• 제목/요약/키워드: abiotic hydrogen

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비생물기원 수소 생산성의 지질학적 평가 관련 해외 연구 동향: 리뷰 논문 (Research Trends of Foreign Countries on Geological Evaluation of Abiotic Hydrogen Productivity: A Review)

  • 정성우;김태용;고경태;양민준
    • 지질공학
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    • 제32권4호
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    • pp.627-642
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    • 2022
  • 최근까지 전 세계 에너지 수요는 화석연료(석유, 석탄, 천연가스)에 의존해왔으며, 이로 인해 지구온난화와 같은 심각한 전 지구적 환경 변화를 유발하고 있다. 에너지 관련 분야의 연구자들은 가장 유망한 에너지 운반체이자 지속 가능한 에너지 개발의 핵심 기술인 수소 에너지에 주목하고 있다. 수소 연료는 생산을 위해 사용되는 연료와 공정처리과정에 따라 그레이수소, 블루수소, 그린수소 등으로 분류된다. 지질학자들은 수소 에너지 개발을 위해 사문암화작용 또는 열수변질작용에 의한 비생물기원 수소 생산메커니즘 규명 연구를 진행하고 있다. 특히, 미국, 호주, 프랑스 등의 국가에서는 실내실험 규모의 물-암석 반응 실험을 통해 다양한 조건에서의 수소 생산성을 연구하였으나, 국내에서는 비생물기원 수소에 대한 연구가 거의 진행된 바 없는 실정이다. 이에 본 리뷰에서는 비생물기원 수소 생산을 위해 물-암석 반응 실험을 진행한 해외 연구 사례의 현황을 파악하고 향후 국내 비생물기원 수소 생산 실험을 위한 발전방향을 제시하였다.

A novel CaAbsi1 gene induced by early-abiotic stresses in pepper

  • Seong, Eun-Soo;Wang, Myeong-Hyeon
    • BMB Reports
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    • 제41권1호
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    • pp.86-91
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    • 2008
  • The full-length cDNA of CaAbsi1 encodes a presumptive protein of 134 amino acid residues that has homology to a putative zinc finger protein in its C-terminus. The deduced amino acid sequence has 50% homology to Oryza sativa NP001049-274, the function of which is unknown. Expression of CaAbsi1 was reduced in response to inoculation of non-host pathogens. On the other hand it was induced one hour after exposure to high concentrations of NaCl or mannitol, and six hours after transfer to low temperature. Induction also occurred in response to oxidative stress, methyl viologen, hydrogen peroxide and abscisic acid. Our results suggest that CaAbsi1 plays a role in multiple responses to wounding and abiotic stresses.

Characterization of CaCOP1 Gene in Capsicum annuum Treated with Pathogen Infection and Various Abiotic Stresses

  • Guo, Jia;Seong, Eun-Soo;Wang, Myeong-Hyeon
    • Journal of Applied Biological Chemistry
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    • 제50권4호
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    • pp.227-233
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    • 2007
  • We characterized a full-length cDNA of CaCOP1 from pepper. Phylogenetic analysis based on the deduced amino acid sequence of CaCOP1 cDNA revealed high sequence similarity to the COP1 gene in Oryza sativa (84% identity). CaCOP1 shares high sequence identity with regulatory protein in Arabidopsis (84%), constitutively photomorphogenic 1 protein in Pisum sativum (81%) and COP1 homolog in Lycopersicon esculentum (79%). CaCOP1 gene exists single copy in the chili pepper genome. Expression of CaCOP1 was reduced in response to inoculation of non-host pathogens. The expression of this gene under abiotic and oxidative stresses was investigated, including 200 mM NaCl, 200 mM mannitol, cold ($4^{\circ}C$), 100 ${\mu}M$ abscisic acid (ABA), and 10 mM hydrogen peroxide ($H_2O_2$). CaCOP1 was induced significantly 3 h after low temperature treatment but not by dehydration or high salinity. Moreover, CaCOP1 was not induced by plant hormone ABA. These observations suggest that CaCOP1 gene plays a role in abiotic stress and may be belong to ABA-independent regulation system.

