• 제목/요약/키워드: seedling planting

검색결과 217건 처리시간 0.027초

육묘 기간에 따른 고추 묘의 소질과 정식 후 생육 및 수량 (Seedling Qualities of Hot Pepper according to Seedling Growth Periods and Growth and Yield after Planting)

  • 김호철;조윤희;구양규;배종향
    • 원예과학기술지
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    • 제33권6호
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    • pp.839-844
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    • 2015
  • 본 연구는 고추 묘의 소질과 정식 후 생육 및 수량에 대한 육묘 기간(45, 55, 65, 75일 및 85일)의 영향을 알아보고자 수행하였다. 육묘 기간에 따라 정식 전 고추 묘의 초장, 마디수 및 엽면적, 생체중 및 건물중은 육묘 기간이 긴 묘일수록 높았고, T/R율은 45일 및 85일 묘에서 높았다. 육묘 기간에 따라 생산된 고추 묘의 정식 후 10주째에 초장, 경경, 엽면적은 45일 및 55일 묘에서 뚜렷이 높았다. 식물체의 생체중 및 건물중은 45일 묘에서 무거웠지만, 건물률은 가장 낮았다. 착과된 과실의 수 및 무게는 45일 묘에서 가장 높았다. 정식 후 18주 동안 성숙과 수확량은 45일 및 55일 묘에서 많은 경향을 나타내었다. 상기 결과들을 종합하면 고추의 생육 및 상품과 생산량은 45일과 55일 묘에서 좋았다. 그러므로 노지 재배 시 고추 묘의 육묘 기간은 45일에서 55일 사이가 적합할 것으로 판단된다.

북한산림복구용 용기묘 식재기 개발 (Development of Pottery Planting Equipment for the Restoration of North Korean Forest)

  • 최종오
    • 한국환경복원기술학회지
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    • 제26권1호
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    • pp.61-68
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    • 2023
  • In North Korea, the production of courage tombs continues, and it is known that the activity rate is higher than that of old tombs. However, pot seedling are planted using hoes and shovels used for planting old tombs with exposed roots and low activity rates. This is believed to result in excessive force when stepping on the container grave with a hoe in the planting process, resulting in the collapse of the container grave or the waste of labor due to the creation of unnecessary planting holes. Therefore, when planting courage graves at North Korean afforestation sites, it is necessary to improve the work of making planting holes using general hoes in a way that improves labor productivity in a more efficient manner. As part of inter-Korean technical cooperation to improve the North Korean afforestation method, this study was conducted with the aim of developing efficient container seedlings and using them for North Korean forest restoration projects. It is believed that developing planting equipment exclusively for container graves for forest restoration in North Korea in South Korea and providing equipment and production technology to North Korea can contribute to the development of forest restoration technology in North Korea. If the Yonggeomyo Development Planting Equipment is provided to North Korea, it will be a realistic inter-Korean forest cooperation project to avoid international sanctions by recognizing the excellence of the development products by directly using its own materials through technical cooperation.

여주 봄 작형의 재배방법과 정식기가 생육과 수량에 미치는 영향 (Effects of Cutivation Method and Planting Date in Growth and Yield of Momordica charantia L. in Spring Season)

