• 제목/요약/키워드: Homogeneous liquid

검색결과 242건 처리시간 0.016초

복령 균핵의 알칼리추출물에서 정제한 면역활성 증강물질의 작용과 화학구성 (Chemical Composition and Biological Activities of Immunostimulants Purified from Alkali Extract of Poria cocos Sclerotium)

  • 이상달;조수묵;박정식;한상배;전영진;김환묵;김광포
    • 한국균학회지
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    • 제27권4호통권91호
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    • pp.293-298
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    • 1999
  • 복령 균핵을 여러단계로 추출하여 얻은 다당류들의 면역 증강활성을 생쥐 비장세포에서 혼합임파구 반응으로 측정하였다. 이들 중 탄산나트륨 추출물의 활성이 가장 높았고 이를 DEAE-셀롤로오스와 Sephadex G-50 크로마토그래피로 면역활성증강물질을 정제하여 PCSC22를 얻었다. PCSC22는 탄수화물과 단백질이 약 78:22의 비율로 이루어진 단백다당체이었으며 GP-HPLC로 측정된 평균분자량은 약 8 kDa이었다. PCSC22 분획은 단당들의 구성성분들 중 mannose(92%)가 가장 많고 galactose(6.2%)와 약간의 arabinose(1.3%)도 함유하고 있는 heteromannan 이었다. 단백질 부분은 총 15종의 아미노산으로 구성되어 있었고 그 중 aspartic acid, serine, valine 등의 합이 약 47%로 주요 성분이었다. PCSC22는 B 임파구의 항체형성능력과 macrophage의 일산화질소 분비능력을 함께 증강시켰다.

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균질한 매질 내 Calcium polysulfide 주입에 따른 고농도 중금속 오염 지하수 정화 타당성 검토 (Feasibility Evaluation for Remediation of Groundwater Contaminated with Heavy Metal using Calcium Polysulfide in Homogeneous media)

  • 고현우;주진철;남경필;문희선;윤성희;이동휘;장소예
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제28권1호
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    • pp.1-14
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    • 2023
  • In this study, column tests using relatively uniform Jumunjin sand media were conducted to evaluate the feasibility of calcium polysulfide (CaSx, CPS) in removing high concentration of Zn2+ in groundwater. The injected CPS solution reacted rapidly with Zn2+ in artificial groundwater and effectively reduced Zn2+ by more than 99% through metal sulfide precipitation. Since the density (d = 1.27 g/cm3 ) of CPS solution was greater than that of water, CPS solution settled down rapidly while capturing Zn2+ and formed stable CPS layer similar to dense nonaqueous phase liquid. Mass balance analysis on Zn2+ in CPS solution suggested that CPS solution effectively reacted with Zn2+ to form metal sulfide precipitates except for high groundwater seepage velocity of 400 cm/d. With greater groundwater seepage velocity, injected CPS did not completely dissolve at the CPS-water interface, but a partially-misible CPS layer continuously moved and reacted with Zn2++ in the direction of groundwater flow. Since hydraulic conductivity (Kh) decreased slightly due to the generated metal precipitates in the inter-pores of media, injection of CPS solution should be optimized to prevent clogging. As evidenced by both XRF and SEM/EDS results, ZnS precipitates were clearly observed through the reaction between the CPS solution and Zn2+. Further study is warranted to evaluate the feasibility of CPS to remove high-concentration heavy metalcontaminated groundwater in complex and heterogeneous media.