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      • 4가지 관엽식물을 이용한 바이오필터의 미세먼지 제거 효과

        권계정, 박봉주 忠北大學校 農業科學硏究所 2014 農業科學硏究 Vol.30 No.2

        In this study, indoor pollutant removal performance of biofilters with four foliage plants (Ficus elastica, Chrysalidorcarpus lutescens, Anthurium schott, Spathiphyllum spp.) was evaluated using tobacco smoke as pollutant. The removal performance of particulate matters (PM1, PM2.5, PM10) was compared to evaluate the effect of control and plants. The performance of PM1 diffuse suppression was greatest in the order of Ficus elastica, Anthurium schott, Chrysalidorcarpus lutescens and Spathiphyllum spp., while the performance of PM2.5 diffuse suppression was greatest in the order of Anthurium schott, Ficus elastica, Spathiphyllum spp., and Chrysalidorcarpus lutescens. There was no difference found in PM10 removal performance of the control and plant species. For PM1 and PM2.5, however, plants always showed the best removal performance regardless of the plants species followed by the control. There was no difference found in PM10 diffuse suppression between control and plants, because it was decrease rapidly. For PM1 and PM2.5, however, plants always showed better removal performance regardless of the plant species than the control. This is because ultra-fine particles were adsorbed to leaves and absorbed by stoma. The performance of PM removal depends on not a leaf area but a pore size and pore number of plants. It is expected to utilize plant-based biofilter for air pollutant removal in indoor and underground spaces when sufficient ventilation is difficult to be achieved.

      • SCOPUSKCI등재

        Removal Potential of Particulate Matter of 12 Woody Plant Species for Landscape Planting

        Kei-Jung Kwon,Odsuren Urrintuya,Sang-Yong Kim,Jong-Cheol Yang,Jung-Won Sung,Bong-Ju Park 인간식물환경학회 2020 인간식물환경학회지 Vol.23 No.6

        Background and objective: Particulate matter (PM) is one of the serious environmental problems and threatens human health. Plants can clean the air by removing PM from the atmosphere. This study was carried out to investigate the PM removal efficiency of 12 species of woody plants. Methods: Actinidia arguta, Dendropanax morbiferus, Fraxinus rhynchophylla, Parthenocissus tricuspidata, Pittosporum tobira, Rhaphiolepis indica, Rhapis, Salix integra, Salix koreensis, Schisandra chinensis, Viburnum odoratissimum var. awabuki, and Vitis coignetiae were used as plant material. Six 15 cm (D) pots were placed in an acrylic chamber of 800 (D) × 800 (W) × 1000 (H) mm. The LED panel was used as a light source. The reduction of PM10, PM2.5, and PM1 for 300 minutes after the injection of PM was automatically measured. Results: The leaf area and the amount of PM in the chamber showed a negative correlation. 12 species of plants were compared by dividing the plants into 3 groups according to their characteristics: vines, trees, and shrubs and small trees. In the vine plant group, the averages of PM10, PM2.5, and PM1 were 7.917%, 8.796%, and 30.275%, respectively. In the shrubs and small trees group, the average of PM10, PM2.5, and PM1 were 10.142%, 11.133%, and 36.448%, respectively. In the trees group, the average of PM10, PM2.5, and PM1 were 11.475%, 12.892%, and 40.421%, respectively. When the initial concentration was 100%, PM10, PM2.5, and PM1 of Viburnum odoratissimum var. awabuki with the largest leaf area were 5.6%, 6.3%, and 21.0% after 5 hours, respectively, the best results among 12 species of plants. Conclusion: The vine plant group was more effective in removing PM than the other two groups. In the tree groups, the fact that the leaf development was relatively inactive at a plant height of 30 cm was considered to have an effect on the removal of particulate matter.

