• Title/Summary/Keyword: High Temperature Injury

검색결과 101건 처리시간 0.031초

벼 관수에 따른 생육단계별 피해 및 고위절 분얼 이삭에 의한 수량보상력 (Flooding Injury of Rice Plant according to Growing Stages and Yield Compensating Ability by Uppernode Tillering)

  • 강양순;양의석;이성환
    • 한국작물학회지
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    • 제33권2호
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    • pp.195-200
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    • 1988
  • 벼를 보통기에 동일하게 이앙하여 추앙후 20일, 유전형성기, 감수분열기 및 출수기의 생육시기별로 포장상태에서 3일간씩 관수처리한 경우와 품종, 이앙기 및 재배조건이 다양한 농가포장에서 태풍 'Thelma 호'('87년 7월 16~18일)에 의해 3일간 관수된 경우에 생육단계별 피해상태와 피해주의 고립분얼이삭의 발생에 의한 수량 보상력을 검토한 결과는 다음과 같다. 1. 보통기 이앙된 벼의 생육시기별 관수처리에서는 생육이 진전될수록 관수된 수온이 높아져 피해가 컸으나 고온기에 여러 생육단계를 갖는 농가포장이 일시에 관수되면 어린 생육단계일수록 피해가 컸다. 2. 생식생장 관수 피해수의 수량보상은 고립절분얼이삭에 의존하였고 고립절분얼이삭이 9월 15일 출수되어 등숙적산온도가 69$0^{\circ}C$, 등숙일조시간이 210시간이 확보되었을 때 쌀 230kg/10a을 보상하였다.0a을 보상하였다.

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중환자실 환자의 욕창 관련 경계압력 예측요인 (Factors Predicting the Interface Pressure Related to Pressure Injury in Intensive Care Unit Patients)

  • 신지선;김수진;이지현;유미
    • 대한간호학회지
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    • 제47권6호
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    • pp.794-805
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    • 2017
  • Purpose: Interface pressure is a factor that contributes to the occurrence of pressure injuries. This study aimed to investigate interface pressure at common sites of pressure injury (occipital, gluteal and peritrochanteric areas), to explore the relationships among risk factors, skin condition and interface pressure, and to identify risk factors influencing interface pressure. Methods: A total of 100 patients admitted to the intensive care unit were enrolled at a tertiary teaching hospital in Korea. Interface pressure was recorded by a scanning aid device (PalmQ). Patient data regarding age, pulmonary disease, Braden Scale score, body mass index, serum albumin, hemoglobin, mean blood pressure, body temperature, and oxygen saturation were included as risk factors. Data collected from July to September 2016 were analyzed using binary logistic regression. Results: The mean interface pressure of the occipital, gluteal, and right and left peritrochanteric areas were 37.96 (${\pm}14.90$), 41.15 (${\pm}16.04$), 53.44(${\pm}24.67$), and 54.33 (${\pm}22.80$) mmHg, respectively. Predictive factors for pressure injuries in the occipital area were age ${\geq}70$ years (OR 3.45, 95% confidence interval [CI]: 1.19~9.98), serum albumin deficit (OR 2.88, 95% CI: 1.00~8.26) and body temperature ${\geq}36.5^{\circ}C$ (OR 3.12, 95% CI: 1.17~8.17); age ${\geq}70$ years (OR 2.81, 95% CI: 1.10~7.15) in the right peritrochanteric area; and body temperature ${\geq}36.5^{\circ}C$ (OR 2.86, 95% CI: 1.17~6.98) in the left peritrochanteric area. Conclusion: Our findings suggest that old age, hypoalbuminemia, and high body temperature may be contributory factors to increasing interface pressure; therefore, careful assessment and nursing care of these patients are needed to prevent pressure injury. Further studies are needed to establish cutoff values of interface pressure for patients with pressure ulcers.

