• Title/Summary/Keyword: 옥상농업

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Assessment of Plant Drought Tolerance for Extensive Green Roof (저관리 경량형 옥상녹화 식물의 내건성 평가)

  • Park, Seong-Sik;Choi, Jaehyuck;Park, Bong-Ju
    • Korean Journal of Organic Agriculture
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    • v.24 no.4
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    • pp.787-795
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    • 2016
  • The purpose of this study was to assess drought tolerance of groundcover plants for extensive green roof. Form July to November 2013, plant height, chlorophyll content, soil moisture, evapotranspiration and survival rate was measured. As results, after unirrigation started, Aster koraiensis reached 0% of soil moisture earliest followed by Sedum kamtschaticum, Hemerocallis fulva, Hylotelephium spectabile, Iris sanguinea, Hosta longipes and control. Among the plants, A. koraiensis withered earliest on 19th day of unirrigation experiment, followed by H. longipes and H. fulva (27th day); and I. sanguinea (29th day). S. kamtschaticum and H. spectabile survived even after 120th day of the experiment. As for chlorophyll content, I. sanguinea showed constant values in early stage than rapidly decreased right before its withering. Chlorophyll content of A. koraiensis and H. fulva showed rapid decrease from the beginning, while that of H. spectabile and S. kamtschaticum showed continuous reduction for first 30 days and the reduction was slowed down since then. In conclusion, H. longipes, I. sanguinea and H. fulva were found most applicable for extensive green roof considering scenic aspect.

Development of Urban Smart Farm (도심형 스마트 농장 개발)

  • Kim, Gwan-Hyung;Kim, Young-Bu;Choi, Hyun-Deok;Shin, Dong-Suk
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2016.10a
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    • pp.676-677
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    • 2016
  • 본 논문은 에너지 자립 도심형 스마트 농장을 개발하여 도시형 농업 환경을 구축하기 위하여 기존 건물의 여유 공간인 옥상에 비닐하우스를 설치하여 도심형 스마트 농장 플랫폼을 개발하고자 한다. 도심형 스마트 농장 관제용 HMI 플랫폼 개발하여 도심형 스마트 농장의 내외부 환경정보를 취득하기 위하여 각종 센서(강우, 온/습도, CO2 등) 정보를 계측하여 비닐하우스 내부 환경을 관리할 수 있는 HMI 플랫폼을 개발 하고자 한다. 뿐만 아니라 도심형 스마트 농장 모바일 원격감시 시스템 개발하여 모바일 기반의 스마트 농장의 관제용 HMI 플랫폼을 원격에서 감시 및 제어할 수 있는 모바일 원격 감시시스템 개발하여 도심형 스마트 농장의 실현 가능성을 제시하고자 한다.

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A Study on the Space Forming through Urban Agricultural Theory, Paradigm and Typology (도시농업의 이론, 패러다임, 유형을 통한 공간연구)

  • Chang, Dong-Min
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.2
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    • pp.501-513
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    • 2017
  • This study analyzed the situation of urban agriculture development through theories, paradigms, and typology to determine the application frequency and development keywords about space forming. The results showed that urban space by distance determines "Dimension of space forming" through self-production, public-production, and nation-social operation. Second, the complex space by shape determine "Identity of space forming" through "Flat Shape" for using the widespread land, "Compact Shape" for overcoming the small and poor land, and "Fusion of Flat Compact Shape" for systematic use between Flat and Compact. Third, building and interior space according to location determine the "Utility of space forming" through land, roof, wall, veranda, interior, and infrastructure space. The concepts about space forming of urban agriculture have an organic correlation and will be developed sustainably by the evolved cases from now on. In addition, space forming of urban agriculture produces new creation space by various fusion processes and will be a development trend of new urban agriculture.

