불투수포장면적의 증가는 도심지 내 열환경 악화, 물순환체계 단절 등의 문제점과 더불어 인간의 여러 가지 신체적・정신적 질병에 원인이 되기도 한다. 이에 도시공원 내 거리에 따른 공기이온 실태와 거리별 기상요소 및 공기이온과의 상관성을 분석하여, 향후 도심지 내 대규모 도시공원 조성 혹은 리모델링에 있어서 기후적 측면의 건강성을 고려한 도시공원 조성의 기초자료로 제시하고자 하였다. 연구대상지는 서울시 송파구 올림픽공원을 대상으로 거리에 따라 4개 유형으로 구분한 뒤, 구간을 A, B로 분류하였다. 측정지점은 80지점을 선정한 후 토지피복 및 식생현황을 조사한 후 기상요소, 공기이온을 측정하 였다. 첫째, 구간별 녹지율은 A구간 Center(90%) > Inner(70%) > Outer-inner(10%) = Outer(10%), B구간 Center(100%) > Inner(60%) > Outer-inner(30%) > Outer(0%) 순이었다. 둘째, 기상요소의 경우 기온의 경우 Outer(24.18℃) > Outer-inner(22.90℃) > Inner(22.43℃) > Center(21.719℃)으로 분석되었으며, 상대습도의 경우 Center(46.49%) > Inner(43.36%) > Outer-inner(42.41%) > Outer(38.53%)으로 분석되었다. 셋째, 공기이온 중 양이온의 경우 Outer(435.71ea/㎤) > Outer-inner(415.16ea/㎤) > Inner(389.46ea/㎤) > Center(352.64ea/㎤)의 순이었으며, 음이온의 경우 Center(569.72ea/㎤) > Inner(499.83ea/㎤) > Outer-inner(410.58ea/㎤) > Outer(292.02ea/㎤) 순으로 Center로 갈수록 증가하는 것으로 분석되었으며, 도로와 가까워질수록 감소하는 것으로 분석되었다. 이온지수의 경우 Center(1.67) > Inner(1.31) > Outer-inner(1.08) > Outer(0.71)으로 분석되었다. 넷째, 상관성 분석결과 정(+)의 상관인 것은 음이온, 이온지수로 도로로부터 공원 Center로 갈수록 증가하는 것으로 분석되었으며, 부(-)의 상관인 것은 기온, 일사량, 양이온으로 도로와 가까워질수록 증가하는 것으로 분석되었다.
노인의 공원이용과 만족도에 관한 연구를 위해 서울 강동구 고덕산을 대상으로 실시하였다. 분석은 전체 항목에 대해 빈도분석을 실시하였으며, 문항의 타당성을 알아보기 위해 신뢰도 분석을 실시하였다. 이용객의 만족도에 유의한 영향으로 작용하는 항목을 파악하기 위해 요인분석을 활용하였다. 도출된 요인을 이용하여 다중회귀분석을 실시하였다. 요인분석 결과, 만족도에 미치는 요인은 3개로 구성되었고, 총 분산의 69.50%를 설명하는 것으로 나타났다. 항목간의 표본적합도를 의미하는 KMO값은 .756으로 분석되었다. 요인은 항목의 특성을 반영하여 이용적측면, 생태적측면, 쾌적성측면으로 구분하였다. 도출 된 요인을 통해 다중회귀분석 결과 노인의 공원 이용만족도에 대한 다중회귀식은 Y = 3.678 + 0.202X1 + 0.125X2 + 0.236X3으로 분석되었다. 본 연구에서는 전문적 지식이 부족한 노인을 대상으로 설문을 진행한 한계점이 존재한다. 향후 전문지식을 가진 노인을 대상으로 평가연구가 진행되어야 할 것이며, 연령별 생태적, 이용적, 기후적 측면 비교연구가 필요할 것으로 판단되었다.
도심 산지형 공원 내 식생유형별 요인이 공기이온에 미치는 영향력을 파악하고자 충주시 탄금대 공원을 대상으로 수행하였다. 측정지점은 능선부 내 수종, 흉고직경, 울폐도, 층위구조에 따라 설정하였으며, 기상요소와 공기이온을 측정하였다. 공기이온 측정결과, 양이온 발생량은 평균 610.90±50.27ea/㎤, 음이온 발생량은 평균 723.58±64.25ea/㎤, 이온지수는 1.19±0.10 이였다. 식생유형에 따른 분석결과는 다음과 같다. 첫째, 공기이온은 수종, 흉고직경, 층위구조에 따라 차이가 발생하였으며, 통계적으로 유의한 것으로 분석되었다. 둘째, 이온지수와 식생유형과의 관계에서 수종, 흉고직경, 울폐도, 층위구조 모두에서 정의 상관관계로 분석되었으며, 양이온의 경우 수종, 흉고직경, 울폐도와 부의 상관관계, 음이온의 경우 수종, 흉고직경, 울폐도, 층위구조에서 정의 상관관계로 분석되었다. 셋째, 능선부 내 이온지수의 영향요인은 기상요인과 식생유형을 비교한 결과 식생유형의 상관계수가 더 높았으며, 세부적으로는 수종 > 층위구조 > 울폐도 > 흉고직경의 순이었다. 본 연구에서는 능선부를 대상으로 공기이온을 평가한 한계점이 존재한다. 이에 향후 공기이온에 대한 연구에서 지형구조, 식생유형을 모두 고려한 분석이 이루어져야할 것이며, 계절에 따른 변화·비교연구가 필요할 것으로 판단되었다.