수도의 염해와 대책 (Salt Injury and Overcoming Strategy of Rice)

  • 이승택
    • 한국작물학회지
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    • 제34권s02호
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    • pp.66-80
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    • 1989
  • Salt injury in rice is caused mainly by the salinity in soil and in the irrigated water, and occasionaly by salinity delivered through typhoon from the sea. The salt concentration of rice plants increased with higher salinity in the soil of the rice growing. The climatic conditions, high temperature and solar radiation and dry conditions promote the salt absorption of rice plant in saline soil. The higher salt accumulation in the rice plant generally reduces the root activity and inhibits the absorption of minerals of rice plant, resulting the reduction of photosynthesis. The salt damages of rice plant, however, are different from different growth stage of rice plants as follows: 1. Germination of rice seed was slightly delayed up to 1.0% of salt concentration and remarkably at 1. 5%, but none of rice seeds were germinated at 2.5%. This may be due to the delayed water uptake of rice seeds and the inhibition of enzyme activity, 2. It was enable to establish rice seedlings at seed bed by 0.2% of salt concentration with some reduction of leaf elongation. The increasing of 0.3% salt concentration caused to the seedling death with varietal differences, but most of seedlings were death at 0.4% with no varietal differences. 3. Seedlings grown at the nursery over 0.1% salt, gradually reduced in rooting activity after transplanting according to increasing the salt concentration from 0.1% up to 0.3% of paddy field. However, the seedlings grown in normal seed bed showed no difference in rooting between varieties up to 0.1% but significantly different at 0.3% between varieties, but greatly reduced at 0.5% and died at last in paddy after transplanting. 4. At panicle initiation stage, rice plant delayed in heading by salt damage, at meiotic stage reduced in grains and its filling rate due to inhibition of glume and pollen developing, and salt damage at heading stage and till 3 weeks after heading caused to reduction of fertilization and ripening rate. In viewpoint of agricultural policy the overcoming strategy for salt injury is to secure sufficient water source. Irrigation and drainage systems as well as underground drainage is necessary to desalinize more effectively. This must be the most effective and positive way except cost. By cultural practice, growing the salt tolerant variety with high population could increase yield. The intermittent irrigation and fresh water flooding especially at transplanting and from panicle initiation to heading stage, the most sensitive to salt injury, is important to reduce the salt content in saline soil. During the off-cropping season, plough and rotavation with flooding followed by drainage, or submersion and drainage with groove could improve the desalinization. Increase of nitrogen fertilizer with more split application, and soil improvement by lime, organic matter and forign soil addition, could increase the rice yield. Shift of trans-planting is one of the way to escape from the salt injury.

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광중합 시 수종의 심미적 수복재와 이장재의 사용에 따른 치수내 온도변화 (TEMPERATURE CHANGES IN THE PULP ACCORDING TO VARIOUS ESTHETIC RESTORATIVE MATERIALS AND BASES DURING CURING PROCEDURE)

  • 장혜란;이형일;이광원;이세준
    • Restorative Dentistry and Endodontics
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    • 제26권5호
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    • pp.393-398
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    • 2001
  • Polymerization of light-activated restorations results in temperature increase caused by both the exothermic reaction process and the energy absorbed during irradiation. Within composite resin, temperature increases up to 2$0^{\circ}C$ or more during polymerization. But, insulation of hard tissue of tooth lowers this temperature increase in pulp. However, many clinicians are concerned about intrapulpal temperature injury. The purpose of this study was to evaluate temperature changes in the pulp according to various restorative materials and bases during curing procedure. Caries and restoration-free mandibular molars extracted within three months were prepared Class I cavity of 3$\times$6mm with high speed handpiece fissure bur. 1mm depth of dentin was evaluated with micrometer in mesial and distal pulp horns. Pulp chambers were filled with 37.0$\pm$0.1$^{\circ}C$ water to CEJ. Chromium-alumina thermocouple was placed in pulp horn below restorative materials for evaluating of temperature changes. This thermocouple was connected to temperature-recording device(Multiplication analyzer MX, 6.000, JAPAN). Temperature changes was evaluated from initial 37.$0^{\circ}C$ after temperature changes to 37.$0^{\circ}C$. Tip of curing unit was placed in the center of prepared cavity separated 1mm from restorative materials. Curing time was 40s. The restorative materials were used with Z 100, Fuji II LC, Compoglass flow and bases were used with Vitrebond, Dycal. Resrorative materials were placed in 2mm. The depth of bases were formed in 1mm and in this upper portion, resin of 2mm depth was placed. This procedure was performed 10 times. The results were as follows. 1. All the groups showed that the temperature in pulp increased as curing time increased 2. The temperature increase of glass ionomer was significantly higher than that of Resin and Compomer during curing procedure (P<0.05). 3. The temperature increase in glass ionomer base was significantly higher than that of Calcium hydroxide base during Resin curing procedure (P<0.05).

