• 제목/요약/키워드: Moisture constant

검색결과 332건 처리시간 0.022초

DSC에 의한 전분의 Endothermic peak와 효소분석법에 의한 호화도 비교 (Comparison of Differential Scanning Calorimetry with Enzymatic Method for the Determination of Gelatinization Degree of Corn Starch)

  • 이부용;목철균;이철호
    • 한국식품과학회지
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    • 제25권4호
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    • pp.400-403
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    • 1993
  • Corn starch와 waxy corn starch를 시료전분으로 사용하여 수분함량 $20{\sim}80%$ 범위에서 DSC를 사용하여 얻은 흡열곡선의 엔탈피와 효소분석법으로 전분의 호화도를 측정하여, 측정방법들 사이의 차이를 비교하여 보았다. DSC로 시료전분의 엔탈피 측정시 수분함량 70%까지는 수분함량 증가에 따라 엔탈피가 비례적으로 증가하였으나 70% 이상의 수분함량에서는 엔탈피가 평형에 도달하였으며 waxy corn starch가 4.2 cal/g, corn starch가 3.23cal/g의 엔탈피를 나타내었다. 효소분석법으로 호화도를 측정하였을 때는 수분함량의 증가에 따라 80% 수분함량까지도 시료전분의 호화도가 비례적으로 증가하였다. DSC에 의한 엔탈피 변화와 효소분석법에 의한 호화도 결과를 비교하여 보면 수분함량 70% 이하에서는 서로 직선적인 비례관계를 나타내었으나, 수분함량 70% 이상의 고 수분계 전분은 DSC로 측정시 엔탈피 차이가 나지 않았으나 효소분석법으로 측정했을 때는 수분함량 80%까지도 호화도 차이가 잘 나타났다.

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일본잎갈나무 정각재(正角材)의 고온건조(高溫乾燥) 온도(溫度)가 내부온도(內部溫度), 건조속도(乾燥速度) 및 건조결함(乾燥缺陷)에 미치는 영향(影響) (Effects of Drying Temperature on Internal Temperature, Drying Rate and Drying Defects for Japanese Larch in High-Temperature Drying)

  • 이준호;정희석
    • Journal of the Korean Wood Science and Technology
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    • 제25권4호
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    • pp.99-107
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    • 1997
  • This study was executed to test the possibility of replacement for domestic Japanese larch(Larix leptolepis) for hardwoods and to acquire the information about the effects of drying temperature on internal temperature, moisture content and drying defects. In high-temperature drying, internal temperature increased rapidly to boiling point, immediately after that point the internal temperature rising rate was reduced. In the case of drying at temperature of $125^{\circ}C$, internal temperature could reach at boiling point in a very short time. Moisture content in high-temperature drying showed constant drying rate period and first period of falling rate drying together in 4 hours since experiment begun. There was no strong correlation between initial moisture content and final moisture content. Average drying rate at $115^{\circ}C$, $120^{\circ}C$ and $125^{\circ}C$ was 1.42%/hr, 1.88%/hr and 2.02%/hr, respectively; the case of drying temperature of $125^{\circ}C$ showed most rapid drying rate. Drying rate of $125^{\circ}C$ was so rapid that it showed more severe shrinkage, bow, collapse, end check, and internal check development than in other drying conditions. The result of this study showed the strong possibility of high-temperature drying for Japanese larch, and to dry Japanese larch optimally, dry bulb temperature should not exceed $120^{\circ}C$.

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저관리 경량형 옥상녹화 식물의 내건성 평가 (Assessment of Plant Drought Tolerance for Extensive Green Roof)

