• 제목/요약/키워드: Sterilizing rate

검색결과 32건 처리시간 0.016초

배수 설계를 위한 벼의 관수심 및 관수피해율에 관한 연구 (Study on the Rice Yield Reduction and Over head Flooding Depth for Design of Drainage System)

  • 김천환;김시원
    • 한국농공학회지
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    • 제24권4호
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    • pp.69-79
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    • 1982
  • The objective of this study is to contribute to drainage planning in the most realistic and economical way by establishing the relationship between rice yield reduction and overhead flooding by muddy water of each growth stage of paddy, which is the most important factor in determining optimum drainage facilities. This study was based on the data mainly from the experimental reports of the Office of Rural Development of Korea, Reduction Rate Estimation for Summer Crops, published by Ministry of Agriculture and Forestry of Japan and other related research documenta- tion. The results of this study are summarized as follows 1. Damages by overhead flooding are highest in heading stage and have the tendency of decrease in the order of booting stage, panicle formation stage, tillering stage, and stage just after transplanting. Damages by overhead flooding of each growing stage are as follows: a) It is considered that overhead flooding just after transplanting gives a little influence on plant growth and yield because the paddy has sufficient growth period from floo ding to harvest time. b) Jt is analyzed that according to the equation y=11 12x 0.908 which is derived from this study, damages by overhead flooding during tillering stage for 1, 2, 3 successive days are 11.1 %, 20.9%, and 30.2% respectively. c) Damages by overhead flooding after panicle formation stage are very serious because recovering period is very short after damage and ineffective tillering is much. Acc- ording to the equation y=9. 58x+10. Ol derived from this study, damages by overhead flooding fal 1,2,3,5 successive days are 19.6%, 29.2%, 38.8%, 57.9% respectively. d) Booting stage is the very important period in which young panicle has grown up almost completely and the number of glumous flower is fixed since reduction division takes place in the microspore mother cell and enbryo mother cell. According to the equation y=39. 66x 0.558 derived from this study, damages by overhead floodingfor 0.5, 1, 3, 5 successive days are 26.9%, 39.7%, 72. 2% and 97.4%, respectively. Therefore, damages by overhead flooding is very serious during the hooting stage. e) When ear of paddy emerges, flowering begins on that day or the next day; when paddy flowers, fertilization will be completed 2-3 hours after flowering. Therefore overhead flooding during heading stage impedes flowering and increases sterilizing percentage. From this reason damages of heading stage are larger than that of booting stage. According to the equation y-41 94x 0.589 derived from this study, damages by overhead flooding for 0.5, 1, 3, 5, successive days are 27.9%, 63.1 %, 80.1%, and 100% 2. Considering that temperature of booting stage is higher than that of beading stage and plant height of booting stage is ten centimeters shorter than that of heading stage, booting stage should be taken as a critical period for drainage planning because possi- bility of damage occurrence in booting stage is larger than that of heading stage. There-fore, it is considered that booting stage should be taken as critical period of paddy growth for drainage planning. 3. Overhead flooding depth is different depending on the stage of growth. In case, booting stage is adopted as design stage of growth for drainage planning, it is conside red that the allowable flooding depth for new varieties and general varieties are 70cm and 80cm respectively. 4. Reduction Rate Estimation by Wind and Flood for Rice Planting of the present design criteria for drainage planning shows damage by overhead flooding for 1 to 2, 3 to 4, 5 to 7 consecutive days; damages by overhead flooding varies considerably over several hours and experimental condition of soil, variety of paddy, and climate differs with real situation. From these reasons, damage by flooding could not be estimated properly in the past. This study has derived the equation which shows damages by flooding of each growth stage on an hourly basis. Therefore, it has become possible to compute the exact damages in case duration of overhead flooding is known.

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N-13 암모니아 주사액 제조 시 멸균필터의 흡착율 차이에 관한 비교 평가 (Studies on sterile filters in the preparation of N-13 ammonia injection)

  • 오창범;김시활;차민정;신진;지용기;최성욱
    • 핵의학기술
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    • 제23권1호
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    • pp.64-68
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    • 2019
  • 기존에 Millex GS 멸균 필터를 사용하여 방사성 의약품 N-13 암모니아 주사액 제조 시 많은 양의 방사성 의약품이 멸균 필터에 흡착되어 있었다. 이에 Satorious의 Minisart 멸균 필터를 사용하여 흡착률의 차이를 확인하고 합성 수율을 증가시키고자 하였다. 실험 대상은 Millex GS 필터와 Satorious Minisart 필터를 대상으로 하였으며 제조된 N-13 암모니아를 각각의 멸균 필터에 통과시킨 후 선량계를 이용하여 흡착률을 구하였다(n=10). 그리고 품질 관리 시험을 시행하여 본원 기준에 적합한지 확인하였다. 실험 결과 Millex GS와 Sartorious Minisart 필터에 각각 $71.0{\pm}17.6%$$19.1{\pm}3.2%$ 흡착되었다. 필터를 제거한 product vial에는 Millex GS와 Sartorious 각각 $29.0{\pm}17.6%$$80.9{\pm}3.2%$ 여과되었다. 여과된 암모니아 주사액의 양은 GS 필터보다 Minisart 필터를 사용할 때 약 2.8배 더 많이 획득할 수 있었다. 각 멸균 필터를 통과한 N-13 암모니아 주사액의 방사화학적 이물, 화학적 이물, 이 핵종, pH, 엔도톡신, 무균 시험 등 품질 관리 시험 결과 본원 기준에 적합하였다. Millex GS 필터의 얇은 막은 mixed cellulous easter(MCE)로써 acetic acid, sulfic acid, anhydride에 추가로 Nitrocellulose가 약 80%의 비중을 차지하고 있는 필터이다. 때문에 Nitrocellulose가 포함되지 않은 CA계열인 Sartorious Minisart 필터보다 여과할 수 있는 성능은 Millex GS가 우수하나, 품질시험의 평가상 Satorious Minisart 필터를 사용하여도 문제가 없을 것이다. 따라서 N-13 암모니아 주사액 제조 시, Satorious Minisart 필터를 사용함으로써 필터 흡착으로 인한 손실을 최소화하고, 비용도 절감 할 수 있으며, 보다 안정적으로 N-13 암모니아 주사액을 제조 할 수 있을 것으로 생각한다.