• 제목/요약/키워드: moisture content for safe storage

검색결과 18건 처리시간 0.029초

농산물(農産物) 건조(乾燥)를 위(爲)한 태양열(太陽熱) 집열기(集熱機)의 제작(製作) 및 이용(利用)에 관(關)한 연구(硏究) (Design and Utilization of Solar Collector for Drying Agricultural Products)

  • 고학균;금동혁
    • Journal of Biosystems Engineering
    • /
    • 제6권2호
    • /
    • pp.48-57
    • /
    • 1982
  • In order to improve the quality of traditionally sun-dried red peppers and to increase the efficiency of drying performance, three types of solar dryers were designed and built, and drying performance of the solar dryers was compared to traditional sun drying. Results obtained from the experiment are summarized as fallows: 1. The air temperature and relative humidity profiles over a 8-hour period measured at the specified locations in the drying chamber of solar dryers appeared to have large variation in each dryer. The rate of drying increased with the temperature rise in the drying chamber of the solar dryer. 2. In general. drying with solar dryers proceeded faster than traditional sun drying. With A'-type of solar dryer developed in the second experiment it was possible to dry red peppers in seven days from an initial moisture content of 80% to safe storage conditions. The drying time with the A'-type solar drier was 50% shorter compared to traditional sun drying. 3. Red peppers appeared to have an increasing or constant-rate drying period until the weight of the product was reduced to about one half the initial weight, followed by a falling-rate drying period. When the dried red peppers were exposed to the atmospere during the night, the moisture content increased as much as 6%, which is much higher than for the grains. 4. It was suggested from the experiment that either a heat storage system or a supplemental heating system in the solar dryer was desirable for more efficient drying operation. 5. It was shown that the solar dryer developed in this study may be suitable for drying other vegetables and fishes, and also offered additional advantages of saving in drying time, maintaining sanitation and minimizing contamination by dust, insects and unfavorable weather condition.

  • PDF

씻지 않은 쌀의 가공 공정 개발 (I) - 질량수지 분석 - (Development of a Process for Clean-Washed Rice Processing (I) - Mass Balance Analysis -)

  • 장동일;한우석;김동철;이상효
    • Journal of Biosystems Engineering
    • /
    • 제24권4호
    • /
    • pp.317-324
    • /
    • 1999
  • This study was conducted to decide several design criterion for clean-washed rice processing system development. A Computer simulation was used to predict and analyze the mass balances and moisture changes of the process of clean-washed rice processing system. The following results were obtained from this study. 1. In order to attain the processing capacity of 1,000kg/h of the clean-washed rice processing system, that of the system was designed as 1,400kg/h which was based on the safety factor of 40% and handling capability of mass variations occurred during processing. 2. It was analyzed that the proper time required for aqueous cleaning process should be within one minute. 2. It was analyzed that the proper time required for aqueous cleaning process should be within one minute. 3. The final moisture content of clean-washed rice was controlled being 15%(w.b.) for the sake of safe storage. 4. It was proven that the optimum drying time was three minutes for the clean-washed rice dried by a rotary dryer.

  • PDF

피속 잡초 종자의 등온흡습곡선 특성 (Moisture Sorption Isotherms of Four Echinochloa Species Seeds)

  • 이용호;변지영;나채선;김태완;김정규;홍선희
    • Weed & Turfgrass Science
    • /
    • 제4권2호
    • /
    • pp.111-117
    • /
    • 2015
  • The equilibrium moisture contents (EMC) in seeds of four Echinochloa (E. crus-galli var. crus-galli, E. crus-galli var, echinata, E. crus-galli var. praticola, E. esculenta) were measured at $20^{\circ}C$ with equilibration over a series of lithium chloride solutions with relative humidities ranging from 0.11 to 0.8 to determine sorption isotherms and safe storage relative humidity. Standard seed sorption isotherm models i.e. modified Henderson, modified Chung-Pfost, modified Halsey, modified Oswin and Guggenheim-Anderson-deBoer (GAB) equations were adopted to evaluate the goodness of fit to sorption isotherms. This study indicated that EMC of seeds was significantly different in four Echinochloa species at various relative humidity. The modified Oswin equations for E. crus-galli var. crou-galli, E. crus-galli var, echinata, E. esculenta and GAB equation for E. crus-galli var. praticola were adequate models for the EMC data. Seeds of four Echinochloa species have monolayer moisture contents when stored at RH < 0.1. These results show that seed moisture isotherm model should be selected according to genetic variation.

