• 제목/요약/키워드: Bed plant

검색결과 472건 처리시간 0.03초

개맨드라미의 파종과 정식기가 생장 및 개화에 미치는 영향 (Effect of Sowing Date on Growth and Flowering of Celosia argentea)

  • 이정호;조동광;송천영
    • 한국자원식물학회지
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    • 제19권1호
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    • pp.120-125
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    • 2006
  • 한국 자생 개맨드라미의 파종시기에 따라서 개화 및 생육에 미치는 영향을 조사하여 생리적 특성을 파악하고 재배법을 확립하기 위하여 1월부터 8월까지 1개월 간격으로 파종하였다. 2월과 3월에 파종하여 4월과 5월에 정식한 개맨드라미의 초장은 69.1cm 이하로 짧고, 개화소요일수가 31일로 단축되었으며 측지발생이 많아서 개화수도 많았으나, 화서장이 짧고 경경도 가늘었다. 5윌부터 6월에 파종한 것은 개화소요일수가 58일로 길었고, 초장도 94.1cm에서 122.0cm로 길었다. 따라서 개맨드라미는 봄의 단일조건에서 개화가 촉진되는 상대적 단일식물로 판단된다. 시기별로 화단 조성을 위하여 개맨드라미를 파종할 경우 여름부터 가을까지의 키가 작고 총총한 화단 조성을 위해서는 2-3월에 파종하여 4-5월에 화단에 정식하는 것이 적당하고, 초장이 긴 가을 화단 식물 조성이나 절화용으로 활용할 경우는 4-5월에 파종하여 6-7월에 포장에 정식하는 것이 적당하다.

한강하구에서 하도변화와 식물천이의 상호작용에 따른 습지형성 기작 (Mechanism of Wetland Formation according to Interaction of River Bed Fluctuation and Plant Success in the Hangang River Estuary)

  • 이삼희;윤석준
    • 한국습지학회지
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    • 제24권4호
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    • pp.320-330
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    • 2022
  • 하구둑과 같은 횡단구조물이 없는 자연 하구인 한강하구는 바다와 하천을 연결하는 생태통로로서 생물종 다양성이 풍부하여 생태 가치가 높다. 한강하구에서는 유사분급이 입체적으로 다양하게 분포하여 기후변화 및 하천개발 등과 같은 여러 변화 요인에 따라 하상구조가 민감하게 변하는 특성이 나타난다. 이러한 현상은 하도육역화와 하도복단면 발달의 원인이 된다. 국가습지보호지역으로 지정된 장항습지에서는 하도 지형변화에 따라 식물천이가 현저하다. 본 연구 목적은 이에 대한 현장 조사를 실시하여 습지형성 기작을 규명하는 데 있다. 조사연구 결과, 인위적으로 조성된 것으로 추정되는 초기의 장항습지가 이후 성장하는 과정에 유량에 따른 하도 미지형 변화와 식물천이 사이에 상호 밀접하게 작용하는 것으로 드러났다. 즉 하상의 주재료(모래)가 아닌 부재(Sub-materials of river bed)인 점성의 표층 하상재료(워시로드 성질의 미세립사)가 선구식물(새섬매자기 등)에 포집되면서 복단면 형태(습지)로 성장하는 데 매개 역할을 한 것으로 나타났다. 습지가 하도복단면 형태로 발달한 후에는 선구식물이 다른 식물종으로 천이되는 양상도 나타났다.

N하수처리장 정화조.분뇨케익의 재활용을 위한 지렁이 사육 조건검토 (Investigation on management conditions for vermicomposting of night soil in Field at N Sewage Water plant)

