• Title/Summary/Keyword: harvest area

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Fruit Quality and Storability by Harvest Time at 'Fuji'/M.9 Apple Orchard Located in the Area with a High Air Temperature during the Fall Season (가을철 기온이 높은 지역에 위치한 '후지'/M.9 사과원의 수확시기에 따른 과실품질과 저장성)

  • Sagong, Dong-Hoon;Kweon, Hun-Joong;Song, Yang-Yik;Park, Moo-Yong;Kang, Seok-Beom;Yoon, Tae-Myung
    • Horticultural Science & Technology
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    • v.31 no.4
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    • pp.437-446
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    • 2013
  • This study was conducted for three years (2007, 2009, and 2010) to investigate the changes in fruit quality during maturation, and the quality and storage ability of fruits harvested at different times of 'Fuji' apple in Daegu region with a high air temperature during the fall season. Changes in apple fruit quality during the maturation period were investigated from 120-135 days to 183-198 days after full bloom. In comparing quality and storage ability of fruits harvested at different times, fruits harvested more than 180 days after full bloom were used. During the maturation period, poor coloring was the problem for 'Fuji' apple in Daegu region by the high air temperature about $20^{\circ}C$. In comparing quality of fruits harvested at different times, the soluble solid contents and hunter a value were increased by the extended harvest time. Fruit weight during harvest was not affected by different harvest time, while the fruit firmness and titratable acidity during harvest were decreased critically when the freezing damage happened. Ethylene production, fruit firmness, and titratable acidity during cold storage for twenty weeks did not differ according to the different harvest time. Soluble solid contents of fruits harvested at 216 days after full bloom in 2009 were similar at the time of harvest and cold storage. For fruits harvested at 201 days after full bloom, soluble solid content during cold storage was higher than during harvest time. However fruit firmness, soluble solid content, and titratable acidity after cold storage of fruit harvested after freezing damage was lower than those of the fruit harvested before freezing damage. The results show that the extended harvest time of 'Fuji' apples about 2-4 weeks from 180-200 days after full bloom in area with above-air temperature during fall season was seemed to be beneficial to enhancing soluble solid contents and fruit red color, but harvesting after the middle of November was dangerous because minimum air temperature began to fall under $-3.0^{\circ}C$.

Distribution Characteristics and Status of Fresh Ginseng in Keumsan Area (금산지역의 수삼의 저장관리 및 유통 현황)

  • Kim, Hyun-Ho;Hwang, Young-Soo;Seoung, Bong-Jae;Kim, Sun-Ik;Cho, Jin-Woong;Kim, Choong-Soo
    • Korean Journal of Agricultural Science
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    • v.33 no.2
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    • pp.129-140
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    • 2006
  • There are need to develop of merchandise of value added fresh ginseng because of high consciousness level of consumer and enlarge of markets for high quality products. The fresh ginseng after harvest was distributed to farmer partually but in general, it was to market by consigner or wholsaler directly after harvest. There were a high difference on storage period of fresh ginseng in different harvesting seasons. The reduction of value of commodities of fresh ginseng for storage period was caused by decomposition and tender of tissue. The storage temperature was under the freezing point and the packing method was sealing tightly by plastic film. As the quality of fresh ginseng was defined by naked eye, it was difficult to sort the quality of ginseng directly harvest.

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Developing a Web-based System for Computing Pre-Harvest Residue Limits (PHRLs)

  • Chang, Han Sub;Bae, Hey Ree;Son, Young Bae;Song, In Ho;Lee, Cheol Ho;Choi, Nam Geun;Cho, Kyoung Kyu;Lee, Young Gu
    • Agribusiness and Information Management
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    • v.3 no.1
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    • pp.11-22
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    • 2011
  • This study describes the development of a web-based system that collects all data generated in the research conducted to set pre-harvest residue limits (PHRLs) for agricultural product safety control. These data, including concentrations of pesticide residues, limit of detection, limit of quantitation, recoveries, weather charts, and growth rates, are incorporated into a database, a regression analysis of the data is performed using statistical techniques, and the PHRL for an agricultural product is automatically computed. The development and establishment of this system increased the efficiency and improved the reliability of the research in this area by standardizing the data and maintaining its accuracy without temporal or spatial limitations. The system permits automatic computation of the PHRL and a quick review of the goodness of fit of the regression model. By building and analyzing a database, it also allows data accumulated over the last 10 years to be utilized.

