• 제목/요약/키워드: leaf transmittance

검색결과 24건 처리시간 0.015초

CEM BIO Film 피복시설의 환경특성과 풋고추 생육 (Greenhouse Environment and Growth of Green Pepper (Capsicum annuum L.) in Greenhouse Covered with CEM BIO Film)

  • 전희;김경제;권영삼;김현환;이시영
    • 생물환경조절학회지
    • /
    • 제9권3호
    • /
    • pp.161-165
    • /
    • 2000
  • CEM BIO P.E.필름으로 피복된 시설에서 300~1,100nm 사이의 분광투과율은 일반 P.E. 필름으로 피복된 시설보다 높았다. 전반적으로 시설내 광투과율은 이중피복, 골조, 기타시설물 때문에 노지에 비하여 절반 수준을 나타냈다. 순복사량은 CEM BIO P.E. 필름 피복시설이 5,424.5W.m$^{-2}$ 로서 일반 P.E.필름 피복시설보다 2.9% 낮았고, 광합성유효복사 투과율은 CEM BIO P.E.필름 피복시설이 3,861.2W.n$^{-2}$ 로서 일반 P.E. 필름 피복시설보다 3.8% 높았으며, 무가온기의 적산최저온도는 CEM BIO P.E. 필름 피복시설이 일반 P.E. 필름 피복시설보다 1일 평균 0.35$^{\circ}C$ 높았다. 정식후 30일의 풋고추 생육은 CEM BIO P.E. 필름 피복시설에서 초장, 경경, 엽면적, 생체중, 건물중 및 군락생산구조가 우수하였고, 과실은 과중이 11.28g으로 일반 P.E. 필름 피복시설 보다 1.25g 무거웠으며, 상품율은 2.7% 높았다. 1997년 11월 19일부터 1998년 3월 3일 사이의 수량은 CEM BIO P.E. 필름피복시설에서 7.4% 많았으나 전체적인 수량은 차이를 보이지 않았다.

  • PDF

시설양묘에 적용을 위한 내장산 굴거리 나무 군락내 치수의 생장 특성 (Growth Performances of Seedlings of Daphniphyllum macropodum in Naejang National Park for Container Seeding Production)

  • 정진철;정지영;최정호;전경수;배종향
    • 생물환경조절학회지
    • /
    • 제20권4호
    • /
    • pp.365-372
    • /
    • 2011
  • 본 조사는 내장산 국립공원내 굴거리나무 군락지를 대상으로 시설양묘를 위한 기초자료를 구명하고자 광환경이 다른 조건에서 자라고 있는 치수의 생장특성을 조사하였다. 굴거리나무 군락지의 생육 환경은 전형적인 하계 다우형 기후를 보였고, 토양은 미사질양토로, 유기물 함량 11.42~15.61%, 전질소 함량 0.50~0.76%, 양이온 치환용량(C.E.C) 18.92~23.32cmol/kg, pH 4.85~5.58 범위를 나타내었다. 조사구별 전광대비 광 환경의 차이는 상대 투광율이 조사구 A가 71~76%, 조사구 B는 37~42%, 조사구 C는 65~70%, 조사구 D는 28~33%로 나타났다. 굴거리나무의 치수는 모수의 수관 밑과 경사진 곳에 집중적으로 분포하는 경향을 보였고, 광환경 조건이 상대적으로 높은 조사구 A와 C가 1,550본/ha, 1,250본/ha이었으며, 총 물질 생산량도 조사구 A가 5.37g, 조사구 C가 5.29g로 광환경 조건이 낮은 조사구 B와 D의 4.42~4.51보다 높게 나타났다. T/R율은 1~2, 엽면적비는 $139.71{\sim}183.50cm^2{\cdot}g^{-1}$, 엽면적비는 $39.68{\sim}60.66cm^2{\cdot}g^{-1}$, 엽건중비는 $0.28{\sim}0.33cm^2{\cdot}g^{-1}$ 범위 내에서 광량이 적어질수록 높게 나타났다. 굴거리나무 치수의 발생과 생장은 토양내 유기물 함량보다 광량이 많은 영향을 미치는 것으로 판단되며 시설양묘 적용시 전광대비 65~70% 이상의 광환경의 관리가 굴거리나무의 초기 생장에 중요한 역할을 미칠 것으로 판단된다.

