• Title/Summary/Keyword: 수확환경

Search Result 1,002, Processing Time 0.027 seconds

Effect of Soil Heating on Lateral Shooting in White Spined Cucumber. (지중가온이 백침계 오이의 측지 발생에 미치는 영향)

  • 이상규;성기철;김광용;고관달
    • Proceedings of the Korean Society for Bio-Environment Control Conference
    • /
    • 2001.04b
    • /
    • pp.71-72
    • /
    • 2001
  • 최근 수출오이의 재배 면적이 계속증가 추세에 있어 '99년 현재 143ha에 달하고 있다. 그러나 수출오이는 국내 오이와 재배방법이 상당히 달라 국내 오이는 주지착과형이지만 수출오이는 측지착과형으로 측지의 발생여부에 따라 수확량의 차이가 심하다. 따라서 수출오이의 성공여부는 측지발생을 어느정도 시키느냐에 달려 있다고 해도 과언이 아니다. 그런데 수출오이의 재배시기는 우리나라에서 재배환경이 가장 불량한 겨울철(10-2월)로, 저온 및 투광량 부족 등으로 인하여 측지발생율이 매우 저조하다. 따라서 본 시험은 수출오이의 측지 발생율을 높이고자 지중가온기 설치 여부에 따른 효과를 구명하고자 실시하였다. 그 결과, 생육(Table 1)은 접수의 줄기 직경이 지중가온 처리시 10.22mm로, 무가온의 8.64mm보다 굵었고, 엽장과 엽폭에 있어서도 지중가온 처리가 무가온 처리보다 좋았다. 곡과 발생수에 있어서도 지중가온 처리는 주당 0.73개가 발생하였으나, 무가온은 1.26개가 발생되어 지중가온 처리시 무가온에 비해서 생육이 좋아지고, 곡과 발생이 적었다. 주당 측지발생수(Table 2)는 지중가온구가 13.7개였고, 무가온구는 11.7개로 지중가온을 하면 측지발생수가 증가함을 알수 있었다. 또한 상품수확과수에 있어서도 지중가온구는 주당 45개인데 반해 지중무가온구는 38개였으며 따라서 전체적인 수량이 10a당 8,100kg으로, 무가온구의 6,840kg보다 18%의 증수효과가 있었다. 따라서 수출오이재배시 지중가온을 하면, 측지발생수가 증가하고 특히 장측지(Fig. 1)가 다수 발생하여 측지 수확과수가 증가하며, 곡과 등 기형과 발생이 감소하여 상품수량이 증가되므로써 기존 지중 무가온 재배에 비해 14% 소득향상 효과를 기대할 수 있다.시 생장이 둔화되었다. 밀폐시킨 삼각플라스크에서 자라는 Cell은 상태도 좋지 않고 전반적인 증식량도 적었다. Cell은 환기정도에 민감한 것으로 판단되며 삼각플라스크에서 약 35일 정도의 생장 주기를 가지는 것으로 사료된다. 배양 3주까지는 플라스틱 뚜껑으로 밀폐시킨 bottle에서 가장 많은 체세포배를 얻었다. Air filter를 달아 2일 마다 신선한 공기를 넣어 주었을 때는 배의 발달이 많이 늦어져 배양 3주째에 다른 처리보다 배의 수가 훨씬 적었다. 체세포배가 발달하는 동안에는 산소를 많이 요구하지 않으나 성숙하는 동안에는 산소를 많이 요구하는 것으로 생각된다.적인 것으로 나타났다. 다만, 곡선형은 물론 직선형에서도 열교환 튜브의 배치밀도, 튜브 길이 및 두께 등의 변화에 따른 최적화 연구가 수반되어야 할 것으로 판단된다.에서 제공된 API는 객체기반 제작/편집 도구에 응용되어 다양한 멀티미디어 컨텐츠 제작에 사용되었다.x factorization (NMF), generative topographic mapping (GTM)의 구조와 학습 및 추론알고리즘을소개하고 이를 DNA칩 데이터 분석 평가 대회인 CAMDA-2000과 CAMDA-2001에서 사용된cancer diagnosis 문제와 gene-drug dependency analysis 문제에 적용한 결과를 살펴본다.0$\mu$M이 적당하며, 초기배발달을 유기할 때의 효과적인 cysteamine의 농도는 25~50$\mu$M인 것으로 판단된다.N)A(N)/N을 제시하였다(A(N)=N에 대한 A값). 위의 실험식을 사용하여 헝가리산 Zempleni 시료(15%$S_{XRD}$)의 기본입자분포로부터 %$S_{XRD}