태양에너지를 이용한 곡물건조시스템의 시뮬레이션에 관한 연구 (Simulation of Drying Grain with Solar-Heated Air)

  • 금동혁;김용운
    • Journal of Biosystems Engineering
    • /
    • 제4권2호
    • /
    • pp.65-83
    • /
    • 1979
  • Low-temperature drying systems have been extensively used for drying cereal grain such as shelled corn and wheat. Since the 1973 energy crisis, many researches have been conducted to apply solar energy as supplemental heat to natural air drying systems. However, little research on rough rice drying has been done in this area, especially very little in Korea. In designing a solar drying system, quality loss, airflow requirements, temperature rise of drying air, fan power and energy requirements should be throughly studied. The factors affecting solar drying systems are airflow rate, initial moisture content, the amount of heat added to drying air, fan operation method and the weather conditions. The major objectives of this study were to analyze the effects of the performance factors and determine design parameters such as airflow requirements, optimum bed depth, optimum temperature rise of drying air, fan operation method and collector size. Three hourly observations based on the 4-year weather data in Chuncheon area were used to simulate rough rice drying. The results can be summarized as follows: 1. The results of the statistical analysis indicated that the experimental and predicted values of the temperature rise of the air passing through the collector agreed well. 2. Equilibrium moisture content was affected a little by airflow rate, but affected mainly by the amount of heat added, to drying air. Equilibrium moisture content ranged from 12.2 to 13.2 percent wet basis for the continuous fan operation, from 10.4 to 11.7 percent wet basis for the intermittent fan operation respectively, in range of 1. 6 to 5. 9 degrees Centigrade average temperature rise of drying air. 3. Average moisture content when top layer was dried to 15 percent wet basis ranged from 13.1 to 13.9 percent wet basis for the continuous fan operation, from 11.9 to 13.4 percent wet basis for the intermittent fan operation respectively, in the range of 1.6 to 5.9 degrees Centigrade average temperature rise of drying air and 18 to 24 percent wet basis initial moisture content. The results indicated that grain was overdried with the intermittent fan operation in any range of temperature rise of drying air. Therefore, the continuous fan operation is usually more effective than the intermittent fan operation considering the overdrying. 4. For the continuous fan operation, the average temperature rise of drying air may be limited to 2.2 to 3. 3 degrees Centigrade considering safe storage moisture level of 13.5 to 14 perceut wet basis. 5. Required drying time decrease ranged from 40 to 50 percent each time the airflow rate was doubled and from 3.9 to 4.3 percent approximately for each one degrees Centigrade in average temperature rise of drying air regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on required drying time. 6. Required drying time increase ranged from 18 to 30 percent approximately for each 2 percent increase in initial moisture content regardless of the fan operation methods, in the range of 18 to 24 percent moisture. 7. The intermittent fan operation showed about 36 to 42 percent decrease in required drying time as compared with the continuous fan operation. 8. Drymatter loss decrease ranged from 34 to 46 percent each time the airflow rate was doubled and from 2 to 3 percent approximately for each one degrees Centigrade in average temperature rise of drying air, regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on drymatter loss. 9. Drymatter loss increase ranged from 50 to 78 percent approximately for each 2 percent increase in initial moisture content, in the range of 18 to 24 percent moisture. 10. The intermittent fan operation: showed about 40 to 50 percent increase in drymatter loss as compared with the continuous fan operation and the increasing rate was higher at high level of initial moisture and average temperature rise. 11. Year-to-year weather conditions had a little effect on required drying time and drymatter loss. 12. The equations for estimating time required to dry top layer to 16 and 1536 wet basis and drymatter loss were derived as functions of the performance factors. by the least square method. 13. Minimum airflow rates based on 0.5 percent drymatter loss were estimated. Minimum airflow rates for the intermittent fan operation were approximately 1.5 to 1.8 times as much as compared with the continuous fan operation, but a few differences among year-to-year. 14. Required fan horsepower and energy for the intermittent fan operation were 3. 7 and 1. 5 times respectively as much as compared with the continuous fan operation. 15. The continuous fan operation may be more effective than the intermittent fan operation considering overdrying, fan horsepower requirements, and energy use. 16. A method for estimating the required collection area of flat-plate solar collector using average temperature rise and airflow rate was presented.

  • PDF

태양에너지를 이용한 곡물건조시스템의 시뮬레이션에 관한 연구 (Simulation of Drying Grain with Solar-Heated Air)

