• 제목/요약/키워드: Free cyanide

검색결과 38건 처리시간 0.025초

과산화수소에 의한 시안의 분해특성 (Characteristics of Cyanide Decomposition by Hydrogen Peroxide Reduction)

  • 이진영;윤호성;김철주;김성돈;김준수
    • 자원리싸이클링
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    • 제11권2호
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    • pp.3-13
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    • 2002
  • 본 연구에서는 시안 성분을 제거함에 있어 처리수의 재활용이 가능한 과산화수소에 의한 시안분해 특성을 규명하기 위한 실험을 수행하였다. 수용액중의 과산화수소의 자가분해반응은 pH와 금속촉매(Cu) 유무에 크게 좌우된다. pH 10 이하에서는 자가분해반응은 미미하여 90%이상의 과산화수소가 잔류하지만 pH 12에서는 90경과시 잔류 과산화수소가 9%이하로 낮아졌다. 금속촉매 첨가(5 g Cu/L)한 경우 pH 12에서도 40분 경과후 대부분의 과산화수소가 분해되었다. 유리시안의 휘발성은 용액의 pH에 크게 좌우된다. 동일한 240분 경과시 pH 8이하에서 대부분의 시안이 휘발하는데 반하여 pH 10이상에서는 10%미만이 휘발하였다. 비촉매반응에 의한 과산화수소의 시안분해실험에서는 $H_2$$O_2$/CN 몰비 4까지 과다하게 증가하여도 8%가량의 시안이 잔류하였다. 그러나 구리촉매반응에 의한 과산화수소의 시안분해 실험에서는 과산화수소 및 구리 첨가량이 증가함에 따라 분해속도가 증가하였다. 그러나 일정량 이상 첨가시 과산화수소의 자체분해 반응에 의해 $H_2$$O_2$의 시안분해 효율이 감소하며 과산화수소와 구리의 적정투입량은$ H_2$$O_2$/CN 몰비 2, Cu 몰비 0.05로서 이때의 분해속도는 22 mM/min, $H_2O$$_2$효율은 57%이었다. 또한 이러한 적정조건에서 70분 반응시 완전제거가 가능하였다.

도금폐수의 공동처리를 위한 공정개선에 관한 연구 (A Study of Improvement on Collaboration Treatment Method of Electroplating Wastewater)

  • 이내우;최재욱;안병환
    • 한국안전학회지
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    • 제12권4호
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    • pp.93-101
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    • 1997
  • A modified procedure for electroplating wastewater treatment using formaldehyde and hydrogen peroxide can destroy free cyanide. The representative diagram which is quite sensitive on reaction temperature is showed for this kinds of treatment. Principally free cyanide and some kinds of cyanide complex should be treated first, and then toxic heavy metals can be removed because cyanide component will be inhibited to remove other pollutants, if it is not destroyed perfectly. Formaldehyde and hydrogen peroxide are added in controlled amounts to cyanide treatment tank. Reasonable amounts of these chemicals are (HCHO/CN)=0.9 and ($H_2O_2/CN$)=1.1 in molar ratios, it is also variable on reaction temperature. Of course, actual treatment processes depending on plating material and chemical are good applicable, also to systematize operation manual for treating electroplating wastewater process, further works are desirable.

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Performance of Fusarium oxysporum EKT01/02 isolate in cyanide biodegradation system

  • Akinpelu, Enoch Akinbiyi;Adetunji, Adewole Tomiwa;Ntwampe, Seteno Karabo Obed;Nchu, Felix;Mekuto, Lukhanyo
    • Environmental Engineering Research
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    • 제23권2호
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    • pp.223-227
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    • 2018
  • This study reports a cyanide resistant and/or tolerant fungus, isolated from the rhizosphere of Zea mays contaminated with cyanide-based pesticides. The isolate was characterised using molecular biology. The effect of free cyanide and heavy metals on the growth of isolate in a synthetic gold mine wastewater was examined. The molecular analyses identified the isolate as Fusarium oxysporum EKT01/02 (KU985430/KU985431). The isolate had a free cyanide degradation efficiency of 77.6%. The results indicated greater growth impairment in culture containing Arsenic (optical density 1.28 and 1.458) and cyanide (optical density 1.315 and 1.385). Higher growth was observed in all cultures supplemented with extracellular polymeric substance. This study showed that the isolate possesses wide substrate utilisation mechanism that could be deployed in environmental engineering applications.

