• 제목/요약/키워드: cold water paddy field

검색결과 13건 처리시간 0.025초

관개수온과 벼의 냉수피해 (Irrigation water temperature and cold water damage of paddy)

  • 정상옥;오창준
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 1998년도 학술발표회 발표논문집
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    • pp.14-21
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    • 1998
  • In 1996, a cold-water damage occured in the paddy field at downstream of the Unmoon dam. To study the cause and the preventive measures of the cold-water damage a field study was performed during the growing season of 1997. Field measurements such as water temperatures at reservoir, irrigation canal and in the paddy field were made. As a result, there was no cold-water damage due to the right irrigation water management practice in 1997. The cold-water damage is passible to happen, however, and the preventive measures were provided.

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운문댐 하류 논지역에서의 냉수피해 조사연구 (A Study on Cold-water damage on paddy field at the Downstream of the Unmoon Dam)

  • 정상옥;오창준
    • Current Research on Agriculture and Life Sciences
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    • 제15권
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    • pp.39-46
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    • 1997
  • In 1996, a cold-water damage occured in the paddy field at the downstream of the Umoon dam. To study the cause and the preventive measures of the cold-water damage a field study was performed during the growing season of 1997. Field measurements such as water temperatures at reservoir, irrigation canal and in the paddy field were made. As a result, there was no cold-water damage due to the right irrigation water management practice in 1997. The cold-water damage is possible to happen, however, and the preventive measures were provided.

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벼의 냉수피해 감소를 위한 관개수온 조사와 대책수립 (Measurement of Irrigation Water Temperature and Preventive Measure against Cold Watter Damage to Paddy Rice)

  • 정상옥
    • 한국농공학회지
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    • 제41권1호
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    • pp.52-59
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    • 1999
  • Paddy rice is semi-tropical crop and requires warmirrigation water. If mean water temperature at the water source during the growing period is below 18$^{\circ}C$, sime kinds of water warming mechanism should be taken. In this study irrigation water temperature is measured and preventive measures to cold water damage on paddy rice are suggested. Field observations were performed at 100ha field area downtream of the Unmoon reservoir during the growing season of 1997. Land use, canal system, water temperature at irrigation canals. reservoir, and paddy fields were observed. In addition, growth and yield of the rice at selected plots were observed. Accordingly to the record, cold water damage occurred in this area due to the cold irrigation water supply in 1996. It did not occur because of the effective irrigation water management practice in 1997. However, several preventive measures such as pontoon intake system, using existing weir and construting a new warming pond, are suggested to prevent cold water damage in the future. If a new warming pond is construted to raise irrigation water temperature by 2 $^{\circ}C$, a pond area of 2.94 ha is required.

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Effects of Supplementary Composts on Microbial Communities and Rice Productivity in Cold Water Paddy Fields

  • Xie, Kaizhi;Xu, Peizhi;Yang, Shaohai;Lu, Yusheng;Jiang, Ruiping;Gu, Wenjie;Li, Wenying;Sun, Lili
    • Journal of Microbiology and Biotechnology
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    • 제25권5호
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    • pp.569-578
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    • 2015
  • Cold water paddy field soils are relatively unproductive, but can be ameliorated by supplementing with inorganic fertilizer from animal waste-based composts. The yield of two rice cultivars was significantly raised by providing either chicken manure or cow dung-based compost. The application of these composts raised the soil pH as well as both the total nitrogen and ammonium nitrogen content, which improved the soil's fertility and raised its nitrification potential. The composts had a measurable effect on the abundance of nitrogencycling-related soil microbes, as measured by estimating the copy number of various bacterial and archaeal genes using quantitative real-time PCR. The abundance of ammonia oxidizing archaea and bacteria was markedly encouraged by the application of chicken manure-based compost. Supplementation with the composts helped promote the availability of soil nitrogen in the cold water paddy field, thereby improving the soil's productivity and increasing the yield of the rice crop.

청산도 구들장논의 분포와 물리적 구조에 관한 연구 (Geographical Distribution and Physical Structure of Gudle-jang Paddy-field in Cheongsando)

  • 조영재;유학열;윤원근;최식인;이영옥
    • 농촌계획
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    • 제18권3호
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    • pp.103-110
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    • 2012
  • This study aims to find out the geographical distribution, the physical structure and characteristic of Gudle-jang Paddy-field in Cheongsando. On the basis of this study, the potential value and the assignment for the preservation of Gudle-jang Paddy-field were suggested. Gudle-jang Paddy-field is centrally distributed to Cheongsando and has various features as follows. First, it has the Ondol structure which is used Gudle-jang. Second, it has an irrigation canal which has functions of the tank and the prevention of cold-weather damage as well as the irrigation and drainage canal. The values of Gudle-jang Paddy-field are as follows; 1) It is the peculiar and inherent agricultural structure which is only found in Cheongsando. 2) It is the structure that the agricultural civil engineering and the agricultural water management technique of traditional methode are applied. 3) It has the worths of the traditional culture of Korea. 4) It is the important resource creating superb rural landscape of the region. In spite of these values of Gudle-jang Paddy-field, there were little efforts to preserve it. From now on, it is needed to form of sympathy about the value of Gudle-jang Paddy-field and to make efforts for preservation of it. Also the institutional and political strategy should be provided to preserve and manage Gudle-jang Paddy-field.