A Comparative Study on the Recognition of Urban Agriculture between Urban Farmers and Public Officials (도시농업인과 공무원의 도시농업 인식 비교·평가)

  • Park, Won-Zei;Koo, Bon-Hak;Park, Mi-Ok;Kwon, Hyo-Jin
    • Journal of the Korean Institute of Landscape Architecture
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    • v.40 no.4
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    • pp.90-103
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    • 2012
  • The aim of this study is to be able to understand the problems within the urban agriculture policy promoted by the Government and local autonomous entity base on the comparison of the consciousness of the urban agriculture between urban farmers and public officials and to inquire into the further revitalization scheme in the end. For this purpose, this study drew implications through studying latest trend and the legislation of domestic and foreign urban agriculture and then conducted a questionnaire survey of urban farmers and public officials. Because of this research, the revitalization schemes of urban agriculture are as follows: First, it's necessary to secure the usable arable land, such as the green roof, community garden, as well as urban agriculture park, etc. Second, it is necessary to establish the urban agriculture relations act suited for the actual circumstances of our country and to back up the legislation at an institutional, technological level in terms of a nation in order to secure the durability of urban agriculture. Third, it is advisable to make a proposal about the problems in time of activities for cultivation by forming a network between urban farmers and public officials and to prepare the plan for the active exchange of farming technologies. Fourth, it's necessary to activate the community gardens by supplying the education through cultivation method & its management method, and a variety of urban-agriculture-participation programs. Fifth, it is necessary to set up the specialized and practical education through an institute for landscape architecture. Sixth, it is necessary to induce the spontaneous participation in urban agriculture from urban farmers accompanied by the activities for promotion that are worth arousing urban farmers' interest. Lastly, it is also necessary to establish a legal basis of urban agricultural parks and facilities as well as to promote a search for multilateral policies and their practice so that the further urban agriculture can be stably continued within city boundaries.

Monitoring of Biosafety of Agricultural Products from Urban Community Gardens and Roof Gardens in Korea (도시텃밭과 옥상정원에서 재배되는 농산물의 생물학적 안전성 조사)

  • Kim, Jin-Won;Yu, Yong-Man;Na, Won-Seok;Baljii, Enkhjargar;Choi, In-Wook;Youn, Young-Nam;Lee, Young-Ha
    • Horticultural Science & Technology
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    • v.32 no.3
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    • pp.400-407
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    • 2014
  • Urban farming supplies emotional stability and fresh vegetables to participating persons, however, no information regarding the biosafety of agricultural products from urban farming is available. Here, we collected 260 samples of Chinese cabbages and lettuce from 4 urban community gardens and 6 roof gardens in Seoul from September through October 2012, and monitored the microbiological and parasitological contamination quantitatively and/or qualitatively. The mean counts of total aerobic bacteria and coliforms were $6.1{\pm}0.8\;log\;CFU{\cdot}g^{-1}$ ( range, $5.4{\pm}0.6{\sim}7.1{\pm}0.8\;log\;CFU{\cdot}g^{-1}$) and $4.0{\pm}0.7\;log\;CFU{\cdot}g^{-1}$ (range, $2.3{\pm}0.6{\sim}6.1{\pm}0.9\;log\;CFU{\cdot}g^{-1}$), respectively. Coliforms were detected on 59.6% among 260 vegetable samples. There were no significant differences in the contamination levels of total aerobic bacteria and coliforms between the Chinese cabbages and lettuce, whereas both levels of vegetables from urban community gardens were higher than those of roof gardens (p > 0.05). Escherichia coli was isolated at 3.1% among whole vegetables, and contamination level was $1.5{\pm}0.2\;log\;CFU{\cdot}g^{-1}$. Among foodborne pathogens, Staphylococcus aureus was detected in 1.5%, however, Salmonella spp., Listeria monocytogenes and E. coli O157:H7 were not detected on any of the vegetable samples. We also found undefined parasite eggs from two samples of Chinese cabbages (0.8% of total vegetables we tested). From these study, we found the presence of microbial contamination of agricultural products from urban farming, thus we need further concern to improve the biosafety during production of agricultural products.