  • 김경환;이철범;최훈근;배재근
    • 유기물자원화
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    • 제8권2호
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    • pp.102-113
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    • 2000
  • 본 연구에서는 지렁이처리기술의 실증실험을 통하여 규모의 확대가능성을 파악하고 아울러 유기성오니 처리에 대한 대책방안을 제시하기 위한 목적으로 실제 현장에 사육상을 설치하여 지렁이의 이식방법에 따른 지렁이의 거동 및 정화조.분뇨오니의 처리효율에 대하여 비닐하우스상과 비교검토하였다. 그 결과, 노지사육상에서의 지렁이의 지렁이사육상의 6개월간 먹이 섭취율은 0.27~0.33톤/$m^2$ 로 나타나고, 분변토 발생량은 사육상 6개월간 단위 면적당 평균 0.15톤/$m^2$이었으며 급이된 분뇨케잊의 약 45.5% (44.1~46.7%)로 나타나 절반 정도가 분변토로 배출되어, 비닐하우스 사육상간의 차이는 보이지 않았다. 노지 사육상에서의 지렁이 서식밀도는 최대밀도가 $7kg/m^2$을 기록한 적도 있으나 평균적으로 약 $6.5kg/m^2$을 나타내었고 계절별로는 봄과 가을에 밀도가 높으나 여름에는 다소 낮아지는 경향을 보였으며, 노지사육상에서의 지렁이의 연령분포도는 성체가 많고 유체가 적게 나타나는 역피라미드 형으로 나타났다. 지렁이를 이용하여 처리하는 당해사업소(하우스시설 1200평, 노지 7000평)에는 매립처리비용 및 운반비로 소요되는 비용의 절감효과와 생산된 분변토를 판매한 수익으로 월간 960만원의 수입이 창출되었을 뿐만 아니라 기존의 매립처리방법에 비하여 환경친화적인 것으로 판단되었다.

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수초·골재 하수처리장의 투수속도 (The Infiltration Velocity of a Sewage Disposal System with Water Plant and Gravel Bed)

  • 정동양
    • 한국환경복원기술학회지
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    • 제6권3호
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    • pp.29-34
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    • 2003
  • This paper describes the effects of sewage amount, temperature, and years in operation on the infiltration rate of a sewage disposal system. The self-purifying sewage disposal system, which is typically used in rural areas, consists of reeds and fine gravel. Water plants are planted on the gravel bed which provides the habitat for microbes. The basic process is that the gravel bed filters incoming sewage. Thus this system requires the smooth flow of sewage through the gravel. However, the efficiency of the disposal system will be lowered if the gravel bed is clogged with sewage sludge. A three year study shows that infiltration rate slows down significantly until the 7th day, depending on the sewage amount and the temperature. After the 7th day, the infiltration rate remains almost constant. In addition, the infiltration rate decreases as the temperature falls. It also decreases as the number of years in operation increase. But there is no significant change in the infiltration rate after the 7th day, independent of the temperature, the sewage amount, and years in operation. In order to take advantage of high infiltration rate, which improves the efficiency of the disposal system in its early stages, having two gravel beds and using them alternatively will be efficient. This operation method is called intermittent load and makes the disposal system last longer. The water plant roots above the gravel bed make the effective filtration possible because they delay accumulation of the sewage sludge and stabilize the filtration ability.

20톤/일급 가스화공정 Test Bed 설계 (Design of a 20 Tons/Day Gasification Test Bed)

  • 정재화;서석빈;서혜경;지준화
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.112.1-112.1
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    • 2010
  • To develop domestic IGCC gasification technology, a gasification test bed with a capacity of 20 tons/day has been designed. The main components of the test bed designed are a coal pulverizing and feeding facility, a gasifier, a syngas cooler, a gas treatment unit, oxygen and nitrogen tanks, and flare stack. For wide applications to the development of advanced coal gasification technology, many special functions have been given to it such as syngas recirculation, char recirculation, and multiple stage gasification. The test bed will be used for testing the characteristics of various types of coals, deriving optimum conditions for efficient gasifier operation and trouble shooting for the Korea IGCC demonstration plant. It will also be applied as a useful tool to develop scale-up design technology of IGCC and proceed to commercialization.

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고형 폐기물층 연소에 관한 연구 (A study on the bed combustion of solid waste)

  • 신동훈;최상민
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 1998년도 제17회 KOSCI SYMPOSIUM 논문집
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    • pp.1-8
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    • 1998
  • Waste combustion above a grate is the core process of incineration systems, stability of which should be guaranteed for emission minimization. However, complicated reactions and heat and mass transfer phenomena make understanding the process difficult. One dimensional bed combustor with a numerical combustion model is utilized to investigate the combustion process of the bed, using cubic wood particles as a simulated fuel. Bed combustion behavior is characterized with apparent flame propagation speed, which has close relationship with air supply rate and chemical and physical characteristics of the fuel. Base on the availability of oxygen, two distinct reaction zone is identified; the oxygen-limited and the reaction-limited zone leading to the extinction by excessive convection cooling. The numerical modeling shows good agreement with the experimental results. The transient bed combustion behavior of local temperature and oxygen consumption rate is adequately reproduced. The numerical model is extended to model the waste bed combustion of a commercial incineration plant, which shows meaningful results as well.