산간 계곡의 지하배수관 설치에 따른 벼 냉수피해 사례분석 (A Case Study on Cold Water Damage to Rice by Installation of Underground Drain Pipe at a Mountainous Valley)

  • 심교문;정명표;김용석;최인태
    • 한국농림기상학회지
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    • 제17권3호
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    • pp.270-274
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    • 2015
  • 산간지역의 계곡 물길의 매립과 지하배수관의 설치에 따른 인근 논에서 벼 냉수해에 대한 민원이 제기되어 벼 냉수해와 지하배수관 설치의 연관성 유무을 파악하기 위해서 현장조사 및 분석을 실시하였다. 결론적으로 지하배수관 설치로 인하여 계곡물의 온도가 지하배수관 설치 전보다 $0.5{\sim}4.5^{\circ}C$ 범위로 낮아진 것으로 분석되었고, 이 냉수를 농업용수로 관개한 하류쪽 논에서는 벼 냉수해가 발생할 가능성이 매우 높았을 것으로 판단되었다. 따라서, 적절한 수온상승 조치를 취하지 않으면 냉수해로 인하여 정상적인 수확이 불가능할 것으로 평가되었다.

벼 냉해발성 기작과 피해 경감대책 (Mechanisms of Cold Injury and Cultural Practices for Reducing Damage of Rice)

  • 이문희;박남규;박석홍
    • 한국작물학회지
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    • 제34권s02호
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    • pp.34-44
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    • 1989
  • 우리나라의 벼안전재배는 기상환경에 의해서 크게 좌우된다. 그러므로 기상재해를 경감시키기 위한 신품종의 육성 및 재배법 연구는 매우 중요하다. 그중에서도 벼의 냉해는 그동안 여러번에 걸쳐 심한 피해를 가져다 주어 그 중요성이 확인되어 많은 연구가 실시되었다. 본 논문에서는 이와 같은 냉해의 발생원인과 기작을 살펴보고 그 경감대책을 종합하여 보다 더 효율적인 연구와 실질적인 재배의 기초자료로 활용하고저 한다. 1. 우리나라 벼 냉해 상습지는 전국적으로 1,709개소에 약 15,522ha에 분포하고 있다. 2. 벼유묘기 냉해는 발아불량, 적고현상, 고사 및 뜸묘의 발생 등으로 나타난다. 3. 영양생장기의 냉해는 활착불량으로 분얼수가 감소하여 단위면적당 수수가 적고, 생육지연 및 유수형성 지연으로 출수가 지연된다. 4. 생식생장 초기의 냉해는 지경 및 영화의 퇴화, 발육정지가 되고, 감수분열기에는 화분발육의 조해로 불념이 증가되고 수장이 단축되며 출수지연으로 수량감소에 큰 영향을 준다. 5. 출수 및 등숙기 냉해는 개화, 출수 지연으로 수분, 수정이 불량하며 이삭목의 추출불량, 등숙불량 및 쌀의 미질이 불량하게 된다. 이상과 같은 냉해를 경감시키기 위한 기술시책으로는 6. 중산간지 및 산간고냉지에 적용되며, 내냉성이 높은 품종육성 7. 밭못리 육묘와 ABA, 후치왕, 다찌에스 등의 생장조정제를 이용한 건묘육성 8. 냉수답이나 냉해상습지에는 토양개량 및 육기작 시용으로 보비로 튼튼한 벼생육을 가져 온다. 9. 냉해시에는 깊게 물대기와 냉수관개시에는 우회수로, 비닐튜브 등을 이용한 물온도 높여 주기 등 합리적인 물관리가 필요하다. 10. 각 지역의 최고, 평균, 최저온도를 기본으로 한 안전작기를 책정하여 적기에 적품종을 재배하여야 한다.