  • PDF

Investigations of Soil Chemical Properties in the Cultivation Fields of Rubus coreanus with Different Growth Ages (복분자 재배 기간에 따른 토양의 화학적 특성 변화)

  • Lee, Jin-Ho;Lee, Chang-Ho;Kang, Byeong-Suk;Ahn, Byung-Koo
    • Korean Journal of Soil Science and Fertilizer
    • /
    • v.43 no.6
    • /
    • pp.923-929
    • /
    • 2010
  • This study was conducted to investigate the relations between soil chemical properties and Korean raspberry (Rubus coreanus Miq.) growth. Soils were collected from 54 sampling sites in 1 to 6 years old Korean raspberry cultivation fields (RCFs) at Gochang-gun, Jeollabuk-Do, Korea. In RCF with two to six years old plants, soil pH and exchangeable $Ca^{2+}$ and $Mg^{2+}$ contents were higher at the leaf-emergence time, but EC, available phosphorus content, CEC, and total nitrogen content were higher at the harvesting time; especially at the harvesting time, the content of available phosphorus in the RCF with 3~6 years old plants were at least three times higher than in the RCF with 2 years old plants. Water-soluble anions ($Cl^-$, ${NO_3}^-$, ${PO_4}^{2-}$, and ${SO_4}^{2-}$) in the RCF were also measured. The contents of ${NO_3}^-$ and ${SO_4}^{2-}$ were always higher in the RCF with older plants than in the RCF with younger plants, which were not affected by sampling time and sampling locations (rhizosphere and non-rhizosphere sites). However, soils collected from non-rhizosphere at the leaf-emergence time contained higher ${PO_4}^{2-}$ content, but $Cl^-$ content was higher in the soils collected from rhizosphere at the harvesting time. In general, soils in the RCFs contained excess amounts of inorganic nutrients such as available phosphorus and exchangeable $K^+$. Thus, optimal levels of soil properties for Korean raspberry cultivation should be reconsidered.

Effects of Sowing and Harvesting Times on Feed Value and Functional Component of Triticale (x Triticosecale Wittmack) (트리티케일 파종시기 및 수확시기가 사일리지 사료가치와 기능성 성분에 미치는 영향)

  • Jisuk Kim;Kyungyoon Ra;Yul-Ho Kim;Myoung Ryoul Park
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.67 no.4
    • /
    • pp.319-325
    • /
    • 2022
  • Triticale forage has the highest yield of all winter forage crops, including rye, and a cold tolerance within an average low temperature of -10℃ in January. Therefore, this study analyzed the effects of sowing and harvesting times on the feed value and functional components of triticale to optimize the use and supply of triticale as livestock fee Room temperature' can vary widely with climate, season, and time of day. In order to clearly state the conditions of the study in a manner that facilitates replication by other researchers, please consider using an approximate temperature range instead. Seeds of the triticale 'Joseong' were sown during the fall of 2021 (October 20th) and spring of 2022 (March 7th). The triticale was harvested at the following growth stages: seedling stage, booting stage, heading stage, 10 days after heading, and 20 days after heading. The moisture content of each harvested triticale was adjusted to approximately 60%, and the triticale was fermented for silage for 40 days at ambient temperature under anaerobic conditions. We measured the pH and organic acid content of each silage to determine the feed value and functional component. The lactic acid content of the triticale silage harvested at the seedling stage sown in both fall and spring (1.61%, 1.63%) was the highest among all the silages. The octacosanol content in the silages of both fall-sown and spring-sown triticale harvested at the seedling stage (0.38, 0.27 mg/ml) was the highest. Overall, the results revealed that harvesting time had a greater impact on the feed value and functional components of triticale silage than sowing time.