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Changes of Fresh Leaf Yield and Colorant Level with Different Transplanting and Harvest Time in Persicaria tinctoria H. Gross (이식 및 수확시기에 따른 쪽의 생엽수량 및 색소함량의 변화)

  • Ko, Jae-Hyung;Kim, Seong-Ju;Lee, Hoo-Kwan;Kim, Kwan-Su
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.58 no.2
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    • pp.177-184
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    • 2013
  • This study was conducted to determinate the optimum times of transplanting and harvest for enhancing the fresh leaf yield and colorant level of an indigo crop, Persicaria tinctoria H. Gross, containing the blue dye indigo. Two cultivars, Naju Local and a new cultivar, NaramBlue, were transplanted 5 times from May 30 to July 10 at an interval of 10 days, and all of experiment plots harvested on Aug. 23 in Muan, the south area of Korea. As transplanting time was delayed, fresh leaf yield were maximum at earliest transplanting (May 30) and then decreased, while Niram (blue dye extract) and indigo content of fresh leaf remained almost constant though showed a small variation. Also, two cultivars transplanted on May 23 were harvested 5 times from Jul. 20 to Sept. 20 at an interval of 15 days. As harvest time was delayed, plant height, No. of first branches, and fresh leaf yield changed increasingly, while Niram content was increased to Aug. 20 and then decreased slightly. Indigo level increased largely to Aug. 5, and then continuously decreased with more delayed harvest. These tendencies of changes in fresh leaf yield and colorant level with different transplanting and harvest times were shown similarly in both cultivars. The results indicate that early transplanting before May 30 and harvest in early August will be appropriate for improving fresh leaf yield and colorant level.

Feed Value of Whole-Crop Silage Rice by Cultivars and Plant Parts at Different Transplanting and Harvest Dates

  • Lee, Jihyun;Ku, Bon-Il;Shim, Kang-Bo;Shin, Myeong-Na;Jeon, Weon-Tai
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.40 no.3
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    • pp.138-148
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    • 2020
  • This study was carried out to find out the changes in the growth characteristics and feed value of the three different whole-crop silage rice cultivars of whole-crop silage rice such as Jonong, Yeongwoo and Mogwoo to develop an efficient double cropping system. This study showed that there were significant differences biomass and feed values among cultivars but no clear difference among transplanting dates. Dry weight and height were in order of Mogwoo, Yeongwoo, Jonong (p<0.05). Dry weight and feed value of Jonong showed no significant difference after 21 days after heading (DAH), it was expected to be harvested before DAH 30 days. Yeongwoo showed a lower dry weight than Mogwoo, but heading date was earlier than Mogwoo, so one can expect a higher feed value than Mogwoo. Mogwoo had lower crude protein and total digestible nutrient than the other two cultivars but relative feed value in stem was higher than that of the other cultivars, but had higher dry weight than other cultivars so it was considered to take an advantage as a silage rice. Therefore, the results of this study suggest that the selection of whole-crop silage rice on the cropping system be made comprehensively by considering the heading characteristics of the cultivars and the feed value.