      • KCI등재

        Growth and Physiological Responses of Four Plant Species to Different Sources of Particulate Matter

        Kei-Jung Kwon,Uuriintuya Odsuren,Huong-Thi Bui,Sang-Yong Kim,Bong-Ju Park 인간식물환경학회 2021 인간식물환경학회지 Vol.24 No.5

        Background and objective: Particulate matter (PM) has a serious impact on health. Recently, studies are conducted to reduce PM in an environmentally friendly way using plants. This study investigated the physiological responses of plants and their ability to remove PM by continuously spraying different PM sources (loam, fly ash, carbon black) to four native plant species, such as Iris sanguinea, Pteris multifida, Vitis coignetiae, and Viburnum odoratissimum var. awabuki. Methods: The four plant species were randomly placed in four chambers, and 0.1 g of different PM was injected into each chamber twice a week. We measured chlorophyll, carotenoid, chlorophyll fluorescence (Fv/Fm), total leaf area, amount of leaf wax, PM10 (sPM10) and PM2.5 (sPM2.5) on the leaf surface, and PM10 (wPM10) and PM2.5 (wPM2.5) on the wax layer. Results: For I. sanguinea and V. coignetiae, the sources of PM did not affect the growth response. P. multifida showed high chlorophyll a, b, total chlorophyll, and carotenoid content in carbon black as well as high Fv/Fm and total leaf area, thereby proving that carbon black helped plant growth. By PM sources, sPM10 showed a significant difference in three plant species, sPM2.5 in two plant species, and wPM10 in one plant species, indicating that sPM10 was most affected by PM sources. Conclusion: Carbon black increased the leaf area by affecting the growth of P. multifida. This plant can be effectively used for PM reduction by increasing the adsorption area. I. sanguinea and V. coignetiae can be used as economical landscaping plants since they can grow regardless of PM sources.

      • KCI등재

        관수주기에 따른 실내 관엽식물의 생장 반응

        권계정(Kei Jung Kwon),정현환(Hyun Hwan Jung),박봉주(Bong Ju Park) 인간식물환경학회 2015 인간식물환경학회지 Vol.18 No.5

        This study was carried out to investigate growth characteristics of plants in accordance with irrigation period and to find the optimum irrigation conditions for plants that help to improve the indoor environment. Four foliage plants used in this study included Chlorophytum comosum, Dieffenbachia amoena ‘Marianne’, Epipremnum aureum, and Spathiphyllum spp.. The plants cultivated in three different irrigation frequency: 2 times/week; 1 time/week; and 1 time/2 weeks. As a result, average soil moisture content of four foliage plants for one month measurement period, 2 times/week, 1 time/week, and 1 time/2 weeks were maintained at 47.3±3.0%, 17.3±2.0%, and 10±1.5%, respectively. All four kinds of plants showed a good visible growth in 1 time/week irrigation. Chlorophytum comosum was slowly begin to die in 1 time/2 weeks irrigation and it was completely dead at the end of the experiment. So it is considered that circumspection is needed for drying. Dieffenbachia amoena ‘Marianne’ was dead by each one pot in 2 times/week and 1 time/2 weeks. So it seemed to be a proper watering plants. Epipremnum aureum, and Spathiphyllum spp. showed good growth characteristics regardless of irrigation frequency, it showed good tolerance of the irrigation. In particular, Epipremnum aureum was no significant difference in SPAD value, chlorophyll fluorescence, and leaf water potential according to irrigation frequency, so it was the best plants to irrigation water management.

      • KCI등재

        Comparison of the Particulate Matter Removal Capacity of 11 Herbaceous Landscape Plants

        권계정(Kei-Jung Kwon),Uuriintuya Odsuren,김상용(Sang-Yong Kim),양종철(Jong-Cheol Yang),박봉주(Bong-Ju Park) 인간식물환경학회 2021 인간식물환경학회지 Vol.24 No.3