Detection of Site Environment and Estimation of Stand Yield in Mixed Forests Using National Forest Inventory (국가산림자원조사를 이용한 혼효림의 입지환경 탐색 및 임분수확량 추정)

  • Seongyeop Jeong;Jongsu Yim;Sunjung Lee;Jungeun Song;Hyokeun Park;JungBin Lee;Kyujin Yeom;Yeongmo Son
    • Journal of Korean Society of Forest Science
    • /
    • v.112 no.1
    • /
    • pp.83-92
    • /
    • 2023
  • This study was established to investigate the site environment of mixed forests in Korea and to estimate the growth and yield of stands using national forest resources inventory data. The growth of mixed forests was derived by applying the Chapman-Richards model with diameter at breast height (DBH), height, and cross-sectional area at breast height (BA), and the yield of mixed forests was derived by applying stepwise regression analysis with factors such as cross-sectional area at breast height, site index (SI), age, and standing tree density per ha. Mixed forests were found to be growing in various locations. By climate zone, more than half of them were distributed in the temperate central region. By altitude, about 62% were distributed at 101-400 m. The fitness indexes (FI) for the growth model of mixed forests, which is the independent variable of stand age, were 0.32 for the DBH estimation, 0.22 for the height estimation, and 0.18 for the basal area at breast height estimation, which were somewhat low. However, considering the graph and residual between the estimated and measured values of the estimation equation, the use of this estimation model is not expected to cause any particular problems. The yield prediction model of mixed forests was derived as follows: Stand volume =-162.6859+6.3434 ∙ BA+9.9214 ∙ SI+0.7271 ∙ Age, which is a step- by-step input of basal area at breast height (BA), site index (SI), and age among several growth factors, and the determination coefficient (R2) of the equation was about 96%. Using our optimal growth and yield prediction model, a makeshift stand yield table was created. This table of mixed forests was also used to derive the rotation of the highest production in volume.

Effect of Fly Ash on Productivity of Tomato and Improvement of Soil (토마토 생산성과 토양개량에 미치는 석탄회 시용의 영향)

  • Lee, Cheol-Hee
    • Korean Journal of Plant Resources
    • /
    • v.20 no.1
    • /
    • pp.93-98
    • /
    • 2007
  • In the present experiment, fly ash application to soil generally improved soil pH condition. The improvement of soil pH was greater with bituminous fly ash than with anthracite fly ash. Treatment of fly ash also made available phosphate content increased. But phosphate content in cultivated tomato plants was in inverse proportion to content in soil due to high pH of experimental soil as well as hot and dry weather. Amount of phosphate in plants had a strong positive effect on the yield of tomato. Number and weight of harvested fruits was greatest from July 21 to July 30, the time considered as peak harvesting period of second fruit truss. In conclusion, the application of fly ash improved physico-chemical properties of experimental soil.

Yield and Bioactive Component on Different Compost Amounts and Cultural Methods of Saururus chinensis $B_{AILL}$ (퇴비 시용량과 재배방법에 따른 삼백초의 수량 및 약리성분 함량 차이)

  • Lee, Seong-Tae;Lee, Young-Han;Choi, Yong-Jo;Lee, Yong-Ho;Cho, Ju-Sik;Heo, Jong-Soo
    • Korean Journal of Medicinal Crop Science
    • /
    • v.9 no.3
    • /
    • pp.220-224
    • /
    • 2001
  • To obtain the basic information for commercial process and high quality production of Saururus chinensis, the yield and the contents of available component were determined at different compost application amounts and cultural methods. Fresh weight of aerial part was increased by increasing of the compost application amounts. The contents of quercetin, quercitrin and tannin were the highest in the compost 2,000kg/10a. Fresh weight of aerial part at different cutting times was no difference between one harvesting/year and two harvesting/year in S. chinensis. On occasion of two harvesting/year, the contents of component was more collected on July 16 than collected on October 16. Fresh weight of aerial part was less in the field than in the greenhouse culture method, but the contents of quercetin, quercitrin and tannin were more in the field than in the greenhouse culture method.

  • PDF

Domestic Forage Distribution and Management System Using IoT (IoT 기반 국내산 풀사료 유통 및 관리 시스템)