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Improvement of Abiotic Stress Resilience for Stable Rice Production

  • Dongjin Shin;Hyunggon Mang;Jiyun Lee
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.13-13
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    • 2022
  • Recently, stable crop production is threatened by the effects of climate change. In particular, it is difficult to consistently maintain agricultural policies due to large price fluctuations depending on the difference in total domestic rice production from year to year. For stable rice production amid changes in the crop growing environment, development of varieties with improved disease resistance and abiotic stress stability is becoming more important. In here, drought and cold tolerant trait have been studied. First, for the development of drought tolerant varieties, we analyzed which agricultural traits are mainly affected by domestic drought conditions. As a result, it was observed that drought caused by the lack of water during transplanting season inhibits the development of the number of tiller and reduces the yield. 'Samgang' was selected as a useful genetic resource with strong drought tolerant and stable tiller number development even under drought conditions by phenotype screening. Three of drought tolerant QTLs were identified using doubled haploid (DH) population derived from a cross between Nacdong and Samgang, a drought sensitive and a tolerant, respectively. Among these QTLs, when qVDT2 and qVDTl1 were integrated, it was investigated that the tiller number development was relatively stable in the rainfed paddy field conditions. It is known that the high-yielding Tongil-type cultivars are severely affected by cold stress throughout the entire growth stage. In this study, we established conditions that can test the cold tolerance phenotype with alternate temperature to treat low temperatures in indoor growth conditions similar to those in field conditions at seedling stage. Three cold tolerant QTLs were explored using population derived from a cross between Hanareum2 (cold sensitive variety, Tongil-type) and Unkwang (cold tolerant variety, Japonica). Among these QTLs, qSCT12 showed strong cold tolerant phenotype, and when all of three QTLs were integrated, it was investigated that cold tolerant score was relatively similar to its donor parent, Unkwang, in our experimental conditions. We are performing that development of new variety with improved cold tolerant through the introduction of these QTLs.

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불량환경하(不良環境下)에서의 제초제(除草劑) 약해(藥害)와 경감기술(輕減技術) (Herbicidal Phytotoxicity under Adverse Environments and Countermeasures)

  • 권용웅;황형식;강병화
    • 한국잡초학회지
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    • 제13권4호
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    • pp.210-233
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    • 1993
  • The herbicide has become indispensable as much as nitrogen fertilizer in Korean agriculture from 1970 onwards. It is estimated that in 1991 more than 40 herbicides were registered for rice crop and treated to an area 1.41 times the rice acreage ; more than 30 herbicides were registered for field crops and treated to 89% of the crop area ; the treatment acreage of 3 non-selective foliar-applied herbicides reached 2,555 thousand hectares. During the last 25 years herbicides have benefited the Korean farmers substantially in labor, cost and time of farming. Any herbicide which causes crop injury in ordinary uses is not allowed to register in most country. Herbicides, however, can cause crop injury more or less when they are misused, abused or used under adverse environments. The herbicide use more than 100% of crop acreage means an increased probability of which herbicides are used wrong or under adverse situation. This is true as evidenced by that about 25% of farmers have experienced the herbicide caused crop injury more than once during last 10 years on authors' nationwide surveys in 1992 and 1993 ; one-half of the injury incidences were with crop yield loss greater than 10%. Crop injury caused by herbicide had not occurred to a serious extent in the 1960s when the herbicides fewer than 5 were used by farmers to the field less than 12% of total acreage. Farmers ascribed about 53% of the herbicidal injury incidences at their fields to their misuses such as overdose, careless or improper application, off-time application or wrong choice of the herbicide, etc. While 47% of the incidences were mainly due to adverse natural conditions. Such misuses can be reduced to a minimum through enhanced education/extension services for right uses and, although undesirable, increased farmers' experiences of phytotoxicity. The most difficult primary problem arises from lack of countermeasures for farmers to cope with various adverse environmental conditions. At present almost all the herbicides have"Do not use!" instructions on label to avoid crop injury under adverse environments. These "Do not use!" situations Include sandy, highly percolating, or infertile soils, cool water gushing paddy, poorly draining paddy, terraced paddy, too wet or dry soils, days of abnormally cool or high air temperature, etc. Meanwhile, the cultivated lands are under poor conditions : the average organic matter content ranges 2.5 to 2.8% in paddy soil and 2.0 to 2.6% in upland soil ; the canon exchange capacity ranges 8 to 12 m.e. ; approximately 43% of paddy and 56% of upland are of sandy to sandy gravel soil ; only 42% of paddy and 16% of upland fields are on flat land. The present situation would mean that about 40 to 50% of soil applied herbicides are used on the field where the label instructs "Do not use!". Yet no positive effort has been made for 25 years long by government or companies to develop countermeasures. It is a really sophisticated social problem. In the 1960s and 1970s a subside program to incoporate hillside red clayish soil into sandy paddy as well as campaign for increased application of compost to the field had been operating. Yet majority of the sandy soils remains sandy and the program and campaign had been stopped. With regard to this sandy soil problem the authors have developed a method of "split application of a herbicide onto sandy soil field". A model case study has been carried out with success and is introduced with key procedure in this paper. Climate is variable in its nature. Among the climatic components sudden fall or rise in temperature is hardly avoidable for a crop plant. Our spring air temperature fluctuates so much ; for example, the daily mean air temperature of Inchon city varied from 6.31 to $16.81^{\circ}C$ on April 20, early seeding time of crops, within${\times}$2Sd range of 30 year records. Seeding early in season means an increased liability to phytotoxicity, and this will be more evident in direct water-seeding of rice. About 20% of farmers depend on the cold underground-water pumped for rice irrigation. If the well is deep over 70m, the fresh water may be about $10^{\circ}C$ cold. The water should be warmed to about $20^{\circ}C$ before irrigation. This is not so practiced well by farmers. In addition to the forementioned adverse conditions there exist many other aspects to be amended. Among them the worst for liquid spray type herbicides is almost total lacking in proper knowledge of nozzle types and concern with even spray by the administrative, rural extension officers, company and farmers. Even not available in the market are the nozzles and sprayers appropriate for herbicides spray. Most people perceive all the pesticide sprayers same and concern much with the speed and easiness of spray, not with correct spray. There exist many points to be improved to minimize herbicidal phytotoxicity in Korea and many ways to achieve the goal. First of all it is suggested that 1) the present evaluation of a new herbicide at standard and double doses in registration trials is to be an evaluation for standard, double and triple doses to exploit the response slope in making decision for approval and recommendation of different dose for different situation on label, 2) the government is to recognize the facts and nature of the present problem to correct the present misperceptions and to develop an appropriate national program for improvement of soil conditions, spray equipment, extention manpower and services, 3) the researchers are to enhance researches on the countermeasures and 4) the herbicide makers/dealers are to correct their misperceptions and policy for sales, to develop database on the detailed use conditions of consumer one by one and to serve the consumers with direct counsel based on the database.