  • 손동모;김성준;김효중;김희곤;윤봉기;정종모;이정현
    • 생물환경조절학회지
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    • 제25권3호
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    • pp.200-205
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    • 2016
  • This study was conducted in order to investigate the effects that the difference of planting time by a method of cultivation in the non-heated greenhouse and the open field with spring planting had on growth and yield. With regard to the tested variety of Momordica charantia, variety 'Dragon' (Japan Yae 農藝) was selected. And 3 treatments on March 20, April 5 and April 20 for the greenhouse cultivation and 3 treatments on April 20, May 5 and May 20 for the open-field cultivation 1 month later than those for the greenhouse cultivation were planted by the randomized complete block design, and 4 secondary vines were trained. In the results of examining 15-day average atmospheric temperature after planting according to the methods of greenhouse and open-field cultivation and planting time, it was shown that there was a tendency for atmospheric temperature inside the greenhouse to decrease as the planting time was moved up. In particular, the average atmospheric temperature was $16.7^{\circ}C$ when seedling was planted on April 20 in the open-field cultivation, which was approximately equal to $17.0^{\circ}C$ of the average atmospheric temperature when a seedling was planted on March 20 in the greenhouse cultivation. With regard to the date of first harvest by the method of cultivation, it was shown that there was a tendency for the date of first harvest to be earlier in the greenhouse cultivation than in the open-field cultivation, and the date of first harvest was moved up as a seedling was planted earlier for the planting period. The number and weight of harvested fruits per plant showed a tendency which was almost similar to that of total number of harvest days and number of harvests. Thus, the number of fruits was 189 and the weight of fruits was 31,649g in case of the greenhouse cultivation and planting on March 20, which were maximum. In case of planting on the latest planting date : May 20 in the open-field cultivation, the number of fruits was 77 and the weight of fruits was 12,502g, which were at a level of 40% of those of planting on March 20 in the greenhouse cultivation 2 months earlier. The total yield per 10a was 10,228kg in the greenhouse cultivation and was 2.2 times as heavy as 4,607kg in the open-field cultivation with regard to the method of cultivation. For the planting period in the greenhouse cultivation, it was 10,539kg and 10,517kg in planting on March 20 and April 5, which was higher by 9% than 9,629kg in planting on April 20. And in the open-field cultivation, it was 4,785kg in planting on April 20 and 4,872kg in planting on May 5, which was higher by 15~17% than 4,163kg in planting on May 20. Taking the above results into account, it is considered proper to plant Momordica charantia from March 20 to April 5 for the greenhouse cultivation and from April 20 to May 5 or thereabouts when a risk of late frost is gone for the open-field cultivation in southern area.

종합공동육묘장의 설비 자동화에 관한 연구 -파종시스템- (Study on Automation of Integrated Seedling Production System - Planting Device-)

  • 최창현;노광모;이규창;김재민
    • Journal of Biosystems Engineering
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    • 제21권2호
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    • pp.123-133
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    • 1996
  • An automatic drum seeder was developed to improve the seeding operation. It consisted of a conveyor to transfer seedling trays, a seed-hopper to supply seeds, a drum to drop seeds on the tray, and an air blower to remove extra seeds. A photo sensor was used to detect the transfer of seedling trays, and its signal was fed into microcomputer which operated a stepping motor driving the drum. The seeds were adhered to the surface of drum by vacuum pressure, and were dropped into tray cells by compressed air. An air connection unit was devised to alternate between vacuum pressure and compressed air. A control program for the system, written in C language, could operate the drum at the given number of revolutions and revolutions per minute. The results showed that the air connection unit could operate well and the seeds were dropped satisfactorily into tray cells. In case of cabbage and perilla seeds, which are regular and spherical shape, the missing rate was low and the single seeding rate was more than 97%. Low missing rate and high multiple seeding rate were observed in lettuce seeds which have narrow ends with tight weight. The missing rate of pepper seed was very high because of heavy weight and irregular shape. To improve the performance of the seeder, adjustment of vacuum pressure based upon shape and weight of the seeds, careful selection of the material of drum, maintenance of consistent air blower pressure, and replacement of stepping motor to DC motor are recommended.

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녹화용 다공질 식재 블럭의 개발 (Development in Planting Porous Block for Revegetation)