  • Cho, Sangwook;Kim, Dong-eon
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
    • /
    • 2018.10a
    • /
    • pp.247-250
    • /
    • 2018
  • 정부는 국내산 풀사료의 경쟁력을 강화하기 위해 풀사료용 기계장비 및 제조비 등의 지원에 해마다 1,000억 이상의 예산을 사용하고 있다. 이에 수반한 보조금의 공정한 집행을 위한 절차와 서류는 매우 복잡하기 때문에 집행 및 정산에 상당한 행정비용이 발생하여 국내 생산 확대의 걸림돌로 적용하고 있는 실정이다. 또한 풀사료는 생산시점의 환경(습도, 온도 등), 수분함유량, 압축압력, 풀사료 품종 등에 따라 품질이 달라지는데 품질기준이 미흡해 유통활성화에 걸림돌이 되고 있다. 풀사료 생산이력 정보 수집에 필요한 센서, IoT 통신기술 등은 상용화 수준에 도달했으나 풀사료 생산현장에 적용하기 위해서는 풀사료 수확기 등과의 통합이 필요하고, 데이터에 기반한 과학적 정책 입안을 위한 기반 데이터 축적이 필요하다. 이를 위해 본 연구에서는 국내산 풀사료의 생산량 증대 및 유통 활성화를 위한 IoT 기반의 풀사료 생산이력관리 시스템을 개발 중으로, 우선 관리 기준이 되는 표준 데이터를 정립해 DB화(化) 하고, 풀사료 수확현장에서 필요한 데이터를 확보하기 위한 생산이력 생성장치 및 생산이력 수집장치와 이를 IoT망을 활용해 전송하기 위한 생산이력 송신장치를 개발하며 수집된 데이터를 통합 데이터베이스화(化) 하여 다양한 사용자에게 유무선 인터넷을 활용해 정보를 제공하는 웹/앱을 개발 중이다. 개발을 위한 핵심 기술로는 풀사료 수확기에 부착된 다양한 센서에서 생성되는 압력 등의 데이터를 실시간으로 취득하는 기술, 제어용 컨트롤러 설계 기술, 센서 데이터 가공 기술, IoT망을 이용한 실시간 전송 기술, 풀사료 통합 DB 구축 기술, Full Stack JavaScript 기술 등이 있다. 본 시스템를 풀사료 현장에 적용하면 풀사료 현장 조사 시간 및 비용 절감, 풀사료 생산/유통/보조 업무 전반의 효율화 및 투명화, 생산이력제 정착으로 풀사료 온라인 유통 활성화 및 물류비 절감, 센서, 측정장치, 표기장치 판매 및 유지보수 등 농업분야 신규사업 창출이 가능하다.

  • PDF

Current Situations of Domestic Cultivation and Cultivation Management Technology in Passion Fruit (Passiflora edulis Sims) (아열대 작물 백향과(Passiflora edulis Sims)의 국내 재배현황 및 재배관리기술 실태)

  • Chang-Yung Kim;Doo-Weon Lee;Dea-Min Oh;Ho-Cheol Ko
    • Proceedings of the Plant Resources Society of Korea Conference
    • /
    • 2021.04a
    • /
    • pp.39-39
    • /
    • 2021
  • 지구온난화에 따른 기후변화로 과거에는 재배되지 않았던 아열대 작물의 국내재배가 확대되고 있다. 백향과(Passiflora edulis Sims)는 브라질 남부지역이 원산지인 아열대작물로 국내에서도 전국적으로 재배가 되고 있어서, 국내 재배현황과 재배농가의 관리기술 실태를 조사하여 재배 애로사항 및 발전과제를 도출코져 하였다. 백향과의 국내 재배는 2010년부터 시작되어 2017년에는 201농가 54.7ha로 정점을 이루고, 점차 감소하여 2019년에는 156농가 36.5ha에서 재배되고 있다. 재배농가가 많았던 지역은 남원, 담양, 화순, 김천, 고창 등 이었다. 백향과의 재배체계는 대부분의 농가가 비닐하우스 시설에서 겨울철 난방에 의한 다년 재배로 1년 2회 수확하고 있으며, 극히 일부농가는 1년 재배체계로 매년 묘목을 다시 심는 형태이다. 백향과의 국내 육성품종은 없으며, 외국에서 도입한 자색종 또는 교잡종을 주로 재배하고 있다. 현재 국립종자원에 '일반종', '타이농1하오', '황금' 3품종이 생산/수입 판매 신고되어 있다. 초기에 도입한 접목묘를 재배하면서 국내에서 삽목묘를 육성하여 많은 농가가 재배하고 있다. 백향과는 덩굴성이기 때문에 지주를 설치하여 재배하는데 재식거리, 수형, 가지유인 등을 농가별로 다양한 방법으로 하고 있는 실정이다. 개화기에 인공수분 작업이 필요하고, 수확은 과일이 성숙하여 저절로 낙과하면 주어서 수확한 과일은 주로 생과로 판매하는데 전화 및 인터넷 주문에 의한 직거래가 가장 많고, 일부 마트 및 로컬푸드에 판매하고 있다. 국내재배 안전성 향상을 위하여 필요시 되는 기술개발 과제는 적응 품종육성 및 무병묘 생산 보급, 고품질 백향과 생산을 위한 재배관리 기술, 시설재배 환경관리 기술, 소비 증대를 위한 가공 이용 기술 개발 등으로 전문기관에서의 연구개발이 필요하다.

