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실내 도시농업에서 혼합파종 비율에 따른 어린잎채소의 생육 및 배지 양분 변화 KCI 등재

Changes in Growth of Microgreens and Substrate Nutrients by Seed Mixture Rate in Indoor Agriculture

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한국환경과학회지 (Journal of Environmental Science International)
한국환경과학회 (The Korean Environmental Sciences Society)
초록

This study aimed to evaluate the growth of Cichorium intybus, Brassica juncea, and Lactuca sativa at varying seed ratios, and to suggest an efficient management plan for sustainable indoor agriculture systems. It was treated with mixed sowing as follows: 30 chicory seeds (chicory alone: CC), 22 chicory seeds + 8 lettuce seeds (C3L1), 20 chicory seeds + 10 lettuce seeds (C2L1), 15 chicory seeds + 15 lettuce seeds (C1L1) as intraspecies, and 30 mustard seeds (mustard alone: MC), 22 mustard seeds + 8 lettuce seeds (M3L1), 20 mustard seeds + 10 lettuce seeds (M2L1), 15 mustard seeds + 15 lettuce seeds (M1L1) as interspecies. The study identified the competitive response in seed germination between Cichorium intybus and Lactuca sativa, and in the C3L1 experimental group, Lactuca sativa had the highest leaf length, root length, chlorophyll content, and fresh weight. Therefore, the higher the ratio of Cichorium intybus, the higher the growth and productivity of Lactuca sativa; however, higher the ratio of Lactuca sativa, the lower the growth of Cichorium intybus. Furthermore, the nitrogen and potassium content in the substrate was the highest in the C3L1 experimental grorp which had the highest seeding rate of the Cichorium intybus. Comparing the groups Brassica juncea and Lactuca sativa, the higher the seeding ratio of Lactuca sativa, the higher the growth and productivity of Brassica juncea. Therefore, a companion seeding of Brassica juncea and Lactuca sativa is beneficial; this could be effective in having a high seeding ratio of Lactuca sativa.

목차
Abstract
1. 서 론
2. 재료 및 방법
    2.1. 재료
    2.2. 방법
3. 결과 및 고찰
    3.1. 동종간 혼합파종에 따른 초기 생육 특성과배지 양분 변화
    3.2. 이종간 혼합파종에 따른 초기 생육 특성과 배지 양분 변화
4. 결 론
감사의 글
REFERENCES
저자
  • 주진희(건국대학교 녹색기술융합학과) | Jin-Hee Ju (Department of Green Technology Convergence, College of Science & Technology, Konkuk University, Chungju 27478, Korea)
  • 박선영(건국대학교 대학원 녹색기술융합학과) | Sun-Young Park (Department of Green Technology Convergence, Graduate School of Konkuk University, Chungju 27478, Korea)
  • 송희연(건국대학교 대학원 녹색기술융합학과) | Hee-Yeon Song (Department of Green Technology Convergence, Graduate School of Konkuk University, Chungju 27478, Korea)
  • 윤용한(건국대학교 녹색기술융합학과) | Yong-Han Yoon (Department of Green Technology Convergence, College of Science & Technology, Konkuk University, Chungju 27478, Korea) Corresponding author