비닐하우스와 관행재배 인삼의 생육특성 및 진세노사이드 함량 비교 (Comparison of Growth Characteristics and Ginsenoside Content of Ginseng (Panax ginseng C. A. Meyer) Cultivated with Greenhouse and Traditional Shade Facility)

  • 이성우;김금숙;현동윤;김용범;김장욱;강승원;차선우
    • 한국약용작물학회지
    • /
    • 제19권3호
    • /
    • pp.157-161
    • /
    • 2011
  • Growth characteristics, root yield and ginsenoside contents of 3-year-old ginseng in greenhouse shaded by $30^{\circ}$ sloped-curtain made of aluminum were compared to traditional shade facility in order to develop cultural practice for organic ginseng. Light transmittance ratio in greenhouse with $30^{\circ}$ sloped-curtain shade was distinctly lower than that of traditional shade from sunrise to 9 a.m., while its ratio in greenhouse was higher than traditional shade since 9 a.m. due to the reflection of light. Air temperature of greenhouse was $1.3^{\circ}C$ higher than that of traditional shade on the first ten days of August due to more reflected light. Root yield of greenhouse was 44% higher than that of traditional cultivation because of the inflow of reflected light and the decrease of disease of Alternaria and Anthracnose by blocking rainfall. Dry matter partitioning ratio of rhizome and lateral root were increased in ginseng cultivated at greenhouse due to longer survival time in leaf than traditional cultivation. Total ginsenoside contents cultivated at greenhouse was decreased in the part of taproot, while it was increased in the part of lateral and fine root compare to traditional cultivation. Individual ginsenoside contents between greenhouse and traditional cultivation showed significant difference more frequent in fine root than taproot and lateral root. Total ginsenoside contents including $Rb_1$, $Rb_2$, Rc, Rd, Re, Rf, $Rg_1$, and $Rg_2$ in whole root of 3-year-old ginseng did not showed significant difference by greenhouse and traditional cultivation.

Effects of Natural Bioactive Products on the Growth and Ginsenoside Contents of Panax ginseng Cultured in an Aeroponic System

  • Kim, Geum-Soog;Lee, Seung-Eun;Noh, Hyung-Jun;Kwon, Hyuck;Lee, Sung-Woo;Kim, Seung-Yu;Kim, Yong-Bum
    • Journal of Ginseng Research
    • /
    • 제36권4호
    • /
    • pp.430-441
    • /
    • 2012
  • This study was conducted to evaluate the effects of natural bioactive products such as Manda enzyme (T1), Yangmyeongwon (T2), effective microorganisms (T3), and Kelpak (T4) on the growth and ginsenoside contents of Panax ginseng cultured in an aeroponic system using a two-layer vertical type of nutrient bath under natural light conditions. The growth of ginseng plants showed specific characteristics according to the positions in which they were cultured due to the difference of light transmittance and temperature in the upper and lower layers during aeroponic culture in a two-layer vertical type of system. The growth of the aerial part of the leaves and stems of ginseng plants cultured in the lower layer (4,000 to 6,000 lx, $23^{\circ}C$ to $26^{\circ}C$) of the nutrient bath was observed to be superior to that of the ginseng plants cultured in the upper layer (12,000 to 15,000 lx, $25^{\circ}C$ to $28^{\circ}C$). The leaf area was significantly larger in the treatment of T2 and T4 (46.70 $cm^2$) than with other treatments. Conversely, the values of the root weight and root diameter were higher in ginseng plants cultured in the upper layer of the nutrient bath. The root weight was significantly heavier in the treatment of T4 (6.46 g) and T3 (6.26 g) than with other treatments. The total ginsenoside content in the leaves and roots was highest in the ginseng plants cultured by the treatment of T1, at 16.20%, while the total ginsenoside content obtained by other treatments decreased in the order of T4, T5 (control), T2, and T3, at 13.21%, 12.30%, 14.84%, and 14.86%, respectively. The total ginsenoside content of the ginseng leaves was found to be significantly higher in the treatment of T1 in the lower layer of the nutrient bath, at 15.30%, while the content of the ginseng roots in the treatments of T3 and T4, at 1.27% and 1.23%, respectively, was significantly higher than in other treatments in the upper layer of the nutrient bath.