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수온차이(水溫差異)가 수도생육(水稻生育)에 미치는 영향(影響) (Effects of the Water Temperature Differences on Rice Growth in a Paddy Field)

  • 김이열;조인상;김흥배;이용환;조병옥
    • 한국토양비료학회지
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    • 제18권4호
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    • pp.359-365
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    • 1985
  • 수온차이(水溫差異)가 수도(水稻) 생장특성(生長特性) 변화(變化)에 미치는 영향(影響)을 보기 위하여 내랭수성(耐冷水性)이 각각(各各) 다른 4개 품종(品種)(관악(冠岳)벼 농백(農白)벼 풍산벼 남풍벼)을 규암(規岩) 미사질양토(微砂質壤土)에 공시(供試)하여 수온별(水溫別)로 조사(調査)하였다. 1. 수온(水溫)에 따라 품종(品種)에 관계(關係)없이 민감(敏感)하게 변화(變化)되는 생육특성(生育特性)은 간장(稈長), 추출도(抽出度), 제(第) 3 절간직경(節稈直徑), 출수일수(出穗日數), 임실률(稔實率), 등숙율(登熟率), 수당립수, 수량등(收量等) 이었고 수장(穗長), 지엽장(止葉長), 이삭목 굵기, 수수등(穗數等)은 품종(品種)에 따라 변화(變化) 양상(樣相)이 다르나 수온(水溫)과 관계(關係)가 큰 것으로 나타났다. 2. 제(第) 2, 제(第) 3 절간장(節稈長)은 수온변화(水溫變化)에 둔감(鈍感)하나 제(第) 1 절간장(節稈長)의 신장(伸長)과 제(第) 4 절간(節稈)의 출현(出現)은 수온(水溫)에 민감(敏感)하여 간장(稈長) 결정(決定)의 주요인(主要因)으로 생각되었다. 3. 부위별건물중(部位別乾物重), 총건물중(總乾物重) 비율(比率)은 수온(水溫)에 민감(敏感)하였으며 수온(水溫)이 상승(上昇)하면 종실건물중(種實乾物重) 비율(比率)은 증가(增加)되고 경엽(莖葉)과 뿌리의 점유율(占有率)은 현저(顯著)히 감소(減少)되었다. 4. 체내(體內) 엽록소농도(葉綠素濃度)는 수온(水溫) $20^{\circ}C$에서 가장 높았고 수온증가(水溫增加)에 따라 점차(漸次) 감소(減少)되었다. 5. 수온별(水溫別) 정조수량(正租收量)은 $17^{\circ}C$에서는 개무상태(皆無狀態)이었고 품종별(品種別) 단위수온(單位水溫) 증가당 수량증대폭(水量增大幅)은 풍산>관악(冠岳)>농백(農白)>남풍 순(順)이었다. 6. 평균수온(平均水溫) $21^{\circ}C$는 수량(收量)의 적기점(赤起點)이 되었고, 다수계(多收系) 품종(品種)의 적정수온(適正水溫) 조건(條件)은 일반계(一般系)보다 높았다.

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