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Reuses Of Wash Water Effluents Of The Ion-Exchanger Units Of Water Demineralization Plant For Economic And Environmental Benefits

  • Miah, Raisuddin
    • 분석과학
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    • 제8권4호
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    • pp.799-806
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    • 1995
  • In industrial field, a large volume of regenerants (acid and caustic soda) and their washing effluents are regularly disposed off from the water demineralization plant during regeneration of the ion-exchanger units. Of these waste effluents, a part of the wash water discharged from the single bed Anion and Mixed Bed units can be utilized at a certain stage of their washing cycles when its conductivity is fallen down and becomes considerably less than that of the input raw water. The main aim of this specific waste effluent utilization is to dilute the TDS concentration of the input raw water (fed into the single bed ion-exchanger units) by blending. The achievement is the increase of the longevity of the production cycles of the I.E. units along with the improvement of the production quality and decrease of the regeneration frequencies. As a result, regenerant consumption would be saved because of the reduction of ionic load in feed water which will ultimately reduce the water purification cost. At the same time, the environment pollution will also be protected to a considerable extent. This operational measure is quite effective and useful specially where high TDS water is demineralized only by single bed ion-exchangers. In such case, the water treatment plant is very often found to suffer from both production quality and quantity in addition to carrying out of random and restless regenerations. Proper reuses of the aforesaid wash water effluents of the Anion and MB units excellently minimizes the difficulties experienced in practice. This paper contains the utilities and techniques of reuses of the different kinds of waste effluents of the industrial water treatment plant in addition to the specific reuses of the post-regeneration wash waters of the Anion and MB ion-exchanger units.

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Collection Data with Growth of Three Strawberry Cultivars in High Bed System for Development of the Edge Computing

  • Jo, Jung Su;Sim, Ha Seon;Kim, Sung Kyeom
    • 한국방송∙미디어공학회:학술대회논문집
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    • 한국방송∙미디어공학회 2022년도 하계학술대회
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    • pp.78-80
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    • 2022
  • Strawberry (Fragaria × ananassa) cultivation methods are rapidly changing from traditional soil cultivation to high bed hydroponics, which are easy to agricultural working. The objective was to evaluate the growth characteristics of three strawberry cultivars cultivated high bed system. The "Seolhyang", "Altaking", and "Keumsil" strawberry plants were transplanted in a glass-type greenhouse at Kyungpook National University Gunwi Agricultural Field. The cultivation period was approximately seven months from September 17, 2021 to April 21, 2022. Growth parameters measured including the number of leaves, plant height, petiole length, leaf length, leaf width, and crown diameter at two-week intervals. The environmental parameters for each location in the greenhouse were collected. Plant height in all cultivars continued to decrease from the early stage to the late stage of growth. The crown diameter was increased by 50 DAT, and then gradually decreased until late growth stage in all cultivars. Results indicated that the growth parameters represented to vary according to the cultivar of strawberry plants.

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실내 포름알데히드 농도에 미치는 식물의 영향 (Plant Effects on Indoor Formaldehyde Concentration)

  • 박소영;성기준
    • 한국환경과학회지
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    • 제16권2호
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    • pp.197-202
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    • 2007
  • Formaldehyde is a typical indoor air pollutant that has numerous adverse health problems in modern living conditions. Phytoremediation that use plants to remove contaminants from polluted media can be applied to improve indoor air quality. Two sets of experiments; 1) two rooms in newly built auditorium and 2) a bed room in 2-year-old apartment; were performed to investigate plant effects on indoor formaldehyde concentration. It was observed from the experiments that plant can help decontaminating formaldehyde at low concentration level (0.1 ppm) but the effects decreased considerably at hish concentration (1ppm). The purification effects of indoor plant also showed the periodic pattern due to its physiological activity. More purification was observed as increasing plant density in the bed room but the formaldehyde concentration returned the original concentration level in two days after removing plants. It was suggested from the results that air purification using plants is an effective means of reduction on indoor formaldehyde level, though, reduction of source is highly desirable when the concentration level is high. The results also suggest that introducing supplementary purifying aids and/or efficient ventilation could be considered due to periodic removal pattern of plant.