• 제목/요약/키워드: G5 of composition and structure

검색결과 166건 처리시간 0.023초

동해안 천연 해조장의 군집구조와 분포 특성 (Community Structure and Distribution of Natural Seaweed Beds on the Eastern Coast of Korea)

  • 박규진;주현;최옥인;최창근
    • 해양환경안전학회지
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    • 제23권4호
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    • pp.338-346
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    • 2017
  • 이 연구는 2015년 5월부터 12월까지 우리나라 동해안에 위치한 강릉, 울진, 부산 일대에서 천연 해조장 및 서식환경 특성을 분석하였다. 연구기간 동안 출현한 해조류는 총 96종이었으며, 분류군별로는 녹조류 9종, 갈조류 23종, 홍조류 64종이었다. 강릉의 경우, 미끈뼈대그물말(D. divaricata)이 정점별로 $173.2{\sim}613.8g\;m^{-2}$로 가장 높은 생물량을 보였고, 가는보라색우무(S. linearis)가 $360.8{\sim}520.4g\;m^{-2}$, 미역(U. pinnatifida)이 $25.9{\sim}470.8g\;m^{-2}$로 생물량이 높았다. 울진에서는 참곱슬이(P. telfairiae)가 $5.5{\sim}256.2g\;m^{-2}$, 구멍쇠미역(A. clathratum)이 $46.8{\sim}241.5g\;m^{-2}$로 생물량이 높았다. 부산에서 높은 생물량을 보인 해조류는 큰잎모자반(S. coreanum)으로 $388.1{\sim}6,972.4g\;m^{-2}$였고, 감태(E. cava)도 $194.9{\sim}958.5g\;m^{-2}$로 다른 해조류에 비해 상대적으로 높은 생물량을 나타냈다. 생체량 비율의 경우, 강릉에서 0.0 ~ 55.5 %로 평균 19.2 %를 나타내 울진과 부산에 비해 상대적으로 가장 낮았다. 울진에서는 36.8 ~ 73.3 %으로 평균 63.8 %를 보였으며, 부산은 평균 48.5 %였다. 갯녹음 비율은 강릉에서 평균 46.7 %의 비율을 나타냈고, 울진에서는 평균 91.1 %의 높은 비율을 나타냈으며 이번 연구에서 다른 지역에 비해 가장 높은 비율을 보였다. 조식성 동물의 밀도는 강릉에서 평균 6.0 개체/$m^2$로 분석되었고, 울진에서는 7.0 개체/$m^2$를 나타냈으며 부산에서 2.0 개체/$m^2$로 전체 지역 중에서 가장 낮은 조식성 동물 밀도를 보였다. 결론적으로 이전 연구결과와 비교하여 종조성, 출현비율, 밀도는 유사하게 나타났다. 하지만 지구 온난화, 기후변화, 해안개발 등에 의한 물리적, 화학적 오염과 관련하여 지속적인 모니터링 연구가 필요하다고 판단된다.

Li2O-Bi2O3 첨가가 Pb(Mg1/3Nb2/3)0.65Ti0.35O3 세라믹의 압전 특성에 미치는 영향 (Effect of Li2O-Bi2O3 Addition on the Piezoelectric Properties of Pb(Mg1/3Nb2/3)0.65Ti0.35O3 Ceramics)

  • 김재혁;김시연;최정식;여동훈;신효순;남산
    • 한국분말재료학회지
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    • 제26권5호
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    • pp.405-409
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    • 2019
  • Piezoelectric ceramic specimens with the $Pb(Mg_{1/3}Nb_{2/3})_{0.65}Ti_{0.35}O_3$ (PMN-PT) composition are prepared by the solid state reaction method known as the "columbite precursor" method. Moreover, the effects of the $Li_2O-Bi_2O_3$ additive on the microstructure, crystal structure, and piezoelectric properties of sintered PMN-PT ceramic samples are investigated. The addition of $Li_2O-Bi_2O_3$ lowers the sintering temperature from $1,200^{\circ}C$ to $950^{\circ}C$. Moreover, with the addition of >5 wt.% additive, the crystal structure changes from tetragonal to rhombohedral. Notably, the sample with 3 wt.% additive exhibits excellent piezoelectric properties ($d_{33}=596pC/N$ and Kp = 57%) and a sintered density of $7.92g/cm^3$ after sintering at $950^{\circ}C$. In addition, the sample exhibits a curie temperature of $138.6^{\circ}C$ at 1 kHz. Finally, the compatibility of the sample with a Cu electrode is examined, because the energy-dispersive X-ray spectroscopy data indicate the absence of interdiffusion between Cu and the ceramic material.

