• 제목/요약/키워드: valuable metal

검색결과 194건 처리시간 0.029초

Isolation and Characterization of Terpene Synthase Gene from Panax ginseng

  • Kim, Yu-Jin;Ham, Ah-Rom;Shim, Ju-Sun;Lee, Jung-Hye;Jung, Dae-Young;In, Jun-Gyo;Lee, Bum-Soo;Yang, Deok-Chun
    • Journal of Ginseng Research
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    • 제32권2호
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    • pp.114-119
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    • 2008
  • Terpene synthase plays a key role in biosynthesis of triterpene saponins (ginsenosides) and is intermediate in the biosynthesis of a number of secondary metabolites. A terpene synthase (PgTPS) cDNA was isolated and characterized from the root of Panax ginseng c.A. Meyer. The deduced amino acid sequence of PgTPS showed a similarity with A. deliciosa (AAX16121) 61%, V. vinifera (AAS66357) 61%, L. hirsutum (AAG41891) 55%, M. truncatula (AAV36464) 52%. And the segment of a terpene synthase gene was amplified by reverse transcriptase-polymerase chain reaction (RTPCR). We studied expression of terpene synthase under stressful conditions like chilling, salt, UV, and heavy metal stress treatment. Expression of PgTPS was increased gradually after exposure to stresses such as chilling, salt, and UV illumination. But its transcription seems to be reduced by cadmium and copper treatment.

Cu 이온에 적응된 토착호산성박테리아를 이용한 폐광석으로부터 미생물용출 효율 향상 (The Efficiency of Bioleaching Rates for Valuable Metal Ions from the Mine Waste Ore using the Adapted Indigenous Acidophilic Bacteria with Cu Ion)

  • 김봉주;위대웅;최낙철;박천영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권4호
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    • pp.9-18
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    • 2012
  • This study was carried out to leach valuable metal ions from the mine waste ore using the adapted indigenous bacteria. In order to tolerance the heavy metals, the indigenous bacteria were repeatedly subcultured in the adaptation-medium containing $CuSO_4{\cdot}5H_2O$ for 3 weeks and 6 weeks, respectively. As the adaptation experiment processed, the pH was rapidly decrease in the adaptation-medium of 6 weeks more than the 3 weeks. The result of bioleaching with the adapted bacteria for 42 days, the pH value of leaching-medium in the 3 weeks tend to increased, whereas the pH of the 6 weeks decreased. In decreasing the pH value in the adaptation-medium and in the leaching-medium, it was identified that the indigenous bacteria were adapted $Cu^{2+}$ the ion and the mine waste ores. The contents of Cu, Fe and Zn in the leaching solution were usually higher leached in 6 weeks than 3 weeks due to the adaptation. Considering the bioleaching rates of Cu, Fe and Zn from these leaching solutions, the highest increasing the efficiency metal ion were found to be Fe. Accordingly, it is expected that the more valuable element ions can be leached out from the any mine waste, if the adapted bacteria with heavy metals will apply in future bioleaching experiments.

토착박테리아의 중금속 적응효과와 직접산화작용에 의한 폐광석으로부터 유용금속 용출 (The Leaching of Valuable Metal from Mine Waste Rock by the Adaptation Effect and the Direct Oxidation with Indigenous Bacteria)

  • 김봉주;조강희;최낙철;박천영
    • 한국광물학회지
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    • 제28권3호
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    • pp.209-220
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    • 2015
  • 폐광산에 방치되어 있는 폐광석으로부터 유용금속이온을 그 지역 토착박테리아를 이용하여 효과적으로 용출시키고자 하였다. 토착호산성박테리아를 중금속 이온에 내성이 형성될 수 있도록 중금속 이온에 주기적으로 반복 적응시켰다. 그 결과 적응실험이 진행될수록 성장-배양액의 pH가 더 안정적으로 감소하였다. $CuSO_4{\cdot}5H_2O$에 9주와 12주 동안 적응시킨 박테리아를 이용하여 42일 동안 미생물용출을 수행한 결과, 용출-배양액의 pH는 적응 횟수에 비례하여 더 빠르게 감소하였다. 황동석과 Cu 함량이 고성 폐광석에 비하여 상대적으로 적게 포함된 연화 폐광석에서 더 많은 박테리아들이 부착하였고, 또한 Cu와 Fe 함량은 고성 박테리아 시료(각각의 용출률 = 66.77%와 21.83%)에 비하여 연화 박테리아 시료(각각의 용출률 = 92.79%와 55.88%)에서 더 많이 용출되었다. 따라서 중금속으로 오염된 광산에 오랫동안 서식한 토착호산성 박테리아를 이용한다면 또한 이 박테리아들을 목적중금속 이온이 포함된 성장-배양액에 계속하여 주기적으로 적응시킨다면, 폐광석으로부터 유용금속이온을 더 효과적으로 용출시킬 수 있을 것으로 확신한다.

