• 제목/요약/키워드: dry mass production

검색결과 187건 처리시간 0.027초

A Comparison of Methods for Estimating the Productivity of Zostera marina

  • Park, Sang-Rul;Li, Wen-Tao;Kim, Seung-Hyeon;Kim, Jae-Woo;Lee, Kun-Seop
    • Journal of Ecology and Environment
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    • 제33권1호
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    • pp.59-65
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    • 2010
  • Because seagrass production significantly contributes to the biodiversity and production of coastal and estuarine ecosystems, accurate estimation of seagrass productivity is a critical step toward understanding the ecological roles of seagrass in these ecosystems. To develop an accurate and effective method of measuring seagrass productivity, we estimated leaf productivity of eelgrass (Zostera marina) on the southern coast of Korea using three methods, the conventional leaf marking method, the elongation-mass method (Short '87 method), and the plastochrone method. In each season, shoots were pierced through the bundle sheath using a hypodermic needle and were collected after 2-4 weeks had elapsed to estimate their productivity. The leaf elongation and the leaf plastochrone intervals varied significantly among seasons. On an annual basis, the conventional leaf marking method showed the lowest leaf productivity estimates compared to the elongation-mass method and the plastochrone method, suggesting that the conventional leaf marking method underestimated leaf productivity as it ignored leaf maturation processes and new leaf growth within the sheath. Since the elongation-mass method considered leaf maturation processes, this method produced higher leaf productivity estimates than the conventional leaf marking method. On an annual basis, the plastochrone method produced the highest leaf productivity estimates. Below-ground productivity, which can be easily estimated using the plastochrone method, ranged between 3.29 and 5.73 (mg dry weight $shoot^{-1}\;day^{-1}$) and accounted for about 17.8% to 30.3% of total productivity. Because of the high contributions of below-ground productivity to total seagrass production, we suggest that the plastochrone method is an effective and simple technique for assessing both above- and below-ground productivities.

당밀주정(糖蜜酒精) 증류폐액(蒸溜廢液)을 이용한 단세포(單細胞) 단백질(蛋白質)의 생산에 관한 연구(제2보) -Candida brumptii 균체(菌體) 생산조건에 대하여- (Studies on the Production of the Single Cell Protein from Alcohol Distillation Slops of Cane Molasses(Part II) -On the Conditions for Cell Mass Product ion by Candida brumptii-)

  • 김찬조;오만진;박수웅
    • 농업과학연구
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    • 제3권2호
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    • pp.244-250
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    • 1976
  • 당밀주정증류폐액을 이용하여 분리동정(分離同定)한 효모(酵母)로 SCP 생산에 대한 몇가지 조건과 인체수율을 측정하여 다음과 같은 결과를 얻었다. 폐액의 상징액을 희석하지 않고 그대로 사용하는 것이 가장 효과적이었다. 공시균주(供試菌株)를 배양함으로써 폐액의 BOD와 COD는 각각 약 30% 및 20%정도 감소되었다. 배양조건은 온도 $35^{\circ}C$, pH5.0이 양호하였으며 질소원(窒素源)은 $(NH_4)_2SO_4$$(NH_4)_2HPO_4$가 0.2%에서 적당 하였으며 무기 염류는 $K_2HPO_4$를 0.1~0.2%의 첨가가 가장효과적이었다. 균체수율은 약 1.03%이었으며 생산된 균체중의 조단백질(粗蛋白質)은 약 52.65%이었다.

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재난 지원을 위한 DfMA 모듈러주택 모델 제안 (Proposing a DfMA Modular Housing Model for Disaster Relief Support)