동해안 죽변 조간대 저서동물의 계절적 군집 구조 (Community Structure of Macrobenthos at the Intertidal Zone of Jukbyeon in the East Coast of Korea)

  • 홍성익;최용규;정희동;이윤;김상우
    • 해양환경안전학회지
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    • 제23권4호
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    • pp.331-337
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    • 2017
  • 본 연구에서는 울진군 죽변의 암반조간대에서 2년(2015-2016)간 계절별 저서동물의 군집구조와 분포양상을 분석하였다. 죽변암반조간대의 종조성은 5문 41종으로 자포동물 4종, 연체동물 19종, 환형동물 3종, 절지동물 13종, 극피동물 2종이 출현하였으며, 총개체수 $1,642inds./m^2$, 총생체량 $1,959.42gWWt/m^2$ 조사되었다. 조간대 상부는 조무래기따개비(Chthamalus challengeri), 좁쌀무늬총알고둥(Nodilittorina radiata)이 우점하였다. 하부는 지중해담치(Mytilus galloprovincialis), 배무래기(Nipponacmaea schrenckii), 구멍밤고둥(Chlorostoma turbinata)이 우점하였다. 계절별 우점종의 경우, 조간대 상부에는 겨울과 봄에 조무래기따개비, 여름과 가을에 좁쌀무늬총알고둥이 우점하였다. 조간대 하부는 전 계절에 걸쳐서 지중해담치가 우점하였다. 군집분석을 통해 생물군집의 분기별 유사성을 분석한 결과, 이들 지역은 세 개의 그룹으로 구분되었다. 조간대 하부의 2015년 11월, 2015년 8월, 2016년 2-8월의 Group A와 조간대 하부의 2016년 11월, 2015년 5월의 Group B, 2015년-2016년 조간대 상부의 Group C로 구분되었다.

Dominance of Endospore-forming Bacteria on a Rotating Activated Bacillus Contactor Biofilm for Advanced Wastewater Treatment

  • Park, Seong-Joo;Yoon, Jerng-Chang;Shin, Kwang-Soo;Kim, Eung-Ho;Yim, Soo-Bin;Cho, Yeon-Je;Sung, Gi-Moon;Lee, Dong-Geun;Kim, Seung-Bum;Lee, Dong-Uk;Woo, Sung-Hoon;Koopman, Ben
    • Journal of Microbiology
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    • 제45권2호
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    • pp.113-121
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    • 2007
  • The bacterial diversity inherent to the biofilm community structure of a modified rotating biological contactor wastewater treatment process, referred to as the Rotating Activated Bacillus Contactor (RABC) process, was characterized in this study, via both culture-dependent and culture-independent methods. On the basis of culture-dependent methods, Bacillus sp. were found to exist in large numbers on the biofilm (6.5% of the heterotrophic bacteria) and the microbial composition of the biofilms was quite simple. Only three phyla were identified-namely, the Proteobacteria, the Actinobacteria (High G+C Gram-positive bacteria), and the Firmicutes (Low G+C Gram-positive bacteria). The culture-independent partial 16S rDNA sequence analysis revealed a considerably more diverse microbial composition within the biofilms. A total of eight phyla were recovered in this case, three of which were major groups: the Firmicutes (43.9%), the Proteobacteria (28.6%), and the Bacteroidetes (17.6%). The remaining five phyla were minor groups: the Planctomycetes (4.4%), the Chlorobi (2.2%), the Actinobacteria (1.1%), the Nitrospirae (1.1%), and the Verrucomicrobia (1.1%). The two most abundant genera detected were the endospore-forming bacteria (31.8%), Clostridium and Bacillus, both of which are members of the Firmicutes phylum. This finding indicates that these endospore-forming bacteria successfully colonized and dominated the RABC process biofilms. Many of the colonies or clones recovered from the biofilms evidenced significantly high homology in the 16S rDNA sequences of bacteria stored in databases associated with advanced wastewater treatment capabilities, including nitrification and denitrification, phosphorus accumulation, the removal of volatile odors, and the removal of chlorohydrocarbons or heavy metals. The microbial community structures observed in the biofilms were found to correlate nicely with the enhanced performance of advanced wastewater treatment protocols.