폐전기전자기기(廢電氣電子機器) 스크랩으로부터 귀금속(貴金屬) 및 유가금속(有價金屬) 회수(回收)를 위한 건식공정(乾式工程) 기술(技術) 현황(現況) (Current Status on the Pyrometallurgical Process for Recovering Precious and Valuable Metals from Waste Electrical and Electronic Equipment(WEEE) Scrap)

  • 김병수;이재천;정진기
    • 자원리싸이클링
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    • 제18권4호
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    • pp.14-23
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    • 2009
  • 각종 전기전자제품의 제조과정 또는 사용 후 해체 과정에서 배출되는 폐전기전자기기(WEEE) 스크랩으로부터 금, 은, 팔라듐등 귀금속과 구리, 주석, 니켈등 유가금속의 회수는 금속 재활용측면뿐만 아니라 환경 유해물질 저감의 측면에서도 매우 중요하다. 일반적으로 WEEE 스크랩은 여러 종류의 금속과 합금뿐만 아니라 내화 산화물과 플라스틱 성분 등으로 구성된 복합물질이다. WEEE 스크랩에 함유된 귀금속과 유가금속은 가스휘발공정, 건식공정 또는 습식공정으로 회수될 수 있다. 그러나 가스휘발공정과 습식공정은 아직 기초연구단계에 머물고 있는 실정으로, 현재 WEEE 스크랩으로부터 금, 은, 팔라듐 및 구리 등을 회수하기위한 상업적인 플랜트의 대부분은 건식공정으로 이루어지고 있다. 따라서 본 논문에서는 WEEE 스크랩으로부터 귀금속 및 유가금속을 회수하는 건식공정에 대하여 소개하고, 폐동슬래그를 슬래그 형성제로 활용하여 WEEE 스크랩으로부터 귀금속 및 유가금속을 회수하기 위한 규모 확대 실험에 대한 결과를 제시한다.

폐휴대폰 내의 인쇄회로기판에 함유된 금속 성분의 변화 (Characterization of Metal Composition in Spent Printed Circuit Boards of Mobile Phones)

  • 정진기;이재천;최준철
    • 자원리싸이클링
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    • 제24권3호
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    • pp.76-80
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    • 2015
  • 오늘날 개인의 필수 품목이 된 휴대폰은 국내에서 매년 2,000만대 이상이 폐기되는 것으로 추정되고 있다. 휴대폰에는 유가금속 뿐만 아니라 유해금속이 들어있기 때문에 적절한 재활용이 필요하다. 휴대폰에 함유된 유용금속성분의 함량에 따라 재활용공정에서의 경제성이 달라지기에 성분의 분석이 중요하다. 본 연구에서는 폐휴대폰에 함유된 금속 성분의 년도별 변화를 보았다. 2000년에서 2009년에 제조된 휴대폰을 대상으로 휴대폰내의 인쇄회로기판의 성분과 함량을 조사하고 함량의 변화추이를 확인하였다. 분석결과 귀금속인 팔라듐과 중금속인 납의 함량은 감소하는 경향을 보였다.

금속문화재 복원의 부적절한 사례 연구 - 비전문가에 의한 금속문화재 복원 및 비가역성 재료를 이용한 잘못된 복원사례 - (Case Studies of Destructive Restoration of the Metal Relics and Their Problems - Derelict restorations by non-conservators and their ignorant use of irreversible materials -)

  • 황진주;한민수
    • 보존과학연구
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    • 통권30호
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    • pp.63-77
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    • 2009
  • Scientific studies of conservation techniques and materials in Korea have experienced fast development since international practice and academic knowledge have been introduced to Korea from Japan, France, Germany, and etc from the late 1960s. In recent years, it has been observed that the academic standard of research and the level knowledge of the field in Korea at present are far advanced to compete with many countries. However, many Korean cases still have displayed that the standard and the quality of conservation practice need to be improved. This research examined several cases of derelict restoration of metal relics executed by non-conservators and the effects of their ignorant use of irreversible materials on the valuable objects. The purpose of the study is to display the problem of such treatments and to suggest a need of framework to prevent the loss of original form from them. Metal Buddha statue (Cosmic Buddha) in Borim Temple (National Treasure No. 117), which was conserved by an unexperienced non-conservator, has suffered from a serious problem of corrosion because of the use of destructive material, iron chloride. Another case for metal Buddha statue in Dopian Temple (National Treasure No. 63) displays a representative example of using irreversible materials, Cashew and such ignorant application made a later conservation treatment so difficult in removing the material from the surface of the statue. In conclusion, the research argued that the understanding of materials used in the objects, and the value of relics is important, and pre-experiments before applying conservation materials to a valuable heritage are essential in the conservation treatment.