  • PDF

Determination of Optimum Heating Date for Off-Season Production of Asparagus (Asparagus officinalis L.) (단경기 아스파라거스 생산을 위한 적정 가온시기 구명)

  • Seong, Ki Cheol;Kim, Chun Hwan;Lee, Jin Su;Eum, Yong Chul;Moon, Doo Kyong
    • Journal of Bio-Environment Control
    • /
    • v.21 no.3
    • /
    • pp.276-280
    • /
    • 2012
  • This study was conducted to determine the ideal beginning date of plastic house optimum heating for off-season (December) production of asparagus. To achieve this, the 1.6-year-old 'Green tower' asparagus was cultivated in Jeju area ($33^{\circ}$28.110N, $126^{\circ}$31.076E) and the yield and quality among 7 different beginning dates of heating from Oct. 25 to Jan. 20 with 15-days interval were compared. The heating was controlled to maintain the inside temperature was higher than $20^{\circ}C$, But the plastic house was ventilated when the inside temperature rose to $30^{\circ}C$. Days to sprouting took longer as heating dates were delayed. Days to sprouting took 52 days in heating at December 30, and the days were shortened thereafter. As the beginning of heating was delayed, sprouting of asparagus was retarded. Among treatments, days to sprouting was 52 days and longest when the heating began on December 30. When the heating began on October 25, harvest was earliest and started on 7 November. When the heating began on November 15 and 30, harvest started on November 30 and December 18, respectively. Harvesting started on November 7 for October 25 heating, November 30 for Nov. 15 heating, and December 18 for November 30 heating, respectively. When the heating began was done after December. 15, harvesting was possible after early January. The number of spear, spear weight and yield were highly increased in the treatments of heating after January. 10 when the asparagus dormancy was broken. In the case of heating dates were before the asparagus dormancy breaking, the total yield was highest in November 15 heating with 607 kg/10a. The marketable yield of November 15 heating was 386kg/10a, which was twice higher than the 193 kg/10a of October 25 heating. Accordingly, it is recommended to start heating on November 15 for the production of off-season (December) asparagus in Jeju. Therefore, the optimum heating date to start was November 15 for the improvement of quality and yield of off-season (December) asparagus in Jeju area.

Responses to 1-MCP during Storage of Kimchi Cabbage Ryouckgwang Cultivar (배추 력광 품종의 저장 중 1-MCP에 대한 반응)

  • Hong, Sae Jin;Kim, Byung-Sup;Kim, Byeong-Sam;Eum, Hyang Lan
    • Journal of Bio-Environment Control
    • /
    • v.27 no.2
    • /
    • pp.125-131
    • /
    • 2018
  • The effect of 1-methylcyclopropene (1-MCP) in the storability of kimchi cabbage at cold storage condition was investigated. Kimchi cabbage (Brassica campestris L. cv Ryouckgwang) was divided four groups, forced air cooling (FAC), FAC + 0.03 mm linear low density polyethylene liner (Liner), $FAC+2{\mu}L{\cdot}L^{-1}$ 1-MCP (1-MCP), and FAC + 1-MCP + Liner. After each treatment kimchi cabbage was stored at $2^{\circ}C$, 95% RH. Quality parameters were weight loss, soluble solids content (SSC), firmness, and color ($CIE\;L^*$, $a^*$, $b^*$, chroma, hue angle). Weight loss during storage was showed significant difference by Liner treatment. In particular FAC + 1-MCP + Liner treatment showed 12.5% reduction after 6 weeks of storage period and minimized the weight loss rate compared to other treatments. SSC of kimchi cabbage was $2.5^{\circ}Brix$ at harvest and FAC + 1-MCP + Liner treatment maintained the SSC until 3 weeks, while in other treatments gradually were increased. The firmness of kimchi cabbage was 24.0 N immediately after harvest and the firmness at harvest time tended to be maintained at 22.6 N after 6 weeks of storage in FAC + 1-MCP + Liner treatment. During the storage period, the color change of the kimchi cabbage leaf can be confirmed by $CIE\;a^*$ and hue angle value. 1-MCP treatment alone did not affect the color change, however 1-MCP + Liner treatment was able to maintain the chromaticity at harvest time while minimizing the change of $CIE\;a^*$ and hue angle. These results suggest that 1-MCP treatment is not effective for the storage of kimchi cabbage but can be maintained for up to 6 weeks when treated with Liner.