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Management of a trauma patient with alcohol withdrawal who developed neuroleptic malignant syndrome in Korea: a case report

  • Byungchul Yu;Ji Yeon Lee;Yong Beom Kim;Hee Yeon Park;Junsu Jung;Youn Yi Jo
    • Journal of Trauma and Injury
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    • 제36권3호
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    • pp.249-252
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    • 2023
  • Neuroleptic malignant syndrome (NMS) is a rare but fatal condition, with a high mortality rate. NMS is characterized by altered mental status, fever, myoclonus, autonomic dysfunctions, and elevated creatinine phosphokinase. The clinical manifestations may be confused with alcohol-related symptoms, trauma, sepsis, postoperative agitation, or malignant hyperthermia. A 69-year-old male patient with alcohol withdrawal was admitted to the operating theatre to rule out septic shock due to mesenteric injury after multiple trauma. He was suspected NMS with abrupt increase body temperature to 41.7℃ after haloperidol administration. Active cooling and rapid fluid infusion was done during anesthesia. Delayed diagnosis and treatment of NMS lead to catastrophic result. Therefore, if the patient's past medical history is unknown or clinical symptoms develop that are suggestive of NMS, early treatment must be considered.

냉해지대의 수도생육과 임,불임 인각의 양분흡수에 관한 연구 제2보 재배시기 이동이 수도지엽과 인각의 양분흡수에 미치는 영향 (Studies on the Growth and Nutrient Uptake of Flag Leaf and Chaff of Rice Plant in Cold Injury Location II. Influence of Different Transplanting Date on Nutrient Uptake of Flag Leaf and Chaff of Rice Plant)

  • 김연진;최수일;나종성;이종훈
    • 한국작물학회지
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    • 제27권3호
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    • pp.206-217
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    • 1982
  • 지대별 이앙기의 차이가 수도의 지엽과 인각의 양분흡수이용에 미치는 영향을 분석 조사하였던 바 다음과 같은 결과를 얻었다. 1. 출수지연은 지엽중 전질소함유율을 높이고 규산의 흡수를 저해하여 불임을 야기 시키는데 그 경향은 만식과 고지대일수록 뚜렷하다. 2. 지엽에 축적된 전질소함유율과 규산함유의 다소는 수량을 좌우하는 유의적인 상관관계를 이룬다. 3. 만식과 등숙이 불량한 인각일수록 전질소함유율은 높으나 규산의 흡수는 상대적으로 낮아지는 상관관계를 나타낸다. 4. 인각의 무기성분함유율은 출수후 등숙기온에 영향을 받는데 등숙기온이 높을수록 인각의 인산, 가리, 칼슘, 규산의 함유율은 증가하나 전질소 함유율은 낮아져 인각의 무기성분조성이 불임과 밀접한 관계가 있음을 암시하여 준다.

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벼 수잉기내냉성의 전역조건에 따른 변동과 기구 (Changes of Cold Tolerance and it Mechanisms at Young Microspore Stage caused by Different Pre-growing Conditions in Rice)