  • 안영희;최경영
    • 한국환경복원기술학회지
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    • 제5권4호
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    • pp.1-9
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    • 2002
  • This study is carried out to make the environmentally affinitive porous planting block for revegetation and to make a effective program for greening plans. The summary is shown below. 1. In order to get stronger intensity and distribute proper porosity in the block for planting, the cements mixed with fine soil were used and the finer in soil grains gives the stronger in intensity of the cements. Use of the furnace slag cements instead of the portland cements showed relatively stronger in intensity of the block. The intensity of the block became stronger when the mixed ratio of the cements to soil is 5 : 1, but the pore space ratio was lower. The percolate pH of the portland cements after one month of treatment was 13.1 but the percolate pH of the furnace slag cements was shown lower. To mold proper porous planting blocks, the proper combination of additives such as the dehydrating agent, elastic agent and adhesives into the mixture of cements and soil gives better effectives. 2. After molding the porous planting blocks, it gave a better result when the grains of the filler made of peat moss, upland soil and compound fertilizer were smaller than 2 mm in size. Shaking of the filling materials also gave the better result, but it took more time and cost much more. Therefore, it was better when the filling materials were mixed with water first then flew down for stuffing. 3. It was necessary to cover with soil after seeding or planting on the porous planting blocks. The proper thickness of the soil to help root development and keep moisture is about 3~5 cm. 4. The plants for planting on the porous planting block were required stronger in the growth condition of their roots and their environmental adaptability. The average germination percentage and rate of Platycodon grandiflorum on the porous planting block were 88.8% and 85% accordingly and their rate is very uniform. The germination rates of Dianthus superbus var. longicalycinus and Taraxacum officinale were more than 50%. These grass species, Chelidonium majus var. asiaticum, Lysimachia mauritiana and Scabiosa mansenensis were the suggested biennial grasses in the planting area where exchanging of the seedling or nursery plants was not necessary because their germination rates were 59.3, 45.6 and 40.3% accordingly. Viola kapsanensis, Chrysanthemum sp., Taraxacum sp. and Iris ensata var. spontanea are the grass species that could be used by seeding for greening. However, the germination rate of Solidago virga-aurea var. asiatica, Aster scaber and Lythrum anceps were lower than 10%. The coverage ratio of Ixeris stolonifera is more than 80% after 60 days seeding and the root length of most of species are more than 10 cm except Iris ensata var. spontanea and Platycodon grandiflorum because their root developed thicker than other species.

수도주당재식본수에 따른 간장 및 수장의 주내분포에 관한 연구 (Comparison of the Intra-hill Distribution of Culm and Panicle Length between Different Planting Numbers of Seedlings per Hill in Paddy Rice)

  • 김광호;이은웅
    • 한국작물학회지
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    • 제24권1호
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    • pp.24-29
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    • 1979
  • 수도 이앙시 주당재식본수를 달리했을때 주내간장 및 수장의 분포를 비교하기 위하여 시비조건을 달리해온 5종류의 비료구에서 진흥과 통일을 공시하여 주당 1, 7 및 14본식을 하여 실험한 결과를 요약하면 다음과 같다. 1. 평균간장과 평균수장은 어느 시비조건에서나 진흥과 통일 모두 주당 1본식구가 가장 길었고 14본식구가 가장 짧았다.. 2. 간장 및 수장의 분산 및 변이계수는 어느 시비조건에서나 진흥과 통일 모두 주당 1본식구가 가장 적었고 14본식구가 가장 켰다. 3. 주당재식본수간 간장의 계급별 빈도구성은 평균간장보다 키가 작은 줄기 (경)의 빈도에서 큰 차이를 보였으며 질소를 시용하지 않은 조건에서 그 차이가 더 켰다. 4, 진흥은 통일에 비해서 주당재식본수를 늘리거나 질소를 시용하지 않는 조건에서 간장 및 수장의 주내변이가 더 커지는 경향이었다. 5. 주내 간장 및 수장간에는 모든 처이구에서 높은 정의 상관관계가 인정되었다. 6. 주내 간장 및 수장의 변이를 줄일 수 있는 방법으로써 주당재식본수의 조절은 7본식 이내의 범위에서 고려되어야 하겠다.

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Etiology of Rice Seedling Disease in Water-Seeded Rice.