Study of Functional Verification to Abiotic Stress through Antioxidant Gene Transformation of Pyropia yezoensis (Bangiales, Rhodophyta) APX and MnSOD in Chlamydomonas

  • Lee, Hak-Jyung;Yang, Ho yeon;Choi, Jong-il
    • Journal of Microbiology and Biotechnology
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    • 제28권7호
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    • pp.1217-1224
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    • 2018
  • Seaweeds produce antioxidants to counteract environmental stresses, and these antioxidant genes are regarded as important defense strategies for marine algae. In this study, the expression of Pyropia yezoensis (Bangiales, Rhodophyta) ascorbate peroxidase (PyAPX) and manganese-superoxide dismutase (PyMnSOD) was examined by qRT-PCR in P. yezoensis blades under abiotic stress conditions. Furthermore, the functional relevance of these genes was explored by overexpressing them in Chlamydomonas. A comparison of the different expression levels of PyAPX and PyMnSOD after exposure to each stress revealed that both genes were induced by high salt and UVB exposure, being increased approximately 3-fold after 12 h. The expression of the PyAPX and PyMnSOD genes also increased following exposure to $H_2O_2$. When these two genes were overexpressed in Chlamydomonas, the cells had a higher growth rate than control cells under conditions of hydrogen peroxide-induced oxidative stress, increased salinity, and UV exposure. These data suggest that Chlamydomonas is a suitable model for studying the function of stress genes, and that PyAPX and PyMnSOD genes are involved in the adaptation and defense against stresses that alter metabolism.

Polymer Electrolyte Membrane Fuel Cell 시스템의 환경 전과정평가 (Environmental Life Cycle Assessment (LCA) of Polymer Electrolyte Membrane Fuel Cell (PEMFC) System)

  • 김형석;홍석진;허탁
    • 한국수소및신에너지학회논문집
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    • 제29권1호
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    • pp.111-116
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    • 2018
  • The environmental impacts of a 1 kW polymer electrolyte membrane fuel cell (PEMFC) system are quantitatively assessed by performing a Life Cycle Assessment (LCA) study. A PEMFC system produces electricity and heat simultaneously, so an appropriate allocation of associated inputs and outputs is performed between the electricity and heat produced. The environmental impacts of the PEMFC system on the impact categories such as global warming (GW), abiotic depletion (AD), acidification (AC), and eutrophication (EU) are assessed from the life cycle impact assessment. The impact indicator results of the impact assessment on these impact categories are obtained as $3.70E-01kg\;CO_2\;eq./kWh$, 1.86E-03 kg Sb eq./kWh, $4.09E-04kg\;SO_2\;eq./kWh$, and $1.88E-05kg\;PO_4{^{3-}}/kWh$, respectively. For all impact categories studied the most influential stage is the operation stage, which accounts for 98.8%, 98.7%, 70.3%, and 62.3% of the total impact on GW, AD, AC, and EU, respectively. For the impact categories of AD, AC, and EU, most of the environmental impacts during the operation stage is attributed to the production of city gas. However, for the impact category of GW, $CO_2$ emission from the reforming process of city gas is the main reason for the largest contribution of the operation stage to the total impact results.

Enhancement of Spermidine Content and Antioxidant Capacity by Modulating Ginseng Spermidine synthase in Response to Abiotic and Biotic Stresses