  • 이지은
    • 토지주택연구
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    • 제14권2호
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    • pp.97-107
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    • 2023
  • 본 연구는 자연 재해 및 사회 재난 발생으로 주거권의 보장을 위한 임시주거 시설의 수요가 증가하는 추세에 대비하여 이재민에게 신속하게 양질의 주택을 공급코자 수행되었다. 대량 생산 및 운반에 효율적인 계획 모델을 만들기에 적합한 DfMA 설계 방식, 즉 제조 및 조립 기반 모듈러주택 모델을 제시하였으며, 특징은 다음 세 가지이다. 첫째, 모듈러주택을 서비스 모듈과 기능 모듈로 구분하여 고정성과 변동성을 발전시켜 다양성을 만들도록 계획했다. 둘째, 제품과 같이 이동하여 편리한 위치에 놓고 사용할 수 있도록 계획하여 대지 여건 및 수요에 맞춰 융통성 있는 배치계획을 하는 시스템을 제안 했다. 이러한 계획은 동일한 주택을 대량 생산하여 국내외의 다양한 위치와 사업에 활용할 수 있다. 셋째, 생산효율성을 높일 수 있도록 생산의 자동화를 염두해 두고 건식 공법으로 공정을 단순화하고 최소화하는 방식으로 계획했다. 이러한 DfMA설계방식 적용으로 제작 및 시공기간 단축, 공사비 절감, 주택 품질 제고를 도모하여 건설 생산성을 향상시킬 수 있다.

평판 디스플레이용 Laser Direct Imaging에 관한 연구( I ) (A Study on the Laser Direct Imaging for FPD ( I ))

  • Kang, H.S.;Kim, K.R.;Kim, H.W.;Hong, S.K.
    • 한국레이저가공학회:학술대회논문집
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    • 한국레이저가공학회 2005년도 추계학술발표대회 논문집
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    • pp.37-41
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    • 2005
  • When screen size of the Flat Panel Display (FPD) becomes larger, the traditional photo-lithography using photomasks and UV lamps might not be possible to make patterns on Photo Resist (PR) material due to limitation of the mask size. Though the maskless photo-lithography using UV lasers and scanners had been developed to implement large screen display, it was very slow to apply the process for mass-production systems. The laser exposure system using 405 nm semi-conductor lasers and Digital Micromirror Devices (DMD) has been developed to overcome above-mentioned problems and make more than 100 inches FPD devices. It makes very fine patterns for full HD display and exposes them very fast. The optical engines which contain DMD, Micro Lens Array (MLA) and projection lenses are designed for 10 to 50 ${\mu}m$ bitmap pattern resolutions. The test patterns for LCD and PDP displays are exposed on PR and Dry Film Resists (DFR) which are coated or laminated on some specific substrates and developed. The fabricated edges of the sample patterns are well-defined and the results are satisfied with tight manufacturing requirements.

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Multilayered Graphene Electrode using One-Step Dry Transfer for Optoelectronics

  • Lee, Seungmin;Jo, Yeongsu;Hong, Soonkyu;Kim, Darae;Lee, Hyung Woo
    • Current Optics and Photonics
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    • 제1권1호
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    • pp.7-11
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    • 2017
  • In this study, multilayered graphene was easily transferred to the target substrate in one step using thermal release tape. The transmittance of the transferred graphene according to the number of layers was measured using a spectrophotometer. The sheet resistance was measured using a four-point probe system. Graphene formed using this transfer method showed almost the same electrical and optical properties as that formed using the conventional poly (methyl methacrylate) transfer method. This method is suitable for the mass production of graphene because of the short process time and easy large-area transfer. In addition, multilayered graphene can be transferred on various substrates without wetting problem using the one-step dry transfer method. In this work, this easy transfer method was used for dielectric substrates such as glass, paper and polyethylene terephthalate, and a sheet resistance of ~240 ohm/sq was obtained with three-layer graphene. By fabricating organic solar cells, we verified the feasibility of using this method for optoelectronic devices.