        Background and objective: Particulate matter (PM) has a fatal effect on health. There have been many studies on the use of plants such as trees and shrubs as eco-friendly and sustainable biofilter for the removal of PM. In forming more green space, ground cover plants play an important role in multi-layered planting. This study was conducted to investigate the ability of plants to reduce PM, targeting Korean native ground cover plants with high availability in urban green spaces. Methods: For 4 species of Asteraceae, 4 species of Liliaceae, and 3 species of Rosaceae, one species of plants at a time were placed in an acrylic chamber (800 × 800 × 1000 mm, L × W × H) modeling an indoor space. After the injection of PM, the amount of PM remaining in the chamber over time was investigated. Results: For all three types of PM (PM10, PM2.5, PM1), significant difference occurred in the amount of PM remaining between plant species after 1 hour in the Liliaceae chamber, 3 hours in the Asteraceae chamber, and 5 hours in the Rosaceae chamber. With Liliaceae, the leaf area and the amount of PM remaining in the chamber showed a negative (-) correlation. With the Asteraceae and Rosaceae, there was a weak negative correlation between the leaf area and the amount of PM remaining in the chamber. Conclusion: When using ground cover plants as a biofilter to remove PM, it is considered effective to select a species with a large total leaf area, especially for Liliaceae.

      • KCI우수등재

        관수주기에 따른 실내녹화용 목본식물 4종의 초기 생육반응

        권계정,박봉주,Kwon, Kei-Jung,Park, Bong-Ju 한국조경학회 2017 韓國造景學會誌 Vol.45 No.1

        본 연구는 실내에 많이 사용되는 목본식물인 산호수(Ardisia pusilla), 클루시아(Clusia rosea), 팔손이(Fatsia japonica), 인도고무나무(Ficus elastica)를 대상으로 관수주기에 따른 식물생육 상태를 측정하여 향후 실내 환경개선에 도움이 되는 조경식물의 적절한 관수주기를 구명하고자 수행하였다. 목본식물 4종을 10cm 포트에 식재하여, 관수주기를 2회/1주, 1회/1주, 1회/2주의 3수준으로 하여 120일 동안 처리한 후, 초고, 생체중, 건조중, SPAD, 엽색, 엽수분포텐셜, 엽록소 형광(Fv/Fm), 광합성율을 측정하였다. 실험기간 동안 평균 토양수분함량은 2회/1주 $48.8{\pm}2.1%$, 1회/1주 $25.2{\pm}4.4%$, 1회/2주 $10.3{\pm}2.4%$ 순으로 나타났다. 2회/1주 관수 시 산호수는 엽수분포텐셜이 높게 나타났고, Fv/Fm이 0.731로 나타나 과습에 대한 스트레스를 보였다. 1회/2주 관수 시 산호수, 팔손이, 인도고무나무의 광합성율은 유의성이 없어 클루시아에 비해 건조에 민감한 것으로 나타났다. 1회/1주 관수하여 평균 토양수분함량이 25%일 때 본 실험에 사용된 4종 목본식물 모두 실내 생육이 원활한 것으로 나타나 실내조경용으로 이용성이 높을 것으로 판단된다. This study was carried out to investigate growth characteristics of woody plants that are widely used indoors in accordance with irrigation frequency and to find the optimum irrigation conditions for plants that help to improve the indoor environment. Four woody plants used in this study included Ardisia pusilla, Clusia rosea, Fatsia japonica, and Ficus elastica. They were planted in pots with a diameter of 10cm and cultivated in three different irrigation frequencies: two times per week, one time per week, and one time per two weeks. After 120 days, they were measured by plant height, fresh weight, dry weight, SPAD value, leaf color, leaf water potential, chlorophyll fluorescence (Fv/Fm), and photosynthetic rate. The average soil moisture content was $48.8{\pm}2.1%$ in two times per week, $25.2{\pm}4.4%$ in one time per week, and $10.3{\pm}2.4%$ in one time per two weeks. For A. pusilla, leaf water potential was higher, and Fv/Fm value was 0.731 in two times per week irrigation, showing more wetness. For A. pusilla, F. japonica and F. elastica photosynthetic rate was significantly lower in one time per two weeks irrigation, appearing to be more sensitive to drying than C. rosea. When irrigated one time per week, with the soil's volume average moisture content of 25%, all four woody plants used in this experiment proved to grow smooth. Thus, it was determined to be good for use in indoor landscaping.