볼 밀링으로 제조된 리튬이온전지용 주석-흑연 복합체 음극재의 전기화학적 특성 (Electrochemical Properties of Ball-milled Tin-Graphite Composite Anode Materials for Lithium-Ion Battery)

  • 이태희;홍현아;조권구;김유영
    • 한국분말재료학회지
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    • 제28권6호
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    • pp.462-469
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    • 2021
  • Tin/graphite composites are prepared as anode materials for Li-ion batteries using a dry ball-milling process. The main experimental variables in this work are the ball milling time (0-8 h) and composition ratio (tin:graphite=5:95, 15:85, and 30:70 w/w) of graphite and tin powder. For comparison, a tin/graphite composite is prepared using wet ball milling. The morphology and structure of the different tin/graphite composites are investigated using X-ray diffraction, Raman spectroscopy, energy-dispersive X-ray spectroscopy, and scanning and transmission electron microscopy. The electrochemical properties of the samples are also examined. The optimal dry ball milling time for the uniform mixing of graphite and tin is 6 h in a graphite-30wt.%Sn sample. The electrode prepared from the composite that is dry-ball-milled for 6 h exhibits the best cycle performance (discharge capacity after 50th cycle: 308 mAh/g and capacity retention: 46%). The discharge capacity after the 50th cycle is approximately 112 mAh/g, higher than that when the electrode is composed of only graphite (196 mAh/g after 50th cycle). This result indicates that it is possible to manufacture a tin/graphite composite anode material that can effectively buffer the volume change that occurs during cycling, even using a simple dry ball-milling process.

산화흑연의 제조 및 전해질(TEABF4 & TEMABF4)에 따른 전기이중층 커패시터의 특성 (Preparation of Graphite Oxide and its Electrochemical Double Layer Capacitor's Performances using Non-Aqueous Electrolyte (TEABF4 & TEMABF4))

  • 양선혜;김익준;전민제;문성인;김현수;안계혁;이윤표;이영희
    • 공업화학
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    • 제18권3호
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    • pp.291-295
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    • 2007
  • 전기화학적으로 용량이 큰 활물질을 얻기 위한 수단으로 니들 코크스를 $NaClO_3$과 70 wt%의 $HNO_3$으로 구성된 수용액을 이용하여 산화처리를 하였다. $NaClO_3$/니들 코크스의 질량비가 7.5배인 수용액에서 산화 처리한 결과, 니들 코크스는 산화흑연 구조로 상변이가 일어나고, 또한 산소의 함유량의 증가와 함께 층간거리는 $6.9{\AA}$으로 확대되었다. 한편, 산화 니들 코크스의 전기이중층 커패시터용 분극 전극으로서의 전기화학적 특성은 acetonitrile의 용매에 각각 1.2 M의 TEABF4 (tetraethylammonium tetrafluoroborate)와 $TEABF_4$ (triethylmethylammonium tetrafluoroborate)의 전해질이 함유된 유기용액을 각각 사용하여 조사하였다. 1.2 M $TEABF_4$/acetonitrile의 전해액을 사용한 커패시터 셀은 1.2 M $TEABF_4$/acetonitrile의 전해액을 사용한 커패시터 셀에 비해 전극저항은 $0.05{\Omega}$로 낮았고, 2 전극 기준으로 0~2.5 V에서 측정한 용량 및 부피 당 용량은 32.0 F/g와 25.5 F/mL으로 높은 수치를 나타내었다. 이러한 전기화학적 거동을 천연흑연 구조에서의 층간 거리와 전해질의 양이온 크기와의 상관관계로 논의하였다.