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생물 고분자를 이용한 중금속 제거에 대한 고찰 (Review on Heavy Metal Removal Using Biopolymer)

  • 전충
    • 유기물자원화
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    • 제16권2호
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    • pp.38-46
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    • 2008
  • 미생물의 세포벽을 구성하는 많은 생물고분자들이 금속이온의 흡착과 이온교환에 주된 역할을 한다는 사실이 연구자들에 의하여 보고되어져왔다. 미생물로부터 유도되어지는 생물고분자들은 이온교환수지나 킬레이팅 수지와 같은 합성 고부나들이 상업적인 흡착제로서 널리 사용되고 있지만, 산업적인 적용에서 다양한 금속 이온들을 회수하기 위한 생물 흡착제로서 유용하다. 이 연구에서는 금속을 제거하는데 유용하고 상업적인 생물고분자들이 소개되어질 것이다.

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병뚜껑의 열분해에 대한 연구 (Research for Pyrolysis of Metal Caps)

  • 황재영;진달샘;서무룡
    • 한국환경과학회지
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    • 제19권12호
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    • pp.1355-1359
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    • 2010
  • The application of metal caps has been continuously increased as real life are extended. Metal caps is usually made of aluminum and polyethylene(PE) as packing. Since metal caps contain 75% aluminum on a weight basis, metal caps may be a valuable source when these were properly recovered. The recovery methods of metal caps have mechanical peeling and incineration. However these are either hard to apply in some case or environmentally unacceptable. So in this investigation, recovery method of aluminum from metal caps was investigated using pyrolysis. The result shows that pyrolysis temperature and pyrolysis time was $450^{\circ}C$ and 120min. respectively. Also 100% of aluminum was recovered from metal caps. Heat content of recovered oil was high enough to use as a fuel representing 7,425.0, 7,793.1, 7,583.2, 7,726.2(cal/g). Heavy metal contens in the oil were under regulatory limit indicating.

Superoxide Dismutase Profiles in the Mesophilic Deinococcus Species

  • Yun, Young-Sun;Lee, Young-Nam
    • Journal of Microbiology
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    • 제39권3호
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    • pp.232-235
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    • 2001
  • Electrophoretic resolution of superoxide dismutase (SOD) from the highly UV-resistant bacteria, Deinococcus species revealed multiple forms of superoxide dismutases (SODs) in D. radiodurans, D. grandis, and D. proteolyticus, as judged from electrophoretic properties and metal cofactors. A single SOD occurred in both D. radiophilus and D. radiopugnans. Deinococcal SODs were either MnSOD, FeSOD or cambialistic Mn/FeSOD. The unique SOD profile of each mesophilic Deinococcus species, multiplicity and metal cofactors would be valuable in identifying Deinococcus species.

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Metal Recycling Technologies from Fly-Ashes by the Metal Mining Agency of Japan

  • Kazuyuki, Kikuta;Nobuyuki, Masuda;Nobuyuki, Okamoto;Eiichi, Arai;Junichi, Kobayashi
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.659-663
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    • 2001
  • In Japan, the municipal solid waste, which amounts to 50 million tons, is generated every year and most of it is incinerated. The bottom and fly ashes are disposed to the registered disposal areas under the provisions of The Waste Disposal and Public Cleaning Law. Especially, as the fly ash from the municipal waste incineration (the primary fly ash) contains heavy metals (lead, zinc, etc) and dioxins, it cannot be disposed directly without decontamination, such as moiling, cementation, chelating and dissolving processes provided in the law. However, these procedures for decontamination, except melting, are not enough for dioxins. Even in case of melting, the fly ash from the process (the secondary fly ash) contains high concentration of heavy metals (e.g., Zn; 1-20%, Pb; 1-10%). For these reasons, Metal Mining Agency of Japan (MMAJ), a governmental organization, started a four-year project to develop the treatment technologies of these fly ashes in 1999. The purpose of the project is to establish the integrated technologies to recover the valuable metals from, and to decontaminate, the primary and secondary fly-ashes in the practical scale by utilizing the existing metallurgical processes and facilities, along with the energy saving and the reduction of the environmental impact.

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