• Title/Summary/Keyword: 소화제

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수산동물의 소화 관련효소의 분포 -단백질분해효소-

  • 허민수;김정은;손보영;김진수;오광수
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.05a
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    • pp.82-83
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    • 2000
  • 수산 생물의 종에 따른 생물학적 다양성은 각기 독특한 성질을 갖는 다양한 효소들이 분포한다는 것을 의미하기도 한다. 이러한 이유로 다양한 효소자원으로서 수산동물의 가공 부산물 또는 폐기물로부터 소화 관련 효소(digestive enzymes)의 회수와 산업적 이용의 잠재성은 매우 크다고 할 수 있다. 수산동물의 소화 관련 효소는 pepsin(Gildberg et al., 1990;1991), chymotrypsin, trypsin(Heu et al, 1995), gastricsin(Sanchea- Chiang and Ponce, 1981) 그리고 elastase(Bjarnason et al., 1993)을 상으로 연구가 이루어지고 있다. 특히 수산동물과 같이 저온에 적응한 냉혈동물의 단백질분해효소는 육상의 온혈동물의 동종 효소보다 낮은 최적온도와 온도안정성 때문에 식품산업에 응용성이 넓다고 하겠다. 따라서 우리나라의 다양한 수산자원의 폐기물 및 가공부산물로부터 소화 관련 효소를 분리하여 식품산업에 있어서 가공보조제(processing aids)로서 이용 가능하리라 생각된다. (중략)

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Changes of the Microbial Population and Determination of Pepsin and In vitro Digestibilities of Pasteurized and Cured Food Wastes (살균${\cdot}$숙성된 남은 음식물의 공정별 미생물 분포 및 Pepsin과 In vitro 소화율 평가)

  • Baik, Y. H.;Ji, K. S.;Kwak, W. S.
    • Journal of Animal Environmental Science
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    • v.11 no.2
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    • pp.125-134
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    • 2005
  • This study was conducted to evaluate changes of microbial population, pepsin digestibility of protein and in vitro digestibility of nutrients of food waste mixture pasteurized and cured using a rotary drum system. A pasteurization process (30 min at $80^{\circ}C$) tended to decrease microbial populations and eliminated (P<0.05) molds in food waste mixture. The subsequent curing process increased (P<0.05) lactic acid bacteria counts which were reduced by the heated pasteurization process. The heated pasteurization process decreased (P<0.05) pepsin digestibility of protein in food waste mixture. In vitro digestibilities of dry matter and organic matter were high in the order of bakery by-product, wheat bran, food waste (=barley bran). These results indicate that food waste mixture pasteurized and cured using a semi-dehydration rotary drum system may be an effective animal feed resource.

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The Effect of Radiative Heat Flux on Dynamic Extinction in Metalized Solid Propellants (복사열전달이 고체 추진제의 동적소화에 미치는 영향)

  • Jeong, Ho Geol;Lee, Chang Jin
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.31 no.2
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    • pp.72-79
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    • 2003
  • A numerical calculation was conducted to estimate and to elucidate the role of the radiative heat flux from metal particles(Al, $Al_2O_3$) on the dynamic extinction of solid propellant rocket where the rapid depressurization took place. Anon-linear flame modeling implemented by the residence time modeling for metalized propellant was adopted to evaluate conductive heat flux to the propellant surface. The radiative heat feed back was calculated with the aid of a modified comvustion-flow model as well. The calculation results with the propellant of AP:Al:CTPB=76:10:14 had revealed that the radiative heat flux is approximately 5~6% of total flux at the critical depressurization rate regardless of chamber geometry (open or confined chamber). It was also found that the dynamic extinction in open geometry could be predicted at the depressurization rate about 45% larger with radiative heat feedback than without radiation. Thus, it should be claimed that even a small amount of radiative flux 5~6% could produce a big error in predicting the critical depressurization rate of the metalized propellant combustion.

Dechlorination of the Fungicide Chlorothalonil by Zerovalent Iron and Manganese Oxides (Zerovalent Iron 및 Manganese Oxide에 의한 살균제 Chlorothalonil의 탈염소화)

  • Yun, Jong-Kuk;Kim, Tae-Hwa;Kim, Jang-Eok
    • The Korean Journal of Pesticide Science
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    • v.12 no.1
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    • pp.43-49
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    • 2008
  • This study is conducted to determine the potential of zerovalent iron (ZVI), pyrolusite and birnessite to remediate water contaminated with chlorothalonil. The degradation rate of chlorothalonil by treatment of ZVI, pyrolusite and birnessite was much higher in low condition of pH. Mixing an aqueous solution of chlorothalonil with 1.0% (w/v) ZVI, pyrolusite and birnessite resulted in 4.7, 13.46 and 21.38 hours degradation half-life of chlorothalonil, respectively. Dechlorination number of chlorothalonil by treaonent of ZVI, pyrolusite and birnessite exhibited 2.85, 1.12 and 1.09, respectively. Degradation products of chlorothalonil by teartment of pyrolusite and birnessite were confirmed as trichloro-1,3-dicyanobenzene and dichloro-1,3-dicyanobenzene which were dechlorinated one and two chlorine atoms from parent chlorothalonil by GC-mass. Degradation products of chlorothalonil by ZVI were identified not only as those by pyrolusite and birnessite but as further reduced chloro-1,3-dicyanobenzene and chlorocyanobenzene.