Comparison of Pervaporation and Vapor Permeation Separation Processes for MTBE-methanol System

  • Kim, Youn-Kook;Lee, Keun-Bok;Rhim, Ji-Won
    • Korean Membrane Journal
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    • 제2권1호
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    • pp.36-47
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    • 2000
  • This paper deals with the separation of MTBE-methanol mixtures using crosslinked Poly(vinyl alcohol)(PVA) membranes with sulfur-succinic acid(SSA) as a crosslinking agent by pervaporation and vapor permeation technique. The operating temperatures, methanol concentration in feed mixtures, and SSA concentrations in PVA membranes were varied to investigate the separation performance of PVA/SSA membranes and the optimum separation characteristics by pervaporation and vapor permeation. And also, for PVA/SSA membranes, the swelling measurements were carried out to study the transport phenomena. The swelling measurements were carried out for pure MTBE and methanol, and MTBE/methanol=90/10, 80/20 mixtures using PVA/SSA membranes with varying SSA compositions. There are two factors of the membrane network and the hydrogen bonding. In pervaporation separation was also carried out for MTBE/methanol=90/10, 80/20 mixtures at various temperatures. The sulfuric acid group in SSA took an important role in the membrane performance. The crosslinking effect might be over the hydrogen bonding effect due to the sulfuric acid group at 3 and 5% SSA membranes, and this two factors act vice versa on 7% SSA membrane. In this case, the 5% SSA membrane shows the highest separation factor of 2,095 with the flux of 12.79g/㎡$.$hr for MTBE/methanol=80/20 mixtures at 30$^{\circ}C$ which this mixtures show near the azeotopic composition. Compared to pervaporation, vapor permeation showed less flux and similar separation factor. In this case, the flux decreased significantly because of compact structure and the effect of hydrogen bonding. In vapor permeation, density or concentration of methanol in vaporous feed is lower than that of methanol in liquid feed, as a result, the hydrogen bonding portion between the solvent and the hydroxyl group in PVA is reduced in vapor permeation. In this case, the 7% SSA membranes shows the highest separation factor of 2,187 with the flux of 4.84g/㎡$.$hr for MTBE/methanol=80/20 mixtures at 30$^{\circ}C$.

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Comparison of Pervaporation and Vapor Permeation Separation Processes for MTBE-methanol System

  • 김연국;이근복;임지원
    • 멤브레인
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    • 제2권1호
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    • pp.36-36
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    • 1992
  • This paper deals with the separation of MTBE-methanol mixtures using crosslinked Poly(vinyl alcohol)(PVA) membranes with sulfur-succinic acid(SSA) as a crosslinking agent by pervaporation and vapor permeation technique. The operating temperatures, methanol concentration in feed mixtures, and SSA concentrations in PVA membranes were varied to investigate the separation performance of PVA/SSA membranes and the optimum separation characteristics by pervaporation and vapor permeation. And also, for PVA/SSA membranes, the swelling measurements were carried out to study the transport phenomena. The swelling measurements were carried out for pure MTBE and methanol, and MTBE/methanol=90/10, 80/20 mixtures using PVA/SSA membranes with varying SSA compositions. There are two factors of the membrane network and the hydrogen bonding. In pervaporation separation was also carried out for MTBE/methanol=90/10, 80/20 mixtures at various temperatures. The sulfuric acid group in SSA took an important role in the membrane performance. The crosslinking effect might be over the hydrogen bonding effect due to the sulfuric acid group at 3 and 5% SSA membranes, and this two factors act vice versa on 7% SSA membrane. In this case, the 5% SSA membrane shows the highest separation factor of 2,095 with the flux of 12.79g/㎡·hr for MTBE/methanol=80/20 mixtures at 30℃ which this mixtures show near the azeotopic composition. Compared to pervaporation, vapor permeation showed less flux and similar separation factor. In this case, the flux decreased significantly because of compact structure and the effect of hydrogen bonding. In vapor permeation, density or concentration of methanol in vaporous feed is lower than that of methanol in liquid feed, as a result, the hydrogen bonding portion between the solvent and the hydroxyl group in PVA is reduced in vapor permeation. In this case, the 7% SSA membranes shows the highest separation factor of 2,187 with the flux of 4.84g/㎡·hr for MTBE/methanol=80/20 mixtures at 30℃.