단일처리전 장일처리 기간이 온실재배 스프레이 절화국의 영양생장에 미치는 영향 (Long-Day Period Before Short-Day Treatment Affects the Vegetative Growth of Greenhouse-Grown Cut Chrysanthemum cv, Reagan Improved)

  • 조경철;이정현;한태호;정순주;백철기
    • 생물환경조절학회지
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    • 제11권4호
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    • pp.205-216
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    • 2002
  • 본 실험은 정식 후 단일처리전 장일처리 기간에 따른 온실재배 스프레이 절화국 (cv. Reagan Improved)의 생육 및 건물생산에 미치는 영향을 구명하기 위하여 네덜란드 Wageningen 대학의 유리온실 실험포에서 수행하였다. 정식에서 개화기까지 3주 장일처리구에서는 84일이었고, 2주 처리구에서는 77일, 1주 처리구에서는 70일,단일처리 후에 최종수확일까지는 63일이 소요되었다. 정식 후 초장 생장량은 3주 장일처리구에서 가장 높았고, 1주 장일처리구에서 가장 낮았다. 또한 정식 후 최종 엽수, 엽면적 확보량 및 엽생체중과 총식물생체중은 3주 장일처리구에서 높고, 1주 장일처리구에서 낮은 결과를 나타내었다. 반면.단일처리 후 절대생장율에 있어서 엽전개속도와 초장생장속도는 모든 처리구에서 동일한 반응을 보였다. 최종건물생산량 (g.m$^{-2}$ )은 3주 장일처리구에서 높고, 1주 장일처리구에서 가장 낮게 나타났다. 초장과 생체중은 장일 조건이 길수록 높게 나타났으며,누적 건물중도 3주 장일처리구에서 가장 높은 결과를 나타냈다.

한국에 있어서 답리작을 이용한 양질 조사료 생산기술 (Studies on the Forage Production and Utilization on Paddy Field in Korea)

  • 서성;육완방
    • 한국초지학회:학술대회논문집
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    • 한국초지조사료학회 2002년도 창립 30주년 International Symposium
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    • pp.5-56
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    • 2002
  • The problems in the current domestic forage production were evaluated, and the prospective improvement was suggested in this paper. Grassland development in forest, production of high quality forages in upland and paddy land, efficient utilization of rice straw, development of new varieties of forages suitable for our environmental conditions and imported forages were described Among them, preferential production and utilization of forages using paddy field after rice harvest . should be enlarged for domestic supply of forages in Korea. Several studies were carried out to select the promising forage crops and barley cultivars for whole crop silage production, to determine productivity, nutritive value and production cost of forages produced in paddy field, and feeding effect of forages with Hanuwoo and milking cow for whole crop silage with forages produced in paddy field, 1999 to 2001, and also discussed restraint factors and activation plans for enlargement of forage production in paddy land. The promising forage crops in paddy field were rye and barley for Middle region, and rye, barley, early maturing Italian ryegrass and wheat for Southern region. The promising barley cultivars for whole crop silage in paddy field were Albori in Suwon, Keunalbori, Milyang 92, Saessalbori, and Naehanssalbori in Iksan, and Keunalbori, Albori, Naehanssalbori, and Saegangbori in Milyang, respectively. Silage production, quality and animal palatability of silage by trench and round bale were also compared. The production yields of whole crop barley silage(WBS) were 17,135kg as a fresh matter, and 6,011kg as a dry matter per ha, and the quality of WBS was 2∼3 grade, while that of rice straw silage was 4 grade as a farm basis. The production cost of WBS per kg was 83won as a fresh matter, and 238won as a dry matter. Feeding of WBS as forages on Hanwoo was very desirable for the improvement of live-weight gain, beef quality and farm income, particularly in growing stage of Hanwoo. Milk production and income were also increased, and feed cost was decreased by feeding of WBS. The daily voluntary intake of WBS in milking cow was 26.3kg as a fresh matter(DM 7.7kg) per head. Milk production when WBS was fed, was very similar to that of imported hay feeding such as Kentucky bluegrass or domestic corn silage. The issues to be solved in near future f3r stable forage production and supply in paddy land are sustainable livestock-forages policy, development & seed production of new varieties of barley, rye, Italian ryegrass and other promising forages, efficient demand & supply system of forages, solidification for mass production and utilization of forages, efficient application management of animal slurry on paddy field considering environmental agriculture/livestock industry, and break k development of bottleneck technique in production field. Domestic production & supply of high cost agricultural machine (round baler, wrapper, handler and so on), plastic wrapping film, and silage additives are also important.