      • KCI우수등재

        실내녹화 방법이 온·습도 및 미세먼지 농도에 미치는 영향

        권계정,박봉주,Kwon, Kei-Jung,Park, Bong-Ju 한국조경학회 2017 韓國造景學會誌 Vol.45 No.4

        연구는 벽면녹화 및 벽천시스템이 없을 때를 대조구로 하여, 벽면녹화시스템 1개(Case 1), 벽면녹화시스템 2개(Case 2), 벽면녹화시스템 2개와 벽천시스템(Case 3)의 4가지 조건별 실내 온 습도 조절 및 입자상 오염물질인 PM1와 PM10 제거효과를 구명하고자 수행하였다. 실험은 충북대학교 내의 사무실에서 2015년 8월부터 9월까지 약 2개월 동안 대조구, Case 1, Case 2, Case 3 순으로 순차적으로 진행하였고, 실험기간 동안 외기온도가 비교적 일정했던 2015년 8월 17~20일(반복 실험 1), 8월 31일~9월 3일(반복 실험 2)의 데이터를 이용하여 분석하였다. 실내조경 설치에 따른 식물의 용적비는 대조구, Case 1, Case 2, Case 3이 각각 0, 0.6, 1.2, 1.4%였다. 대조구와 비교하여 Case 1, Case 2, Case 3의 평균온도는 각각 0.3~0.7, 0.7~0.9, $1.0^{\circ}C$가 감소되었으며, 평균상대습도는 각각 1.8~8.7, 9.2~14.6, 14.8~21.9%로 상승하는 경향을 보였다. 오염원 주입 후 300분이 경과하였을 때, 대조구, Case 1, Case 2, Case 3의 PM1 잔존비율은 반복 실험 1의 경우에는 각각 25.0, 22.0, 21.2, 17.3%이었으며, 반복 실험 2에서는 42.3, 28.9, 23.1, 30.9%로 나타났다. PM10 잔존비율은 반복 실험1에서는 각각 13.8, 10.8, 12.5, 9.2%이었으며, 반복 실험 2에서는 각각 24.5, 15.3, 12.6, 14.8%로 나타났다. 실내녹화 면적이 증가함에 따라 실내 온도와 PM1, PM10의 저감효과는 컸으며, 습도는 온도와 음(-)의 상관관계를 보였다. PM1과 PM10은 상대습도가 높을수록 빨리 감소되는 경향을 보였다. This study investigated indoor temperature and humidity control and PM1 and PM10 mitigation effects of a single green wall (Case 1), two green walls (Case 2), and two green walls plus a waterfall (Case 3) in comparison with a control without either a green wall or waterfall. Experiments were conducted in the office of Chungbuk National University from August to September, 2015. Experiments were carried out sequentially in the order of control, Case 1, Case 2, and Case 3. Data collected from August 17 to August 20, 2015 (Experiment 1), and from August 31 to September 3, 2015 (Experiment 2), when outdoor temperature was relatively constant, were analyzed. Plant volume ratios by indoor landscaping of the control, Case 1, Case 2 and Case 3 were 0.0, 0.6, 1.2, and 1.4%, respectively. Compared to the control, average temperatures of Case 1, Case 2 and Case 3 were decreased by 0.3~0.7, 0.7~0.9 and $1.0^{\circ}C$, respectively, and relative humidity was increased by 1.8~8.7, 9.2~14.6 and 14.8~21.9%, respectively. Three hundred minutes after exposure to mosquito repellent incense particles, the ratio of the remaining PM1 of the control, Case 1, Case 2 and Case 3 were 25.0, 22.0%, 21.2%, 17.3%, respectively, in Experiment 1 and 42.3, 28.9, 23.1, and 30.9%, respectively, in Experiment 2. As indoor greening increased the effect of indoor temperature, PM1 and PM10 mitigation were greater, and temperature and humidity were lower. The greater the relative humidity was, the faster PM1 and PM10 mitigation tended to be.

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