  • 박성식;최재혁;박봉주
    • 한국유기농업학회지
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    • 제24권4호
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    • pp.787-795
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    • 2016
  • The purpose of this study was to assess drought tolerance of groundcover plants for extensive green roof. Form July to November 2013, plant height, chlorophyll content, soil moisture, evapotranspiration and survival rate was measured. As results, after unirrigation started, Aster koraiensis reached 0% of soil moisture earliest followed by Sedum kamtschaticum, Hemerocallis fulva, Hylotelephium spectabile, Iris sanguinea, Hosta longipes and control. Among the plants, A. koraiensis withered earliest on 19th day of unirrigation experiment, followed by H. longipes and H. fulva (27th day); and I. sanguinea (29th day). S. kamtschaticum and H. spectabile survived even after 120th day of the experiment. As for chlorophyll content, I. sanguinea showed constant values in early stage than rapidly decreased right before its withering. Chlorophyll content of A. koraiensis and H. fulva showed rapid decrease from the beginning, while that of H. spectabile and S. kamtschaticum showed continuous reduction for first 30 days and the reduction was slowed down since then. In conclusion, H. longipes, I. sanguinea and H. fulva were found most applicable for extensive green roof considering scenic aspect.

환경변화에 강한 골판지 개발을 위한 기초연구(제1보) (The preliminary study of developing strong corrugated box board against aggravated service condition(I))

  • 서영범;오영순
    • 펄프종이기술
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    • 제30권1호
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    • pp.29-43
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    • 1998
  • This study was to investigate the effect of .compressive load and cyclic humidity(2$0^{\circ}C$, 65% and 90% RH) on the physical and mechanical properties of corrugated board. Corrugated boards in the study were under compressive load and under cyclic humidity, and their properties were compared to those without load. Results were summarized as follows ; 1 Statistically significant correlation was shown between the ring crush of the boards and the compressive strength of cylinder specimen made from the boards. So we could study the compressive behavior of board with cylinder specimen. 2. The boards under the compressive load increased their moisture content and thickness much more than those without load both in constant and in cyclic RH. 3. The compressive and tensile strength of board samples were inversely and closely proportional to the sheet moisture content regardless of their load and humidity history. 4. The moisture content did not show any significant proportionality to the change of burst strength of boards within this experiment. 5. Board reconditioning in standard condition led to the recovery of the strength loss that had occurred under various load and humidity condition. 6. The handsheets prepared from the boards that had experienced compressive load and cyclic humidity, and those with no-load and 65% RH did not show any significant difference in strength properties. No physical damage or load-carrying properties of the wood fiber were observed by the compressive load and cyclic humidity history.

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시료 두께에 의한 저온진공건조기의 열적 특성에 관한 연구 (A Study on the Thermal Characteristics of the Low Temperature Vacuum Dryer by Material Layers)

  • 최순열;문수범
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권2호
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    • pp.226-232
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    • 2002
  • In tradition, there have been two kinds of drying methods, which are sun drying and artificial drying. The sun drying method which has been adopted traditionally has been replaced by the hot-air drying method which is one of the most general methods of artificial drying, with its simple drying system, low initial cost of drying plant, and easy operating method. But the hot-air drying method has some defects ; (1)much energy loss happens due to the discharge of hot air during the drying process, (2)control of drying rate is not easy on account of changing relative humidity of inlet air for uniform hot air temperature, (3)high temperature of floods in drying process brings about the production of low-grade drying products. Also, the hot-air drying method is inducing environmental and sanitary problems which are resulting from the emission of high temperature and high humidity air, including stick on the drying progress. Vacuum drying technique, whose drying time and 7uantity of exhausting energy is about 1/3 ~1/4 of hot air drying, is very excellent in the drying efficiency. As the results, it took about 20 hours for material to reach about 18% of the final moisture content in order to store products for a long time, from about 470% of the early moisture content at the beginning of drying, and maximum drying rate comes to about $0.35 kg/m^2hr$ at about 350% of the moisture content.

딥러닝과 머신러닝을 이용한 FDR 센서의 콘크리트 단위수량 평가에 관한 연구 (A Study on the Evaluation of Concrete Unit-Water Content of FDR Sensor Using Deep Learning and Machine Learning)

  • 이승엽;윤지원;위광우;양현민;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 가을 학술논문 발표대회
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    • pp.29-30
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    • 2022
  • The unit-water content has a very significant effect on the durability of the construction structure and the quality of concrete. Although there are various methods for measuring the unit-water content, there are problems of time required for measurement, precision, and reproducibility. Recently, there is an FDR sensor capable of measuring moisture content in real time through an apparent dielectric constant change of electromagnetic waves. In addition, various artificial intelligence techniques that can non-linearly supplement the accuracy of FDR sensors are being studied. In this study, the accuracy of unit-water content measurement was compared and evaluated using machine learning and deep learning techniques after normalizing the data secured in concrete using frequency domain reflectometry (FDR) sensors used to measure soil moisture at home and abroad. The result of comparing the accuracy of machine learning and deep learning is judged to be excellent in the accuracy of deep learning, which can well express the nonlinear relationship between FDR sensor data and concrete unit-water content.