  • 이선용;박석홍
    • 한국작물학회지
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    • 제36권5호
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    • pp.394-406
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    • 1991
  • 소포자초기의 내냉성이 전역물관리와 시비방법에 따라 변동됨을 실증하고 내냉성의 변동기구를 화분발육생리로 부터 검토한 결과를 요약하면 다음과 같다. 1. 소포자초기의 벼의 내냉성은 유화분화기로부터 소포자초기까지의 수온(전역수온) 및 질소(전역질소)에 의하여 현저하게 변동하였고 유화분화기이전과 소포자초기이후의 수온 및 질소에 따른 변동은 거의 없거나 근소하였다. 영화분화기로부터 소포자초기까지는 10일여에 불과하나 벼의 내냉성소질을 경정하는 중요한 시기였다. 2. 전역물관리에 있어 수온은 $25^{\circ}C$까지 될 수 있는 한 높게. 수심은 10cm까지 될 수 있는 한 깊게 할수록 내냉성이 향상되었으며 이 이상으로 수온상승 및 수심을 깊게하여도 내냉성은 변하지 많았다. 전역수온상승에 따른 내냉성의 향상은 유수가 물로 보호되기 때문이었다. 전역 10cm의 심수관개의 단독효과는 위험기 20cm의 단독효과보다 켰으며 양시기의 심수관개에 따른 냉해방지효과는 상승적이었다. 3. 전역질소의 다량시용에 따른 내냉성의 저하는 엽신의 질소함유율이 어느 한계치를 넘으면 급격히 커졌는데 이 내냉성저하의 변환점에 있어서의 엽신질소 함유율은 일본형에서는 약3.5%, 통일형에서는 약2.5%로 추정되었다. 이 한계엽신질소함유율은 냉해상습지 또는 저온년에 있어서 안전한계시비량을 결정하는 한 지표로 활용될수 있을 것으로 본다. 4. 전역수온상승에 따른 약당충실화분수의 증가는 소포자분화수의 증가에 의한 것이었고 전역질소의 감소에 따른 약당충실화분수의 증가는 소비자의 퇴화에 기인된 것이었으며 충실화분수가 많을수록 임실비율이 높았다.+석회구에서 낮았다 6. 이상과 같은 결과로 미루어 본 실험에 시용된 절대질소량은 많지 않음에도 불구하고 3요소+유기물구는 유기물 분해에 따른 질소의 추비적 효과가 나타나서 무비, 무질소구에 비해 동할미, 심복백미 등 미립의 외관적 특성을 저하시키고, 단백질함량은 높이고 Mg/K\ulcornerNㆍAmylose를 낮추어 식미를 저하시키는 것으로 해석된다 7. 취급특성으로서의 흡수율, 취급액요드정색도, 취급용액출고형물은 처리간 명백한 경향을 발견할 수 없었다. 품종마다 달랐다.분얼'은 출수기가 빨랐으며, 이들은 3일 내에 모두 출수되어 짧은 기간 내에 균일한 출수와 등숙이 이루어짐으로서 미질 향상에 유리할 것으로 해석된다. 변이의 전분산에 대한 기여율은 각각 16.7%와 56.4%로 산지간 변이가 품종간 변이보다 약 4배 가까이 컸다.종과 이앙기를 조절하여 풍해를 회피하거나 방풍림이나 방풍강을 설치하여 풍해를 경감시키는 것이 수량 생산의 안전성을 향상시킬 수 있을 것으로 생각된다.종 육성 보급이 이루어져야 하고, \circled3 품수해 발생상습지에서는 벼 피해를 보상할 수 있는 타작물과의 함리적 작부체계 개선 연구가 이루어져야 하고, \circled4 피해도체의 활용도 증진 연구가 이루어져야 할 것이다. 수 있고 수확량도 크게 증가할 수 있을 것으로 생각된다.들은 진흥과 IR36품종의 중간 영역에 머물고 있었다.mite처리구가 8.6%, 유황첨가구가 5.7~7.4% 증수되었음을 보이었다. 7. 식물체중의 조단백질 함량은 대조구, 5%, 10% 유황첨가구가 3.31~3.50%로서 비슷하였고 15% 유황첨가구는 3.94%,

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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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남부지역 시설하우스 벼 극조기재배의 안전작기 설정 (Optimum Transplanting Time for Extremely Early Rice Greenhouse Cultivation in the Southern Area)

  • 최장수;안덕종;원종건;이승필;윤재탁;김길웅
    • 한국농림기상학회지
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    • 제5권3호
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    • pp.191-199
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    • 2003
  • Optimum transplanting time for extremely early rice cultivation as an after-crop of fruit and vegetables under greenhouse conditions in the southern area was determined. Rice was transplanted on March 10, March 20, March 30, April 10 and April 20 far three years from 1998 to 2000. Meteorological computations for rice production were high for heading between early May and early July, but they were too low for heading between late July and early August. Especially the expected yield predicted with 35,000 spikelets, the average spikelets per $m^2$ for extremely early transplanting. Computation for heading between late July and early August was low by 106 kg/10a compared with that yield at heading during the same period in the field. As the transplanting date in extremely early rice cultivation was earlier) rice growth at early stages was more retarded by low temperature. Rice growth at heading stage recovered with high temperature, showing less difference for the transplanting date. Abnormal tillers occurred by 15.5∼22.2%. The contribution of 1,000 grain weight${\times}$ripened grain ratio to yield of the extremely early rice cultivation in the greenhouse was 50.6%, indicating 16% hi일or than the degree of panicle per $m^2$ on yield. The estimated optimum transplanting time on the basis of yield for the extremely early greenhouse rice cultivation ranged from March 19 to April 28, and the estimated critical transplanting date on the basis of accumulated effective temperature was March 12. Rice reduced the amount of NO$_3$-N by 97.1% and EC by 90.5% in greenhouse soil with continuous fruit/vegetables fer more than a 10-year period, and completely removed the root-knot nematodes.