  • Sim, Jung-Bo;Moon, Young-Sook;Park, Hyoi-Won;Chun, Se-Chul
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.83.1-83
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    • 2003
  • Rice seedling disease is one of major problems in water-seeded rice. This disease is known to be caused by several pathogen such as Pythium, Achlya, and Fusarium species. However, seedling disease of rice in water-seeded rice in Korea is not extensively studied. Pythium species have been isolated from Seosan, Yeoju, Icheon areas using Pythium selective media and their pathogenicity was investigated. All of the Pythium isolates showed strong pathogencity causing seedling emergence reduction in water-seeded rice. Seedling emergence was reduced to 0∼9% at 10 days after inoculation of 23 Pythium isolates compared to 60% of noninoculated control in a growth chamber. However, Fusarium species did not cause seedling emergence reduction in water-seeded rice. In contrast, when no water added into water agar or soil, the pathogen caused seedling rot two weeks after planting. These results indicate that Pythium species is a cause of seedling disease in water-seeded cultivation areas in Korea.

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연초 간후작 들깨의 묘영과 재식밀도가 수량 구성형질 및 수량에 미치는 영향 (Effect of Seedling Age and Planting Density on the Yield and Its Component of Perilla (Ocymcides Var. Typica MAKINO) Intercropped with Tobacco or Aftercropped)

  • 최인식;손석용;권오홍
    • 한국작물학회지
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    • 제25권2호
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    • pp.68-75
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    • 1980
  • 본 시험은 들깨(임)를 연초간ㆍ후작으로 재배할 경우 들깨의 묘령과 재식밀도(주당본수)가 수량구성요소 및 수량에 미치는 영향을 알고자 시험을 실시한 결과를 요약하면 다음과 같다. 1. 개화 및 성숙기는 재배시기, 주당본수에 따라 대차가없었다. 2. 기장, 제 1 분지절수, 절수 및 기수는 후작보다 간작에서 묘령이 길수록 주당본수가 많을수록 증가가 되었다. 3. 천입중 밀식보다 소식에서 증가되었다. 4. 천입중과 유분함량간에는(간작 -0.808**, 후작 -0.651*:) 부의 상관이 있었으며 기중과 종실중간에는(간작 0.727*, 후작 0.866**) 정의 상관관계가 인정되었다. 5. 들깨의 수량은 후작보다 간작에서 28%, 묘령간에는 20 일묘에 비하여 30 일묘에서 28%, 40일묘에서 35%, 주당본수간에는 1주 1본에 비하여 2본에서 8%, 3본에서 13%씩 각각 증수되었다. 이상의 결과 연차간ㆍ후작으로 들깨(임)를 재배할 경우 주종한계기는 6월 15일, 묘령은 30~40일, 주당본수는 2~3본으로 하는 것이 가장 좋다고 인정되 었다.

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침엽수(針葉樹) 식재시기별(植栽時期別) 활착특성(滑着特性)과 식재적기(植栽適期)에 관한 연구(硏究) (Seasonal Survival Characteristics of Conifer Seedlings and Their Suitable Planting Season)