  • Parvin, Shohana;Lee, Ok-Ran;Sathiyaraj, Gayathri;Kim, Yu-Jin;Khorolragchaa, Altanzul;Yang, Deok-Chun
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2011년도 임시총회 및 추계학술발표회
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    • pp.14-14
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    • 2011
  • Polyamines (putrescine, spermidine and spermine) play pivotal roles in plant defense to different abiotic and biotic stresses. In order to understand the function of ginseng spermidine synthase gene, a key gene involved in biosynthesis of polyamines, transgenic plant was generated in Arabidopsis. The transgenic plants exhibited high levels of polyamines compared to the untransformed control plants. We investigated the tolerance capacity of transgenic plants to abiotic stresses such as salinity and copper stress. In addition, transgenic plants also showed increased resistance against one of the important fungal pathogens of ginseng, the wilt causing Fusarium oxysporum and one of important bacteria, bacterial blight causing Pseudomonas syringae. However, an activity of the polyamine catabolic enzyme, diamine oxidase (DAO) was increased significantly in F. oxysporum and P. syringae infected transgenic plant. Polyamine catabolic enzymes which may trigger the hypersensitive response (HR) by producing hydrogen peroxide ($H_2O_2$) seem act as an inducer of PR proteins, peroxidase and phenyl ammonium lyase activity. The transgenic plants also contained higher antioxidant enzyme activities, less MDA and $H_2O_2$ under salt and copper stress than the wild type, implying it suffered from less injury. These results strongly suggest an important role of spermidine as a signaling regulator in stress signaling pathways, leading to build-up of stress tolerance mechanisms.

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Transgenic Expression of MsHsp23 Confers Enhanced Tolerance to Abiotic Stresses in Tall Fescue

  • Lee, Ki-Won;Choi, Gi-Jun;Kim, Ki-Yong;Ji, Hee-Jung;Park, Hyung-Soo;Kim, Yong-Goo;Lee, Byung-Hyun;Lee, Sang-Hoon
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권6호
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    • pp.818-823
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    • 2012
  • Tall fescue (Festuca arundinacea Schreb.) is an important cool season forage plant that is not well suited to extreme heat, salts, or heavy metals. To develop transgenic tall fescue plants with enhanced tolerance to abiotic stress, we introduced an alfalfa Hsp23 gene expression vector construct through Agrobacterium-mediated transformation. Integration and expression of the transgene were confirmed by polymerase chain reaction, northern blot, and western blot analyses. Under normal growth conditions, there was no significant difference in the growth of the transgenic plants and the non-transgenic controls. However, when exposed to various stresses such as salt or arsenic, transgenic plants showed a significantly lower accumulation of hydrogen peroxide and thiobarbituric acid reactive substances than control plants. The reduced accumulation of thiobarbituric acid reactive substances indicates that the transgenic plants possessed a more efficient reactive oxygen species-scavenging system. We speculate that the high levels of MsHsp23 proteins in the transgenic plants protect leaves from oxidative damage through chaperon and antioxidant activities. These results suggest that MsHsp23 confers abiotic stress tolerance in transgenic tall fescue and may be useful in developing stress tolerance in other crops.

연료전지 기반 에너지저장 시스템의 환경 전과정평가 및 에너지 효율성 분석 (Life Cycle Assessment (LCA) and Energy Efficiency Analysis of Fuel Cell Based Energy Storage System (ESS))

  • 김형석;홍석진;허탁
    • 한국수소및신에너지학회논문집
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    • 제28권2호
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    • pp.156-165
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    • 2017
  • This study quantitatively assessed the environmental impacts of fuel cell (FC) systems by performing life cycle assessment (LCA) and analyzed their energy efficiencies based on energy return on investment (EROI) and electrical energy stored on investment (ESOI). Molten carbonate fuel cell (MCFC) system and polymer electrolyte membrane fuel cell (PEMFC) system were selected as the fuel cell systems. Five different paths to produce hydrogen ($H_2$) as fuel such as natural gas steam reforming (NGSR), centralized naptha SR (NSR(C)), NSR station (NSR(S)), liquified petroleum gas SR (LPGSR), water electrolysis (WE) were each applied to the FCs. The environmental impacts and the energy efficiencies of the FCs were compared with rechargeable batteries such as $LiFePO_4$ (LFP) and Nickel-metal hydride (Ni-MH). The LCA results show that MCFC_NSR(C) and PEMFC_NSR(C) have the lowest global warming potential (GWP) with 6.23E-02 kg $CO_2$ eq./MJ electricity and 6.84E-02 kg $CO_2$ eq./MJ electricity, respectively. For the impact category of abiotic resource depletion potential (ADP), MCFC_NGSR(S) and PEMFC_NGSR(S) show the lowest impacts of 7.42E-01 g Sb eq./MJ electricity and 7.19E-01 g Sb eq./MJ electricity, respectively. And, the energy efficiencies of the FCs are higher than those of the rechargeable batteries except for the case of hydrogen produced by WE.