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기포탑 및 막 재순환 생물반응기에서의 Saccharomycopsis lipolytica에 의한 구연산 생산 (Citric Acid Production by Succharomycopsis lipolytica in Air-lift and Membrane Recycle Bioreactors)

  • 조대철;정봉현;장호남
    • 한국미생물·생명공학회지
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    • 제17권6호
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    • pp.624-628
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    • 1989
  • A study on the citric acid production using Saccharomycopsis lipolytica (NRRL Y7576) was carried out in shake-flasks, air-lift and membrane recycle bioreactors. The cells entrapped in Ca-alginate beads were used in shake-flasks and air-lift reactor. Repeated batch fermentation in shake-flasks was successfully performed for 34 days and resulted in a yield of 54%. Increased yield (63%) was obtained in the air-lift reactor operation using nitrogen deficient medium (NDM). In the membrane recycle bioreactor operation, the maximal dry cell mass concentration was 39 g/1 at a dilution rate of 0.02 h$^{-1}$ and the yield with NDM was higher than that with growth medium. In addition, the yield and volumetric productivity with pure oxygen supply were greatly improved compared with those with air supply.

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Optimization of SOD Biosynthesis by Controlling Sucrose Concentration in the Culture of Carrot Hairy Root

  • Kim, Ji-Hyeon;Yoo, Young-Je
    • Journal of Microbiology and Biotechnology
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    • 제12권4호
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    • pp.617-621
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    • 2002
  • In order to optimize the carrot hairy root culture for SOD production, a fed-batch culture of hairy roots was performed in a bioreactor. Maximum SOD activity was obtained when the hairy roots were transferred to the MS medium containing 110 g/1 concentration of sucrose. By controlling the sucrose concentration (70 g/1 sucrose for growth and 110 g/1 sucrose far production, respectively) In a two-stage fed-batch culture, 29 g/1 of the hairy roots was obtained based on the final dry mass. The volumetrically determined SOD activity and productivity in the fed-batch culture were about 6 times higher than those from the flask culture containing sucrose at 30 g/1 concentration.

Polymeric Material Application for The Production of Ceramic Foam Catalyst

  • Sangsuriyan, Anucha;Yeetsorn, Rungsima;Tungkamani, Sabaithip;Sornchamni, Thana
    • International Journal of Advanced Culture Technology
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    • 제3권1호
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    • pp.21-30
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    • 2015
  • Ceramic foams are prepared as positive images corresponding to a plastic foam structure which exhibits high porosities (85-90%). This structure makes the ceramic foams attractive as a catalyst in a dry reforming process, because it could reduce a high pressure drop problem. This problem causes low mass and heat transfers in the process. Furthermore, the reactants would shortly contact to catalyst surface, thus low conversion could occur. Therefore, this research addressed the preparation of dry reforming catalysts using a sol-gel catalyst preparation via a polymeric sponge method. The specific objectives of this work are to investigate the effects of polymer foam structure (such as porosity, pore sizes, and cell characteristics) on a catalyst performance and to observe the influences of catalyst preparation parameters to yield a replica of the original structure of polymeric foam. To accomplish these objectives industrial waste foams, polyurethane (PU) and polyvinyl alcohol (PVA) foams, were used as a polymeric template. Results indicated that the porosity of the polyurethane and polyvinyl alcohol foams were about 99% and 97%. Their average cell sizes were approximate 200 and 50 micrometres, respectively. The cell characteristics of polymer foams exhibited the character of a high permeability material that can be able to dip with ceramic slurry, which was synthesized with various viscosities, during a catalyst preparation step. Next, morphology of ceramic foams was explored using scanning electron microscopy (SEM), and catalyst properties, such as; temperature profile of catalyst reduction, metal dispersion, and surface area, were also characterized by $H_2-TPR$ and $H_2-TPD$ techniques, and BET, respectively. From the results, it was found that metal-particle dispersion was relatively high about 5.89%, whereas the surface area of ceramic foam catalysts was $64.52m^2/g$. Finally, the catalytic behaviour toward hydrogen production through the dry reforming of methane using a fixed-bed reactor was evaluated under certain operating conditions. The approaches from this research provide a direction for further improvement of marketable environmental friendly catalyst production.