  • 마상규
    • 한국산림과학회지
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    • 제58권1호
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    • pp.34-40
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    • 1982
  • 이 연구(硏究)의 목적(目的)은 식재계획(植裁計劃)과 고용계획(雇用計劃) 수립(樹立)의 자료(資料)로 제공(提供)하고자 이른 봄은 물론 하기(夏期)와 추기(秋期)에도 식재작업(植栽作業)이 가능(可能)한지의 여부를 밝히는데 있다. 공시수종(供試樹種)으로 잣나무, 일본잎갈나무, 리기다소나무, 리기데다소나무와 편백을 선정(選定)하였고, 공시묘(供試苗)의 식재(植栽)는 3월(月) 중순(中旬)부터 15일(日) 간격으로 11월말(月末)까지 실시(實施)하였다. 공시(供試) 식재묘(植栽苗)의 활착율(活着率) 조사(調査)는 동기피해(冬期被害) 관계로 익년도 춘기(春氣)에 실시(實施)하였다. 동시(同時)에 공시(供試) 식재묘(植裁苗)의 활착(活着)과 기상요인(氣象要因)과의 관계(關係) 또한 식재묘(植栽苗)의 신초생장(新稍生長)과의 관계(關係)를 분석(分析)하기 위하여 전자(前者)는 매일, 후자(後者)는 15일(日) 간격(間隔)으로 그 성적(成積)을 조사검토(調査檢討)하였다. 공시묘(供試苗)의 활착율(活着率)에 의하면 춘기(春期)와 추기(秋期) 식재묘(植栽苗)의 경우는 높으나 하기(夏期) 식재묘(植栽苗)의 경우는 활착율(活着率)이 낮고 변동(變動)이 심한 경향(傾向)을 나타내고 있다. 이 연구결과(硏究結果)에 의하면 온대남부지방(温帶南部地方)에 있어서 춘기(春氣)에는 2월말(月末) 또는 3월초(月初)로 조기식재(早期植栽)가 가능(可能)한데 이 이유(理由)는 이 시점(時點)부터 토양온도(土壤温度)가 $5^{\circ}C$ 이상(以上)으로 상승하여 발근활동(發根活動)이 시작될 수 있기 때문이다. 춘기식재(春氣植栽)는 늦어도 4월말(月末)에는 끝나야 하며, 5월(月)부터 시작(始作)하여 8월(月) 중순(中旬)까지의 하기식재(夏期植栽)는 강우조건(降雨條件)이 적합한 경우를 제외(除外)하고는 위험율(危險率)이 높게 나타나고 있다. 이 원인(原因)은 신초조직(新稍組織)과 기후조건(氣候條件) 때문인 것 같다. 다만 잣나무와 편백은 하기(夏期) 강우분포조건(降雨分布條件)에 따라 하기식재(夏期植栽)가 가능(可能)한 수종(樹種)으로 사료(思料)된다. 하기식재(夏期植栽)는 공시수종(供試樹種) 모두 식재(植栽)가 가능(可能)하였다. 리기테다소나무와 편백의 경우는 동기(冬期)의 한건풍(寒乾風) 피해(被害)에 약(弱)한 수종(樹種)이므로 식재적지(植栽適地) 선정(選定)에 유의(有意)할 수종(樹種)이다. 이 결과(結果)를 종합하여 공시수종(供試樹種)의 식재적기표(植栽適期表)는 표(表)1과 같이 제시(提示)할 수 있으므로 식재계획(植栽計劃)과 고용계획(雇用計劃) 수립(樹立)에 활용(活用)될 수 있는 것으로 사료(思料)된다.

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식재기구에 따른 소나무 용기묘의 초기생장특성 (An Analysis of Characteristic of Initial Growth with Containerized Seedlings of Pinus densiflora According to Planting Tools)

  • 고치웅;이관희;김동현;강진택;김동근
    • 한국산림과학회지
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    • 제106권4호
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    • pp.465-472
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    • 2017
  • 본 연구는 경북대학교에서 개발한 경량식혈기와 일반적인 용기묘 식재 방법인 괭이를 이용하여 경상북도 상주시 화동면 이소리에 2015년 4월 소나무 용기묘(2-0)를 정방형 식재방법($1.8{\times}1.8m$)으로 식재기구별 각각 225본씩 식재하여 약 2년 동안의 초기생장, 생존율 및 묘목품질지수(SQI)를 조사 분석하였다. 분석결과, 경량식혈기와 괭이를 이용하여 식재한 용기묘의 평균 근원경(mm)은 각각 2015년에 3.77과 3.94, 2016년에 18.73과 15.32 2017년에 27.8과 23.9로 나타났다. 또한 용기묘의 평균 간장(cm)은 각각 2015년에 33.4와 33.4, 2016년에 89.8과 74.7, 2017년에 120.7과 97.9로 간장 역시 경량식혈기를 이용하여 식재한 용기묘가 괭이를 이용하여 식재한 용기묘 보다 초기 생장이 더 높은 것으로 나타났으며, 생존율 또한 경량식혈기를 이용한 용기묘의 생존율이 괭이를 이용한 경우 보다 약 10%정도 더 높게 나타났다. 그리고 H/D율(건전도)과 T/R율은 서로 유사한 값을 나타낸 반면 SQI는 경량식혈기가 0.60, 괭이는 0.24로 나타나 경량식혈기 식재가 괭이 식재에 비해 용기묘의 초기생장에 더 유리한 것으로 판단된다.