Yield and Morphology of White Clover in Response to Infrequent, Frequent Defoliation and Their Alternations (예취빈도의 전환이 White Clover의 수량 및 형태적 특성에 미치는 영향)

  • 강진호;박진서
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.40 no.2
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    • pp.221-227
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    • 1995
  • White clover (Trifolium repens L) gives rise to either weak persistence or overdominance in the pastures. To get information on grazing method to surmount the problem, the experiment was done to measure the effect of infrequent, frequent and their alternations on harvest yield and morphological characteristics of the clover. Individual plants of Regal, Louisiana S-l, Grasslands Huia, and Aberystwyth S184 were grown in 22cm plastic pot containing a 2: 1: 1 soil: sand: Peat moss mixture for 27 days after transplanting 50-day seedlings raised on 3cm pots, and then their all fully expanded leaves are trimmed. Defoliation treatments were forced every 1 (CC, frequent), 4 week(RR,infrequent) or their alternations(CR, RC) after 8 weeks from the trimming. To analyze the treatment effects, plants were sampled on 4, 8, 12, and 16 weeks after the trimming. Harvest yield of infrequent defoliation (RR) was higher than that of frequent defoliation (CC). Leaf area and no. of leaves per plant, petiole length and stolon length per plant, moreover, showed the similar result to the yield but stolon length and leaf area per g were reverse. The alternation of infre-quent and then frequent defoliation (RC) had greater yield than that of their reverse (CR) although both alternations showed intermediate ones compared to CC and RR. Morphological characteristics, furthermore, related to the clover leaf were immediately changed by alternations of defoliation inter-val(RC and CR) while those done to the stolon were lasted longer thereafter(RC and CR). Harvest yields in RC and CR were positively correlated to leaf area and no. of leaves or stolon length per plant but negatively done to leaf area and stolon length per g. It is concluded that weak persistence or overdominance of white clover in pasture can be controlled by alternation of infrequent and then frequent defoliation or reverse.

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Changes in physicochemical characteristics of sorghum among different varieties and at different harvest stages after heading (품종 및 수확시기를 달리한 수수의 이화학 특성 변화)

  • Kim, Sung Kook;Jung, Gun Ho;Lee, Jae Eun;Lee, Byoung Kyu;Woo, Koan Sik
    • Korean Journal of Food Science and Technology
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    • v.50 no.3
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    • pp.260-266
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    • 2018
  • The change in physicochemical characteristics of sorghum among different varieties and at different harvest stages after heading were evaluated. The proximate compositions and chromaticity of sorghum were significantly different, depending on their varieties and harvesting times. Water solubility was high in sorghum harvested on the $50^{th}$ day after heading; however, the swelling power was reversed. Total polyphenol content of Hwanggeumchal, Nampungchal, and Sodamchal was 17.60-24.62, 17.88-24.67, and 17.37-22.37 mg GAE/g, respectively, and the flavonoid content was 10.43-13.50, 9.68-13.85, and 9.52-12.46 mg CE/g, respectively. The DPPH radical-scavenging activities were 9.94-16.21, 11.42-16.54, and 10.12-15.16 mg TE/g, respectively, and the ABTS radical-scavenging activities were 8.85-19.99, 10.51-20.24, and 9.71-17.93 mg TE/g, respectively. Total polyphenol and flavonoid contents, and radical scavenging activities were high in sorghum harvested on the $40-50^{th}$ day after heading. As a result, it is considered that sorghum varieties such as Hwanggeumchal, Nampungchal, and Sodamchal should be harvested on the $40^{th}$ day after heading.

Effects of Planting and Harvest Times on the Forage Yield and Quality of Spring and Summer Oats in Mountainous Areas of Southern Korea (남부산간지에서 봄과 여름 조사료 귀리의 파종과 수확 시기에 따른 조사료 품질과 생산성 변화)