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Viscoelastic Analysis of Osmotic Blistering Behavior of Coating Film

  • Lee, Sang Soon;Park, Myung Kyu
    • Corrosion Science and Technology
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    • 제8권1호
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    • pp.11-14
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    • 2009
  • The osmotic blistering behavior of polymeric coating film which is in contact with an aqueous environment has been investigated. In this study, the coating film has been assumed to be linearly viscoelastic. Interfacial stresses induced in a laminate model consisting of the viscoelastic film and the elastic substrate as the film absorbs moisture from the ambient environment have been investigated using the time-domain boundary element method. The overall stress intensity factor for interfacial cracks subjected to a uniform osmotic pressure has been computed using the tractions at the crack tip node. The magnitude of stress intensity factors decreases with time due to viscoelastic relaxation, but remains constant at large times.

인발력을 받는 Kaolinite 지반의 장기변위 특성에 관한 연구 (A Study on the Characteristics of Creep in Kaolinite Soil Subjected to Uplift Capacity)

  • 이준대;최기봉
    • 한국안전학회지
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    • 제14권2호
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    • pp.116-121
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    • 1999
  • When plate anchors are embedded in soft clay, they may undergo a deformation under the pressure of sustained load. The critical depth at which the transition from a shallow to a deep anchor takes place depends on the properties of soil. Laboratory model tests were performed for the short-term net ultimate uplift capacity of a circular anchors with respect to various embedment depths and moisture content in saturated kaolinite. The tests have been conducted with the anchor at two different moisture contents. Based on the model test results, empirical relationships between the net load, rate of strain, and time have been developed. In creep tests of kaolinite for load versus ultimate uplift capacity, the displacement of plate anchors rapidly increases during the primary stage but thereafter becomes constant over a period of time.

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Humidity Sensor Using an Air Capacitor

  • Choi, Jin Moon;Kim, Tae Wan
    • Transactions on Electrical and Electronic Materials
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    • 제14권4호
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    • pp.182-186
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    • 2013
  • We studied the possibility that an air capacitor can be used as a humidity sensor by measuring capacitance change. In order to investigate the possibility, the change of capacitance of an air capacitor due to moisture in air was first considered theoretically, and was then experimentally verified. The capacitance was measured by an LCR impedance meter with a 100-kHz and 1-V ac. The results revealed that the changes in the experimentally measured capacitances were greater than those in the theoretically calculated values. Based on this fact, we knew that an air capacitor could be used as part of a humidity sensing device. We expect the humidity sensor with an air capacitor has characteristics of fast response time, high reliability, and high durability compared with other conventional methods.

Automation of Solid-state Bioreactor for Oyster Mushroom Composting

  • Lee, Ho-Yong;Kim, Won-Rok;Min, Bong-Hee
    • Mycobiology
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    • 제30권4호
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    • pp.228-232
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    • 2002
  • This study focused on the production of high quality compost for the growth of aero-thermophilic fungi, which has a promoting effect on the growth rate and production of oyster mushrooms. The automated solid-state bioreactor system was designed on the basis of a Three-Phase-One system, which controls the serial steps of prewetting, pasteurization and fermentation processes. High numbers of thermophilic fungi and bacteria were recovered from the mushroom composts prepared by this solid-state bioreactor. The rates of composting process were depended on physical as well as chemical factors. Among these factors, the parameters of moisture content and temperature were found to be particularly important. In our automated system, constant levels of moisture content, temperature and ventilation via mixing were provided by a centralized control apparatus including PLC, water tank and water jacket systems. These features induced higher microbiological activity of aero-thermophiles.