Plasmid- and Chromosome-Mediated Assimilation of Phenol and Cyanide in Pseudomonas sp. Strain PhCN

  • El-Deeb Bahig A.
    • Journal of Microbiology and Biotechnology
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    • 제16권7호
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    • pp.1068-1077
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    • 2006
  • Pseudomonas sp. PhCN strain, which has the potential to utilize phenol and cyanide as a sole carbon and nitrogen source, was isolated. A comparison of the effect of cyanide on phenol degradation and vice versa by strain PhCN showed that the degradation time was significantly delayed by an increase in either phenol or cyanide concentration, and the greatest activities were obtained in basal medium containing a low concentration of cyanide and phenol. This strain contained two plasmids of approximately 120 kb (pPhCN-1) and 110 kb (pPhCN-2). Plasmid curing experiments produced a plasmid-free strain as well as strains containing either the 120- or the 110 kb plasmid. The strains were tested for their ability to utilize phenol and KCN. The results demonstrated that the ability to utilize phenol was encoded by the 120 kb plasmid, whereas the ability to utilize cyanide appeared to be encoded by the chromosome.

행인유의 채유방법에 관한 연구 (A Study on the Ideal Preparation Procedure of Apricot Seed Oil)

  • 조경열
    • 한국식품영양과학회지
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    • 제18권2호
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    • pp.223-228
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    • 1989
  • Amygdaline의 분해를 막는 행인유 채유법을 model화하기 위하여 분쇄, 볶음, 증자 등 몇가지 전처리공정을 검토하였다. 행인은 분쇄할 경우 amygdaline의 분해와 더불어 HCN이 생성되었는데 $40^{\cire}C$에서 생성률이 가장 높았으나 $5{\sim}10^{\circ}C$저온과 $60{\sim}70^{\circ}C$의 고온에서도 그 생성량은 높았다. 파쇄하여 $5^{\circ}C$$40^{\circ}C$ 에서 96시간 두면 CN생성량은 각각 $200{\mu}g/g$$780{\mu}g/g$이었다. 그러므로 채유전처리공정으로 분쇄할 경우는 반드시 emulsin의 불활성화 공정이 필요하며 이를 위하여는 IS분간 증자하는 것이 가장 좋았다. 볶음과정 중에도 상당량의 HCN이 생성되므로 압착법에 의한 채유도 증자가 볶음보다 바람직하고 이 경우 분쇄한 것과 하지 않은 것의 수율은 대등하였다.

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티오말산을 착화제로 하고 아미노에탄티올을 환원제로 하는 비시안계 무전해 Au 도금액의 석출 거동 및 도금 특성 (Deposition behavior of cyanide-free electroless Au plating solution using thiomalic acid as complexing agent and aminoethanethiol as reducing agent and characteristics of plated Au film)

  • 한재호;김동현
    • 한국표면공학회지
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    • 제55권2호
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    • pp.102-119
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    • 2022
  • Gold plating is used as a coating of connecter in printed circuit boards, ceramic integrated circuit packages, semiconductor devices and so on, because the film has excellent electric conductivity, solderability and chemical properties such as durability to acid and other chemicals. As increasing the demand for miniaturization of printed circuit boards and downsizing of electronic devices, several types of electroless gold plating solutions have been developed. Most of these conventional gold plating solutions contain cyanide compounds as a complexing agent. The gold film obtained from such baths usually satisfies the requirements for electronic parts mentioned above. However, cyanide bath is highly toxic and it always has some possibility to cause serious problems in working environment or other administrative aspects. The object of this investigation was to develop a cyanide-free electroless gold plating process that assures the high stability of the solution and gives the excellent solderability of the deposited film. The investigation reported herein is intended to establish plating bath composition and plating conditions for electroless gold plating, with thiomalic acid as a complexing agent. At the same time, we have investigated the solution stability against nickel ion and pull strength of solder ball. Furthermore, by examining the characteristics of the plated Au plating film, the problems of the newly developed electroless Au plating solution were improved and the applicability to various industrial fields was examined. New type electroless gold-plating bath which containing thiomalic acid as a complexing agent showing so good solution stability and film properties as cyanide bath. And this bath shows the excellent stability even if the dissolved nickel ion was added from under coated nickel film, which can be used at the neutral pH range.

비시안 무전해 Au 도금의 석출거동에 미치는 하지층 무전해 Ni-P 도금 조건의 영향 (Effect of underlayer electroless Ni-P plating on deposition behavior of cyanide-free electroless Au plating)

  • 김동현;한재호
    • 한국표면공학회지
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    • 제55권5호
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    • pp.299-307
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    • 2022
  • Gold plating is used as a coating of connector in printed circuit boards, ceramic integrated circuit packages, semiconductor devices and so on, because the film has excellent electric conductivity, solderability and chemical properties such as durability to acid and other chemicals. In most cases, internal connection between device and package and external terminals for connecting packaging and printed circuit board are electroless Ni-P plating followed by immersion Au plating (ENIG) to ensure connection reliability. The deposition behavior and film properties of electroless Au plating are affected by P content, grain size and mixed impurity components in the electroless Ni-P alloy film used as the underlayer plating. In this study, the correlation between electroless nickel plating used as a underlayer layer and cyanide-free electroless Au plating using thiomalic acid as a complexing agent and aminoethanethiol as a reducing agent was investigated.