수도 풍해경감을 위한 방풍강 강목의 효과 (Effect of Different Wind-break Net on Reducing Damage of Cold Sea Wind)

  • 이승필;김상경;이광석;최대웅;김칠용
    • 한국작물학회지
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    • 제35권4호
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    • pp.352-361
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    • 1990
  • 동해안 랭조풍지대의 풍해 대표지역인 경북 영덕지방에서 1986년부터 1989년가지 4개년간 방풍강의 강목에 다른 풍해 경감효과와 농가포장 설치효과를 종합하면 다음과 같다. 1. 동해안 랭조풍지대의 1979년부터 1989년까지 11년간 태풍에 의한 백수 피해의 발생빈도는 8월 10일부터 9월 10일 사이에 높아 이 지역의 수도 안전출수한계기는 8월 10일 이전이 안전하다고 생각된다. 2. 이 지대는 태풍 통과시 증발계수가 250이상으로 높아 백수피해 위험도가 높으며 풍해를 유발시키는 바람의 종류는 태백산맥을 넘어오면서 휀(Fohn) 현상에 의한 고온건조한 편서풍과 해양에서 내륙으로부터 한랭과습한 랭조풍이었으며 도작기간중 발생빈도는 각각 25, 20%였다. 3. 방풍강 설치에 의한 풍속 감속효과는 방풍강의 강목이 좁을수록 컸으며, 방풍강이 설치된 지점으로부터 1m 거리에서는 23%, 10m 거리에서는 34%, 20m 거리에서는 28%였으며 그 효과는 설치된 방풍강 높이의 10배까지 있었다. 4. 방풍강 설치에 의한 기상개선효과는 무방풍구에 비해 방풍강의 강목이 좁을수록 컸으며 기온은 최고 0.8$^{\circ}C$, 최저 0.7$^{\circ}C$, 평균 0.6$^{\circ}C$ 상승되었고 수온은 최고 0.5$^{\circ}C$, 최저 0.6$^{\circ}C$, 평균 0.5$^{\circ}C$ 상승되었으며 지온도 0.4$^{\circ}C$ 상승되었다. 5. 방풍강에 의한 생육개선효과는 무방풍구에 비하여 방풍강의 강목이 좁을수록 컸으며 출수촉진, 개체군 생장속도 및 광이용율 증진, 간장신장, 주당수수, 수당영화수, 임실율, 천립중 등이 증가하여 방풍강의 강목(0.5$\times$0.5cm)에 따른 증수효과는 10%, 농가포장 설치효과는 15% 증수되었다. 6. 답면수온이 낮은 동해안 랭조풍지대에서는 주당묘수를 늘리는 것이 수수 확보에 유리하여 13% 증수효과가 있었으며 그 효과는 무방풍구에서 더욱 현저하였다. 7. 방풍강 설치에 의한 풍속 경감으로 동화기관의 고엽방지효과로 완전미의 비율이 높아 미질개선의 효과가 있었으며 벼알의 변색정도가 감소되었고 변색정도가 심할수록 증숙율과 천립중이 떨어졌으며 그 정도와 부의 상관관계가 있었다. 이상의 결과를 종합하면 태풍 발생빈도가 높은 동해안 랭조풍지대에서는 품종과 이앙기를 조절하여 풍해를 회피하거나 방풍림이나 방풍강을 설치하여 풍해를 경감시키는 것이 수량 생산의 안전성을 향상시킬 수 있을 것으로 생각된다.

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