  • 금동혁
    • Journal of Biosystems Engineering
    • /
    • 제4권2호
    • /
    • pp.64-64
    • /
    • 1979
  • Low-temperature drying systems have been extensively used for drying cereal grain such as shelled corn and wheat. Since the 1973 energy crisis, many researches have been conducted to apply solar energy as supplemental heat to natural air drying systems. However, little research on rough rice drying has been done in this area, especially very little in Korea. In designing a solar drying system, quality loss, airflow requirements, temperature rise of drying air, fan power and energy requirements should be throughly studied. The factors affecting solar drying systems are airflow rate, initial moisture content, the amount of heat added to drying air, fan operation method and the weather conditions. The major objectives of this study were to analyze the effects of the performance factors and determine design parameters such as airflow requirements, optimum bed depth, optimum temperature rise of drying air, fan operation method and collector size. Three hourly observations based on the 4-year weather data in Chuncheon area were used to simulate rough rice drying. The results can be summarized as follows: 1. The results of the statistical analysis indicated that the experimental and predicted values of the temperature rise of the air passing through the collector agreed well.2. Equilibrium moisture content was affected a little by airflow rate, but affected mainly by the amount of heat added, to drying air. Equilibrium moisture content ranged from 12.2 to 13.2 percent wet basis for the continuous fan operation, from 10.4 to 11.7 percent wet basis for the intermittent fan operation respectively, in range of 1. 6 to 5. 9 degrees Centigrade average temperature rise of drying air.3. Average moisture content when top layer was dried to 15 percent wet basis ranged from 13.1 to 13.9 percent wet basis for the continuous fan operation, from 11.9 to 13.4 percent wet basis for the intermittent fan operation respectively, in the range of 1.6 to 5.9 degrees Centigrade average temperature rise of drying air and 18 to 24 percent wet basis initial moisture content. The results indicated that grain was overdried with the intermittent fan operation in any range of temperature rise of drying air. Therefore, the continuous fan operation is usually more effective than the intermittent fan operation considering the overdrying.4. For the continuous fan operation, the average temperature rise of drying air may be limited to 2.2 to 3. 3 degrees Centigrade considering safe storage moisture level of 13.5 to 14 perceut wet basis.5. Required drying time decrease ranged from 40 to 50 percent each time the airflow rate was doubled and from 3.9 to 4.3 percent approximately for each one degrees Centigrade in average temperature rise of drying air regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on required drying time.6. Required drying time increase ranged from 18 to 30 percent approximately for each 2 percent increase in initial moisture content regardless of the fan operation methods, in the range of 18 to 24 percent moisture.7. The intermittent fan operation showed about 36 to 42 percent decrease in required drying time as compared with the continuous fan operation.8. Drymatter loss decrease ranged from 34 to 46 percent each time the airflow rate was doubled and from 2 to 3 percent approximately for each one degrees Centigrade in average temperature rise of drying air, regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on drymatter loss. 9. Drymatter loss increase ranged from 50 to 78 percent approximately for each 2 percent increase in initial moisture content, in the range of 18 to 24 percent moisture. 10. The intermittent fan operation: showed about 40 to 50 percent increase in drymatter loss as compared with the continuous fan operation and the increasing rate was higher at high level of initial moisture and average temperature rise.11. Year-to-year weather conditions had a little effect on required drying time and drymatter loss.12. The equations for estimating time required to dry top layer to 16 and 1536 wet basis and drymatter loss were derived as functions of the performance factors. by the least square method.13. Minimum airflow rates based on 0.5 percent drymatter loss were estimated.Minimum airflow rates for the intermittent fan operation were approximately 1.5 to 1.8 times as much as compared with the continuous fan operation, but a few differences among year-to-year.14. Required fan horsepower and energy for the intermittent fan operation were3. 7 and 1. 5 times respectively as much as compared with the continuous fan operation.15. The continuous fan operation may be more effective than the intermittent fan operation considering overdrying, fan horsepower requirements, and energy use.16. A method for estimating the required collection area of flat-plate solar collector using average temperature rise and airflow rate was presented.

한국형 방사성 폐기물 처분장을 위한 환기시스뎀 전략 (Ventilation System Strategy for a Prospective Korean Radioactive Waste Repository)

  • 김진;권상기
    • 방사성폐기물학회지
    • /
    • 제3권2호
    • /
    • pp.135-148
    • /
    • 2005
  • 방사성 폐기물의 지층 처분장 건설 및 운영을 위한 개념 선정 단계에서는 폐기물 운반 및 거치뿐 아니라, 처분장의 건설/운영/폐쇄 기간 동안 지하 처분장의 작업 환경 및 위생, 안전, 그리고 처분장내의 수분 제거와 같은 향후 처분장의 환경을 위해 처분장 환기시스템에 대한 고려가 향후 처분장의 환경을 위해 반드시 필요하다. 본 논문은 동굴처분 방식의 중-저준위 처분장 및 지하 심부에 위치하게 될 고준위 처분장에 대한 환기시스템 개념설계 기준 및 요구사항에 대한 내용이다. 방사성폐기물 처분장의 환기 시스템에서 가장 주된 기본 설계 개념은 처분장 건설과 폐기물저장을 위한 작업활동을 위해 각각 독립적이고 분리된 환기시스템을 적용하여야 한다는 것이다. 본 논문에서는 방사성폐기물 처분장의 환기시스템의 설계과정에 대해 기술하고 환기회로 모델링 방법, 자연 환기, 환기 모니터링 시스템과 실시간 환기 시뮬레이션, 화재 시뮬레이션 및 비상 방재 시스템에 관한 사항도 논의하였다