Effect of Companion Planting with Aromatic Plants on the Growth and Pest Control of Lettuce(Lactuca sativa) in Rooftop Urban Agriculture (옥상 도시농업에서 방향식물과의 공영식재에 따른 상추의 생육 및 해충방제 효과)

  • Han Gil Kim;Sun Yeong Lee;Yong Han Yoon;Jin Hee Ju
    • Journal of Environmental Science International
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    • v.33 no.1
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    • pp.59-65
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    • 2024
  • The objective of this study were to assess rooftop urban agriculture and analyze the differences in soil, growth, physiology, and productivity to elucidate the effect of companion planting with various plants, including lettuce (Lactuca sativa), rosemary (Salvia rosmarinus), marigold (Tagetes patula), Korean perilla (Perilla frutescens), and garlic chives (Allium senescens). Measurements were taken every other week from May to August 2023, totaling eight measurement. Regarding the characteristics of the soil planted with lettuce and aromatic plants, the combined planting of lettuce and garlic chives created a favorable soil environment for plant growth. Consequently, the best growth was observed when lettuce and garlic chives were companion planted. Companion planting of lettuce and garlic chives appears to be the most efficient concerning growth and physiology. The productivity of companion planting lettuce and aromatic plants also showed high-quality lettuce when lettuces and garlic chives were companion planted. Therefore, companion planting of lettuces and garlic chives in rooftop urban agriculture is suitable for growth, physiology, and productivity.

Effect of Vermicast Application of Earthworm Feeding Food Waste in Vegetable Plants (Radish and Chinese Cabbage) Growth (음식물 쓰레기를 먹이로 한 지렁이분립이 채소류(열무와 엇갈이배추) 생육에 미치는 영향)

  • Choi, I-Jin;Kwon, Hyuk-Hyun;Lee, Han-Ho;Son, Hyoung-Gi;Hong, Sang-Kil;Park, Yu-Soon;Kang, Jong-Woon
    • Korean Journal of Organic Agriculture
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    • v.20 no.4
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    • pp.715-725
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    • 2012
  • This study was performed to make the method of food waste manufacturing for feeding to earthworm and different ratio of earthworm cast was investigated for applying vegetable plants that cultivated in a family or roof garden. We made conventional treatment of gardening soil and prepared soils with earthworm cast (the only fertilizer) at 30, 50, 70 and 100% for planting vegetable plants and then we studied its growth feature. The treatment was repeated three times with 12 weeks for each time. The cultivation of radish and chinese cabbage were managed at the same cultivation level for RDA standard cultivation method, and each sample of soils and plants was analyzed by appropriate analysis method. The growth investigation was performed 12 week after planting, and as for growth characteristics, height, leaf diameter, leaf number, leaf length, fresh weight and dry weight were investigated. The chemical characteristics, soils and plants, were surveyed. As for the growth characteristics investigated, radish and chinese cabbage showed the biggest growth in 70% and 50% treatment with average growth of all characteristics, height, leaf diameter, leaf number, leaf length, fresh weight and dry weight, respectively. Applying these results, a new equation for vermicast recommendation for radish and Chinese cabbage in summer (June-August) was presented. The earthworm cast 50% level with the gardening soil showed the high production in chinese cabbage. In case of radish, earthworm cast 70% with gardening soil level showed great growth, significantly.

Effects of Companion Planting with Tagetes patula on the Growth and Pest Control of Brassica campestris in Rooftop Urban Agriculture (옥상 도시농업에서 메리골드의 동반식재 비율이 배추의 생육 및 해충방제에 미치는 영향)

  • Park, Sun-Young;Min, Kyung-Min;Yoon, Yong-Han;Ju, Jin-Hee
    • Journal of Environmental Science International
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    • v.31 no.10
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    • pp.825-832
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    • 2022
  • This study aimed to explore companion planting to improve vegetable productivity on extensive green roofs through urban agriculture with limited substrate depth. From May to July 2021, the study conducted on the rooftop to evaluate the effects of marigold (Tagetes patula) planting ratio on the growth and pest control of cabbage (Brassica campestris). The experiment plot measured 1 m in width × 1 m in length × 0.25 m in height and 0.2 m in substrate depth. Fifteen plots were planted in varying proportions of cabbage and marigold for three repetitions per treatment: cabbage control (CC), 2:1(C2M1), 1:1(C1M1), 1:2(C1M2), and marigold control (MC). We found that companion planting marigolds with cabbage significantly increased cabbage growth and reduced pest infestation. The study revealed that C1M1, when cabbage and marigold have the same proportion, is an efficient companion planting ratio. Companion planting, in which non-crop vegetation manages pests and increases crop productivity, improves natural pest control and preserves biodiversity on rooftop urban agriculture.