Ni/MH 2차 전지용 고용량 Ti계 수소저장합금의 설계에 관한 연구 (A Study on the Alloy Design of High Capacity Ti-Based Metal Hydride for Ni/MH Rechargeable Battery)

  • 이한호;이재영
    • 한국수소및신에너지학회논문집
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    • 제7권1호
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    • pp.19-28
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    • 1996
  • Ti-Mn based hydrogen storage alloy were modified by substituting alloying elements such as Zr, V and Ni in order to design a high capacity MH electrode for Ni/MH rechargeable battery. When V was substituted in Ti-Mn binary system, the crystal structure was maintained as $Cl_4$ Laves phase at a composition of $Ti_{0.2}V_{0.4}Mn_{0.4}$ and $Ti_{0.4}V_{0.2}Mn_{0.4}$ and equilibrium pressure decreased below 1 atm without decreasing hydrogen storage capacity considerably. It was found that Ni should be included in Ti-V-Mn alloy in order to hydrogenate it electrochemically in KOH electrolyte. But substitution of Ni for Mn in Ti-V-Mn system caused the increase of equilibrium pressure above 1atm and decrease of hydrogen storage capacity. Zr was able to increase the reversible hydrogen storage capacity of Ti-V-Mn-Ni alloy without considerable change of hydrogenation properties. The electrochemical discharge capacity of Ti-Zr-V-Mn-Ni system were in the range of 350 - 464mAh/g and among them $Ti_{0.8}Zr_{0.2}V_{0.5}Mn_{0.5}Ni_{1.0}$ alloy had $Cl_4$ Laves single phase and very high electrochemical discharge capacity of 464mAh/g.

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플렉시블 CIGS 태양전지 제조를 위한 저온 나노입자공정 (Low Temperature Nanopowder Processing for Flexible CIGS Solar Cells)

  • 박진호;;;박준영
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.61.1-61.1
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    • 2010
  • $CuIn_{1-x}-GaxSe_2$ based materials with direct bandgap and high absorption coefficient are promising materials for high efficiency hetero-junction solar cells. CIGS champion cell efficiency(19.9%, AM1.5G) is very close to polycrystalline silicon(20.3%, AM1.5G). A reduction in the price of CIGS module is required for competing with well matured silicon technology. Price reduction can be achieved by decreasing the manufacturing cost and by increasing module efficiency. Manufacturing cost is mostly dominated by capital cost. Device properties of CIGS are strongly dependent on doping, defect chemistry and structure which in turn are dependent on growth conditions. The complex chemistry of CIGS is not fully understood to optimize and scale processes. Control of the absorber grain size, structural quality, texture, composition profile in the growth direction is important to achieving reliable device performance. In the present work, CIS nanoparticles were prepared by a simple wet chemical synthesis method and their structural and optical properties were investigated. XRD patterns of as-grown nanopowders indicate CIS(Cubic), $CuSe_2$(orthorhombic) and excess selenium. Further, as-grown and annealed nanopowders were characterized by HRTEM and ICP-OES. Grain growth of the nanopowders was followed as a function of temperature using HT-XRD with overpressure of selenium. It was found that significant grain growth occurred between $300-400^{\circ}C$ accompanied by formation of ${\beta}-Cu_{2-x}Se$ at high temperature($500^{\circ}C$) consistent with Cu-Se phase diagram. The result suggests that grain growth follows VLS mechanism which would be very useful for low temperature, high quality and economic processing of CIGS based solar cells.

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