  • PDF

상온통풍에 의한 벼의 In-Bin 건조 : 건조시간, 에너지 소요량 및 품질에 미치는 건조조건의 영향 (In-Bin Drying of Paddy with Ambient Air: Influence of Drying Parameters on Drying Time, Energy Requirements and Quality)

  • 최홍식;W. 뮬바우어;임종환;신명곤
    • 한국식품과학회지
    • /
    • 제17권1호
    • /
    • pp.25-32
    • /
    • 1985
  • 상온통풍에 의한 벼의 in-bin 건조에 있어서 건조시간, 에너지 소요량, 품질에 미치는 몇가지 건조조건(기후, 초기 수분함량, 벼의 수량 및 풍량)의 영향을 검토하였다. 철제 grain bin(지름 : 3.0m, 높이 : 5.0m) 네 개를 이용하여, 1981년 및 1982년에 각각 수확한 물벼를 그해 수확기에 건조하였을 때, 벼의 수분함유량$(19.2{\sim}25.5%\;W.b.)$, bin내에서의 벼의 높이$(1.1{\sim}3.5m)$ 그리고 풍량$(3.0{\sim}6.9m^3\;air/m^3\;paddy/min)$에 따라 건조에 소요되는 시일은 $5{\sim}17$일이었다. 이와같은 조건의 범위에서는 우리나타 벼수확기의 가을 기후는 벼의 in-bin 상온통풍 건조에 알맞았으며, 최종수분 함량, 도정수율, 쇄미율, 발아율, 지방산가 등의 품질에서도 아무런 문제도 없었으며, 종래의 고온건조방법과 비교했을 때 에너지 소요량과 에너지 비용도 대단히 낮았다.

  • PDF

지치 추출물 첨가에 의한 강정의 저장성 연장 효과 (Evaluation of the Storage Characteristics of Kangjung Added with Gromwell Extracts)

  • 김진숙;김태영;김상범
    • 한국식품영양과학회지
    • /
    • 제35권6호
    • /
    • pp.791-800
    • /
    • 2006
  • 야생 및 재배지치의 식품활용을 위해 지치추출물을 0%, 0.25%, 0.5%로 첨가한 강정을 제조하였다. 지치추출물 첨가강정을 $60^{\circ}C$에 저장하면서 조사한 과산화물가를 보면 저장 12시간에 대조군이, 저장 16시간에 재배지치 추출물 0.25% 첨가군(CG2S)이, 저장 20시간에 재배지치 추출물 0.5% 첨가군(CG5O) 및 야생지치 추출물 0.25% 첨가군(WG2S)이, 저장 24시간에 야생지치 추출물 0.5% 첨가군(WG5O)이 강정의 저장유통 규격인 40 meq/kg을 넘어서기 시작하였다. 이로서 대조군과는 달리 야생 및 재배지치 추출물 첨가군은 지방산화를 억제하는 것으로 생각되었다. 강정의 저장에 따른 지방산 조성변화는 대조군이 야생 및 재배지치 추출물 첨가군 보다는 linoleic과 linolenic acid의 변화가 컸지만 그 변화율은 $2{\sim}4%$이내였다. 전자코에 의한 저장시료의 냄새변화는 대조군이 가장 높은 값을 나타내었다. 저장 12시간과 24시간 사이의 품질요인은 야생지치 추출물 0.25% 첨가군(WG25)>야생지치 추출물 0.5% 첨가군(WG50)>재배지치 추출물 0.5% 첨가군(CG50)>재배지치 추출물 0.25% 첨가군(CG25) 순으로 적어지는 경향이었다. 저장에 따른 색도변화에 있어 지치추출물 첨가군(CG25, CG50, WG25, WG50)은 L값과 a값의 변화가 미미한 반면에 대조군은 지치추출물로부터 이행되는 항산화성 물질이 없는 관계로 갈변이 많이 일어나 L값이 높은 경향이었다. 따라서 유탕처리 식품인 강정은 자동 및 고온 산화억제 대하여 야생 및 재배지치 추출물 첨가 시 효과적이었고, 야생지치가 재배지치보다는 그리고 지치추출물 0.25%보다는 추출물 0.5% 첨가 시 더 효과적이었다. 이상으로부터 지치를 유탕처리 및 유지첨가 식품에 사용될 경우, 지방산화에 안정적으로 작용할 뿐만 아니라 기호 측면에서도 양호하였으므로 적극적인 식품활용이 기대된다.