of CN ion in the electroplating waste Water and COD Variation of photodeveloping Waste-water)

  • 김덕묵;이치종
    • 기술사
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    • 제14권1호
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    • pp.22-29
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    • 1981
  • This study concernes the decomposition of cyanide ion in electroplating plant wastewater and COD variation of photodeveloping wastewater under various conditions. Determinations of CN- concentration were carried out by AgNO$_3$ titration method. The sample solutions were pretreated by passing ozone and decompositions were checked as a function of time for ozone treatment. Analysis of film developing wastewater was carried out by KMnO$_4$ method. Electroplating plant wastewater was also examined at various pH; decomposition rate of cyanide ion was found to increase at higher pH. Time required for the decomposition could be shortened by removing the heavy metal ions under alkaline condition. The effect of temperature on decomposition was studied at 40$^{\circ}$ and 60$^{\circ}C$. The result was better at 40$^{\circ}C$ although time for decomposition was almost same at both temperatures. Analysis of film developing wastewater revealed that COD decrease was faster during the first 1 to 2 hours. However, further decrease could not be effected. The existence of unknown special organics resistant to the decomposition was believed to be the reason.

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매실추출제품의 시안화합물 분석법에 관한 연구 (Analytical Determination of Cyanide in Maesil (Prunus mume) Extracts)

  • 김은정;이휘재;장진욱;김인영;김도형;김현아;이수민;장호원;김상엽;장영미;임동길;이선희
    • 한국식품과학회지
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    • 제42권2호
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    • pp.130-135
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    • 2010
  • 건강기능식품공전에서 유해물질로 분류되어 관리되고 있는 매실추출제품 중 시안화합물의 효과적인 분석을 위하여 피크린산지법, 효소-피크린산지법, IC 및 HPLC를 이용한 기기분석법을 검증하고 비교하였다. 먼저, 피크린산지법은 가장 분석소요시간이 짧았으며, 0.01 mg/$200\;mL\;CN^-$에서 피크린산지의 변색이 관찰되었으나, 배당체 형태의 아미그달린으로부터 유래되는 시안화합물을 검출하는 것에 한계가 있었다. 반면, $\beta$-glucosidase를 이용한 효소-피크린산지법은 아미그달린으로부터 유래되는 시안화합물을 포함한 총 시안화합물의 정성분석 및 분광광도계를 이용한 정량 분석이 가능하였다. 마지막으로, IC 및 HPLC를 이용한 시안화합물 분석법은 유리되어 있는 시안화합물과 아미그달린을 분석하기 위해 각각 서로 다른 전처리 과정을 거쳐야 하며, 분석시간 또한 가장 많이 소요되었다. 이러한 결과들을 미루어 볼 때, 매실추출제품에 존재하는 시안화합물 분석법으로는 효소-피크린산 지법이 가장 효과적임을 알 수 있었다.

Silver Selenide 전극의 제조 및 그 특성에 관한 연구 (A Study on the Preparation of the Silver Selenide Electrode and Its Properties)

  • 인권식;민태원;이수형
    • 대한화학회지
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    • 제20권4호
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    • pp.280-289
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    • 1976
  • $Ag_2Se$ 전극을 제조하고 은이온에 대한 지시전극으로서의 성질을 조사하였다. Epoxy 수지를 Ag_2Se 전극의 binder로서, Silver paste를 감응막과 은판의 접착제로서 사용하였다. 감응막은 10ton/$cm^2$로 가압성형 한다음 질소분위기에서 200${\sim}$$500^{\circ}C$로 sintering한 후 전극을 제조한 결과sintering 하지않은 전극보다 감응성이 우수하고 견고하였다. 또한 $Ag_2Se$전극보다 감응성이 우수하였다. 은이온농도의 변화에 따르는 감응도는 10-6M까지 직선관계를 유지하였다. 대부분의 중금속 이온은 방해하지 않으나 수은(II) 이온이 크게 방해를 하였으며 음이온인 halide, cyanide, thiocyanate 이온의 방해는 더욱 심하였다. 반면 이전극은 halide 이온 정량시 전위차적정법으로 사용할 수 있음을 알았다.

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Ni(Ⅱ)-Cyanide Complex의 還元에 關한 硏究 (Polarographic Studies of Ni(Ⅱ)-CN Complex Reduction)

  • 김황암;박일현
    • 대한화학회지
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    • 제9권2호
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    • pp.67-70
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    • 1965
  • 水銀滴下電極에 있어서 Ni(II)-CN complex의 還元反應은 두가지 經路를 밟고 있는데, 一電子還元일때는 Ni(CN)42- + e [1]↔[2] Ni(CN)43- =(eq) Ni(CN)2- + 2CN- 그리고 二電子還元일 때는 Ni(CN)42- + 2e [3]--> 1/2[Ni(CN)33-]2 + CN- 이다. 反應 [1]이 反應[3]에 比하여 빠르게 일어나고 있다. $CN^-$濃度가 묽을 때 (0.004∼0.01M)의 還元波는 反應[1]에 依해 나타나며 이때 $CN^-$ 두個가 關與하게 된다. $CN^-$ 濃度가 增加하면 反應[2]는 빨라져서 反應[1]과 [2]는 平衡狀態에 到達하게 된다. $CN^-$濃度 0.2M 以上에서는 反應[3]에 依한 二電子還元으로 電極反應을 하게 되는데 이 反應機構는 $CN^-$濃度 0.004M일 때보다 8M때의 限界電流値가 約 2倍가 되는 現象도 說明할 수 있게 된다.

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캐피라리 전기 영동법에 의한 비시안 무전해 Au 도금액의 분석 (Analysis of cyanide free electroless Au plating solution by capillary elecrophoresis)

  • 한재호;김동현
    • 한국표면공학회지
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    • 제55권2호
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    • pp.120-132
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    • 2022
  • In the non-cyanide-based electroless Au plating solution using thiomalic acid as a complexing agent and aminoethanethiol as a reducing agent, analysis of each component constituting the plating solution is essential for the analysis of the reaction mechanism. And component analysis in the plating solution is important for monitoring component changes in the plating process and optimizing the management method. Capillary Electrophoresis (CE) method is rapid, sensitive and quantitative and could be readily applied to analysis of Aun+ ion, complexing agent and reducing agent in electroless Au plating solution. In this study, the capillary electrophoresis method was used to analyze each component in the electroless Au plating solution in order to elucidate the complex bonding form and the plating mechanism of the non-cyanide-based electroless Au plating bath. The purpose of this study was to establish data for optimizing the monitoring and management method of plating solution components to improve the uniformity of precipitation and stability. As a result, it was confirmed that the analysis of thiomalic acid as a complexing agent and Aun+ ions and the analysis of aminoethanethiol as a reducing agent were possible by capillary electrophoresis. In the newly developed non-cyanide-based electroless Au plating solution, it was confirmed that Aun+ ions exist in the form of Au+ having a charge of +1, and that thiomalic acid and Au+ are combined in a molar ratio of 2 : 1. In addition, it was confirmed that aminoethanethiol can form a complex by combining with Au+ ions depending on conditions as well as acting as a reducing agent.