  • Shin, Seonghyu;Lee, Hyunjung;Ku, Jahwan;Park, Myungryeong;Rha, Kyungyoon;Kim, Byeongju
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.66 no.2
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    • pp.155-170
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    • 2021
  • Oats (Avena sativa L.) represent a good forage crop for cultivation in regions with short growing periods and/or cool weather, such as the mountainous areas of southern Korea. In this study, using the Korean elite summer oat varieties 'High speed' and 'Dark horse', we aimed to determine the optimal time to plant and harvest forage oats seeded in spring and summer in a mountainous area. Seeds were planted three times from late February and early August at 9- or 10-days intervals, respectively, and plants were harvested three times from late May to October at 10-day intervals. The experiment was carried out in an upland field (Jangsu-gun Jeonbuk) in 2015 and 2016. We investigated the changes in forage yield (FY) and quality [crude protein (CP) and total digestible nutrient (TDN) contents] based on the time of planting and harvest. Neither the forage quality nor yield of either spring and summer oats was significantly influenced by the time of planting. The CP of spring oats harvested three times at 10-day intervals from late May was 12.0%, 8.2%, and 6.5%, thereby indicating a reduction with a delay in the time of harvest. In summer oats, CP ranged from 8.4% to 8.7%, although unlike CP in spring oats, was not significantly influenced by the time of harvest. For both forage types, harvest time had no significant effect on TDN. The FY of spring oats harvested in late May and early and mid-June was 10.2, 18.7, and 19.5 ton ha-1, respectively, with that of oats harvested on the latter two dates being significantly increased by 83% and 91%, respectively, compared with that in late May. Similarly, the FY of spring oats harvested in late October and early and mid-November was 7.1, 12.5, and 12.1 ton ha-1, respectively, with that of oats harvested on the latter two dates being significantly increased by 75% and 71%, respectively, compared with that in late October. Taking into consideration forage yield and quality (not less than 8% CP), it would be profitable to plant spring oats in the mountainous areas of southern Korea until March 15 and harvest around June 10, whereas summer oats could be beneficially planted until August 25 and harvested from early November.

Effect of the Double Cropping at High Altitude Area Which was Cultivated Suitable Forage Crop (고랭지에 적합한 사료작물 2모작 작부체계에 관한 연구)

  • 한성윤;김대진
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.20 no.3
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    • pp.147-154
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    • 2000
  • This study was conducted to increase the utility and productivity of forage crops at high altitued areas. For that purpose, 21 cultivars of corn and 2 cultivars of rye were cultivated for 3 years using a randomized block designed with 3 replications. The results obtained were as follows. 1. In the Taekwallyong area (800m above sea level) which has a short frostless period, all the seeding and harvest of corn must be finished within about 135 days between mid May, the time of the last frost, and late September, the time of the first frost 2. It was relatively safe for the early maturity cultivar(ll0days) and the medium maturity cultivar(l20days), compared to the late maturity cultivar(l30days) which might have had the possibility of an overlapping period between the time of harvest and the first frost in high altitude areas 3. The productivity of forage corn, which is the most efficient crop for capturing solar energy, varied significantly with the climate circumstances but the productivity of Taekwallyong showed similar results of 19 M/T/ha, compared with 20 M/T/ha in Suwon from the '96-'98 study 4. Rye could be cultivated in high altitude areas and when corn was raised as a second crop after rye in the same year, it was possible to increase the productivity of dry matter yield by 20% through double cropping(P < 0.05). (Key words : Cropping system, Corn, Rye, Forage production)

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Handling of Harvested Broiler (육계 출하 후 관리)

  • Kim Dong-Hun;Yoo Young-Mo;Cho Soo-Hyun;Park Beom-Young;Kim Yong-Kon;Lee Jong-Moon
    • Food Science of Animal Resources
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    • v.24 no.4
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    • pp.424-432
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    • 2004
  • The handling and transport of broiler birds from farm to the processing factory is known to cause injury and dead. The preslaughter period can be compromised through thermal stress, emotional stress, starvation, dehydration, metabolic exhaustion, trauma to the skin and bone fraction resulting in bruising and dead. This paper focuses on the control points of individual post Harvest stages by reference to recent literature. In catching, the injuries and deads are caused from fracture of bone, skin damage and hipbone dislocation. It can be improved by training the catchers. The primary factor of dead during transportation is from thermal stress. It is related to stocking density, type of crate and vehicle, ventilation and transportation time. Of the factors, the ventilation is very important. The holding place should be built with consideration of protection from the hostile external environment. There were not much progresses in this area, however, many researches are conducting to focus on animal welfare in European Union. Recently, it is rapidly changed in marketing custom from whole carcass to portion cut in Korea. This means the increase of economic loss due to the mishandling at post harvest. The systematic approach is demanded for this area.