Effect of Planting Patterns on the Cultivation of Eggplant (Solanum melongena) and Marigold (Tagetes erecta) for the Activation of Eco-Friendly Rooftop Urban Agriculture (친환경 옥상 도시농업 활성화를 위한 배식모형에 따른 가지(Solanum melongena)와 메리골드(Tagetes erecta) 식재효과)

  • Jae-Hyun Park;Sang-Il Seo;Deuk-Kyun Oh;Yong-Han Yoon;Jin-Hee Ju
    • Journal of Environmental Science International
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    • v.33 no.6
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    • pp.417-425
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    • 2024
  • This study investigated the effects of various planting models on the joint cultivation of eggplant (Solanum melongena) and marigold (Tagetes erecta)to enhance sustainable rooftop urban farming. Rooftop agriculture is increasingly valued to boost the food supply and benefit the environment. Integrating such practices into urban planning is viewed as a way to sustainably manage resources and improve the food-energy-water cycle in cities. The experiment was conducted on a rooftop in Chungju, South Korea from May to August. Four different planting setups were used: central eggplant with peripheral marigold (SET), eggplant with a protective net (SIC), central marigold with peripheral eggplant (TES), and control with only eggplant (CON S). These models tested the effects of companion planting versus monoculture using a lightweight soil mix ideal for rooftops made from cocopeat and perlite and enriched with organic fertilizer. Measurements focused on soil conditions and plant health and assessed soil temperature, moisture, conductivity, plant height, width, and leaf size. The results indicated that the SET modelyielded the best growth. This setup benefited from marigold pest control properties and its ability to improve soil conditions by enhancing moisture and nutrient levels and aiding eggplant growth. These findings underscore the potential of mixed planting on rooftops and suggest that such approaches can be effectively incorporated into urban agriculture to boost yield and environmental sustainability. This study supports the idea that diverse planting methods can significantly affect plant growth and promote urban greening and food security.

A study on vegetation and soil environmental characteristics of green roof in Daejeon Metropolitan City (대전광역시 옥상녹화 지역의 식생현황 및 토양환경 특성에 관한 연구)

  • Lee, Sang-Jin;Park, Gwan-Soo;Lee, Dong-Kun;Jang, Seong-Wan;Park, Beom-Hwan;Lee, Hang-Goo;Yun, Joon-Young;Jang, Kwan-Woo;Lee, Seung-Woo;Lee, Ho-Young;Kwon, Oh-Jung;Lee, Sook-Mee;Kil, Sung-Ho
    • Korean Journal of Agricultural Science
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    • v.38 no.4
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    • pp.641-649
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    • 2011
  • This study was to analyze the soil environmental characteristics and vegetation status of green roof in Daejeon Metropolitan City. The investigated floras of vascular plants are 17 families, 26 genera, 28 species in Seo-Gu Daejeon District Office Building (SG), 25 families, 49 genera, 56 species in Galma Public Library (GP), and 34 families, 57 genera, 60 species in Daejeon City Hall (DC) respectively. Although the larger area shows the more numbers of species in introduced plants and naturalized plant, the naturalized plant ratios were similar with each other. They were 10.71%, 10.71%, and 11.67% at SG, GP, and DC respectively. As a result of analysis on soil physical property, soil depths including vegetation soil and drainage soil of 3 green roofs were 30cm. The depths of vegetation soil at SG, GP, and DC were 0~8cm, 0~10cm, 0~10cm respectively. As a results of soil chemical properties of our study, soil pH of vegetation soil and drainage soil were a range of 6.42 and 7.43, and a range of 6.55 and 7.43 on the average respectively. Available-P contents of vegetation soil and drainage soil were a range of 153.33 and 366.33mg/kg, and a range of 136.67 and 242.67 mg/kg which is very high, respectively. Carbon contents in soil at vegetation soil and drainage soil were a range of 3.16 and 6.38%, and a range of 1.63 and 2.47% respectively. Carbon storage per square meter within 30 cm were 2.76 kg, 2.99 kg, and 3.66 kg at SG, GP, and DC respectively.