Growth and Cyanide Degradation of Azotobacter vinelandii in Cyanide-Containing Wastewater System

  • Koksunan, Sarawut;Vichitphan, Sukanda;Laopaiboon, Lakkana;Vichitphan, Kanit;Han, Jaehong
    • Journal of Microbiology and Biotechnology
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    • 제23권4호
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    • pp.572-578
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    • 2013
  • Azotobacter vinelandii, a strict aerobic nitrogen-fixing bacterium, has been extensively studied with regard to the ability of $N_2$-fixation due to its high expression of nitrogenase and fast growth. Because nitrogenase can also reduce cyanide to ammonia and methane, cyanide degradation by A. vinelandii has been studied for the application in the bioremediation of cyanide-contaminated wastewater. Cyanide degradation by A. vinelandii in NFS (nitrogen-free sucrose) medium was examined in terms of cell growth and cyanide reduction, and the results were applied for cyanide-contaminated cassava mill wastewater. From the NFS medium study in the 300 ml flask, it was found that A. vinelandii in the early stationary growth phase could reduce cyanide more rapidly than the cells in the exponential growth phase, and 84.4% of cyanide was degraded in 66 h incubation upon addition of 3.0 mM of NaCN. The resting cells of A. vinelandii could also reduce cyanide concentration by 90.4% with 3.0 mM of NaCN in the large-scale (3 L) fermentation with the same incubation time. Finally, the optimized conditions were applied to the cassava mill wastewater bioremediation, and A. vinelandii was able to reduce the cyanide concentration by 69.7% after 66 h in the cassava mill wastewater containing 4.0 mM of NaCN in the 3 L fermenter. Related to cyanide degradation in the cassava mill wastewater, nitrogenase was the responsible enzyme, which was confirmed by methane production. These findings would be helpful to design a practical bioremediation system for the treatment of cyanide-contaminated wastewater.

비시안 은도금욕의 가능성에 관한 연구 (A Study on the Feasibility of a Cyanide-Free Silver Plating Bath)

  • 이상화
    • 한국표면공학회지
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    • 제29권2호
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    • pp.140-145
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    • 1996
  • Silver deposits formed on copper substrates by replacement reactions show poor adhesion, and a silver film plated on such a deposit does not adhere. Silver ion makes a highly stable complex with cyanide ion, so that in a silver cyanide solution, the activity of silver ion is very small. This is one of the reasons for the universal use of cyanide baths in the industrial silver plating. However, the consideration of the difference between the values of the stability constants for bath the silver-iodide complex and the copper-iodide complex suggest that the rate of replacement deposition of silver on the copper substrate in si]ver-potassium iodide solution, could be comparatively low. To confirm this, the rate of replacement deposition of silver in both a silver-potassium iodide solution ($AgNO_3$0.10 mol/L, KI 2.00 mol/L ) and a strike silver plating bath (AgCN 0.028 mol/L, KCN 1.15 mol/L ) was estimated from the current density corresponding to the point of intersection of the anodic and the cathodic polarization curves. These estimated values were almost the same, and it is suggested that the silver-potassium iodide solution is not only a cyanide free silver plating bath capable of employing a copper substrate but a silver plating bath which requires no strike plating.

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Bacterial Community Structure in Activated Sludge Reactors Treating Free or Metal-Complexed Cyanides

  • Quan Zhe-Xue;Rhee Sung-Keun;Bae Jin-Woo;Baek Jong-Hwan;Park Yong-Ha;Lee Sung-Taik
    • Journal of Microbiology and Biotechnology
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    • 제16권2호
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    • pp.232-239
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    • 2006
  • The microbial activity and bacterial community structure of activated sludge reactors, which treated free cyanide (FC), zinc-complexed cyanide (ZC), or nickel-complexed cyanide (NC), were studied. The three reactors (designated as re-FC, re-ZC, and re-NC) were operated for 50 days with a stepwise decrease of hydraulic retention time. In the re-FC and re-ZC reactors, FC or ZC was almost completely removed, whereas approximately 80-87% of NC was removed in re-NC. This result might be attributed to the high toxicity of nickel released after degradation of NC. In the batch test, the sludges taken from re-FC and re-ZC completely degraded FC, ZC, and NC, whereas the sludge from re-NC degraded only NC. Although re-FC and re-ZC showed similar properties in regard to cyanide degradation, denaturing gradient gel electrophoresis (DGGE) analysis of the 16S rRNA gene of the bacterial communities in the three reactors showed that bacterial community was specifically acclimated to each reactor. We found several bacterial sequences in DGGE bands that showed high similarity to known cyanide-degrading bacteria such as Klebsiella spp., Acidovorax spp., and Achromobacter xylosoxidans. Flocforming microorganism might also be one of the major microorganisms, since many sequences related to Zoogloea, Microbacterium, and phylum TM7 were detected in all the reactors.