대륙 암석권에서 무기 자연 수소의 성인과 부존 형태 (Origin and Reservoir Types of Abiotic Native Hydrogen in Continental Lithosphere)

  • 김형수
    • 광물과 암석
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    • 제35권3호
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    • pp.313-331
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    • 2022
  • 무기 자연 수소(H2)는 천연가스의 주요 구성성분이지만, 청정 및 재생 가능한 에너지로써 글로벌 에너지 분야에서 그 중요성이 다소 과소평가되고 있다. 이 논문은 우리가 과거에 생각했던 것보다 훨씬 광범위한 환경에서 무기 자연 수소가 대륙 암석권에서 대량 생성된다는 최근 논문들을 바탕으로 자연 수소의 발생 기작과 이와 관련된 다양한 지질학적 특징들을 검토하였다. 지금까지 확인된 자연 수소의 주요 근원암은 (1) 초고철질암, (2) 철(Fe2+)이 풍부한 암석으로 구성된 강괴, (3) 우라늄이 풍부한 암석이다. 이 암석들은 선캄브리아 시대 결정질 기반암 그리고 중앙 해령과 대륙기반의 오피올라이트(ophiolite), 페리도타이트(peridotite) 암체에서 사문암화된 초고철질암과 밀접하게 관련된다(Zgonnik, 2020). 이 근원암들에서 자연 수소를 생성하는 무기적 작용은 (a) 광물(예, 감람석)의 Fe2+이 산화되는 동안 물의 환원, (b) 방사성 붕괴로 인한 수전해, (c) 규산염 암석의 기계적 파괴(예, 단층) 동안 물과 표면 라디칼의 반응 등이며, 자연 수소는 자유 기체(51%), 다양한 광물 내의 유체포유물(29%), 지하수의 용존기체(20%) 형태로 발견된다(Zgonnik, 2020). 우리나라의 경우 아직 자연 수소 연구가 수행되지는 않았지만, 경상분지 내 무기 자연 수소의 생성과 부존 가능성은 두꺼운 퇴적분지 내에서 초고철질암, 층간 현무암층과 철/구리 부화대 존재, 그리고 페름기-제3기 동안 능동적 대륙 연변부에서 여러 번의 화성활동 등을 포함한 지질학적/지구화학적 특성을 고려하면 상당히 높은 것으로 평가된다. 최근 지질 기원의 자연 수소를 연구/탐사하는 국외 학자들과 산업체들은 가까운 미래에 자연 수소가 깨끗하고 재생 가능한 획기적인 에너지원 역할을 할 것으로 전망하고 있다. 따라서 우리나라에서 자연 수소의 경제적 활용을 위한 부존지 발견 여부와 상관없이 지하의 암석-유체 상호작용에 관한 통합 연구를 통해 아직 밝혀지지 않은 자연 수소의 성인과 탐사는 차세대 핵심 연구임이 분명하다.

Molecular Cloning and Characterization of Type 2 Metallothionein cDNA from Codonopsis lanceolata (S. et Z.) Trautv

  • In, Jun-Gyo;Lee, Bum-Soo;Yi, Tae-Hoo;Yu, Chang-Yeon;Yang, Deok-Chun
    • 한국약용작물학회지
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    • 제13권5호
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    • pp.288-292
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    • 2005
  • A class I type 2 metallothionein (CMet2) cDNA from taproot of Codonopsis lanceolata was isolated and characterized. A CMet2 cDNA was 572 nucleotides long and had an open reading frame of 234 bp with a deduced amino acid sequence of 78 residues (pI = 4.99). The deduced amino acid sequence of CMet2 matched to the previously reported type 2 metallothionein-like protein genes and showed 74% identity with that of G. max (BAD18377) and C. arietinum (CAA65009). Expression of CMet2 by the RT-PCR was increased at 1 hr after cadmium and hydrogen peroxide treatment, respectively.