본 연구에서는 충청북도 충주시를 대상으로 폭염시 토지이용유형별 보행공간의 기상특성과 공기이온 특성을 측정 및 분석하였다. 연구대상지 보행공간의 토지이용유형 구분은 지적편집도를 이용하여 대상지를 크게 Green Area, Residential Area, Commercial Area으로 실시하였다. 측정지점은 약 4.1km, 44개 지점으로 측정지점을 선정하여 외곽지 역 관통도로 보행공간 Green Area 12개 지점, Residential Area 14개 지점, Commercial Area 18개 지점으로 구분하여 측정하였다. 또한 폭염시 토지이용유형별 보행공간의 기온, 상대습도, 일사량, 순복사량 등의 기상요소가 음이온 발생량, 양이온 발생량에 미치는 영향을 분석하여 이온지수를 산출하였다. 폭염시 토지이용유형별 보행공간의 공기이온 특성 비교결과 평균 양이온 발생량은 Commercial Area(700.73ea/cm3) > Residential Area(600.76ea/cm3) > Green Area(589.73ea/cm3)로 분석되었다. 평균 음이온 발생량은 Green Area(663.95ea/cm3) > Residential Area(628.48ea/cm3) > Commercial Area(527.48ea/cm3) 로 분석되었다. 평균 이온지수는 Green Area(1.13) > Residential Area(1.04) > Commercial Area(0.75)로 분석되었다. 본 연구는 폭염시 토지이용유형별 보행공간에 따른 기상특성, 양이온 발생량과 음이온 발생량 현황을 확인할 수 있었으며, 토지이용유형별 보행공간의 이온지수의 차이를 확인할 수 있었다. 그러나 이동측정에 따른 토지이용유형별 정확한 비교 부족과 도로 폭 변화에 대한 정량적 특성 비교가 부족한 한계점이 존재하였 다. 따라서 도로 특성을 고려한 지속적인 연구가 이루어져야할 것으로 판단되었다.
본 연구에서는 경주 남산을 대상으로 지형구조 및 해발고도가 음이온 발생량에 미치는 영향을 분석하였다. 분석 결과, 기온은 능선부(9.82℃) > 계곡부(8.44℃), 상대습도는 계곡부(59.01%) > 능선부(58.64%), 풍속은 능선부 (0.63m/s) > 계곡부(0.37m/s), 일사량은 능선부(34.40W/㎡) > 계곡부(14.69W/㎡)로 나타났다. 음이온의 경우 계곡부 (636.81ea/㎤) > 능선부(580.04ea/㎤)로 계곡부가 더 높은 음이온 발생량을 보였다. 해발고도와의 상관성 분석 결과, 계곡부에서는 기온, 상대습도, 일사량, 음이온 발생량과의 상관성이 검증되었으며, 상대습도, 일사량, 음이온 발생량과는 정의 상관관계, 기온과 부의 상관관계가 나타났다. 능선부에서는 기온, 상대습도, 풍속, 일사량, 음이온 발생량과의 상관성이 검증되었으며, 상대습도, 일사량, 음이온 발생량과는 정의 상관관계, 기온, 풍속과는 부의 상관관계가 나타났 다. 회귀분석 결과, 기온의 경우 계곡부는 𝒚= -0.006𝒙+9.663 (𝒙=해발고도, 𝒚=기온), 능선부의 경우 𝒚= -0.009𝒙+11.595 (𝒙=해발고도, 𝒚=기온)의 예측식을 얻었다. 상대습도의 경우 계곡부는 𝒚= 0.027𝒙+53.561 (𝒙=해발고도, 𝒚=상대습도), 능선부의 경우 𝒚= 0.008𝒙+56.646 (𝒙=해발고도, 𝒚=상대습도)의 예측식을 얻었다. 음이온 발생량의 경우 계곡부는 𝒚= 0.577𝒙+521.508 (𝒙=해발고도, 𝒚=음이온 발생량), 능선부의 경우 𝒚= 0.605𝒙+549.068 (𝒙=해발고도, 𝒚=음이온 발생 량)의 예측식을 얻었다.
This field experiment aimed to identify the optimal planting density for establishing a management plan for ground-cover plants under roadside trees. Liriope platyphylla and Hosta longipes both widely used for planting under trees were selected as the plant materials and planted under Prunus serrulata var. spontanea at different planting densities. Based on the distance between each plant, 4 planting densities were used: 11%, 25%, 49%, and 83% with three replications. To estimate plant growth, plant height, number of leaves and tillers, fresh and dry weight, and visual quality were investigated. Liriope platyphylla exhibited relatively better growth at the highest planting density of 83%. For Hosta longipes, however, the lower growth was positively correlated with high planting density. Therefore, the optimal planting density for Liriope platyphylla is 83% and for Hosta longipes is 11%.
This study investigated the effect of vegetation mat on plant growth and salt reduction in the soil treated with high concentration deicing salt. In order to measure soil chemical characteristics and plant growth, three native groundcover plants (Dendranthema zawadskii var. latilobum, Dendranthema boreale, and Kalimeris yomena) were grown in each of the three plastic containers (50.0 cm width × 35.0 cm length × 8.5 cm deep) with a high concentration treatment of calcium chloride deicing salt. There were two treatments: control, and BVM that combines B (blanket) and VM (vegetation mat). 1,600 g of soil was placed on the top of the drainage layer with 290 g of perlite, 100 seeds each of the three native plants with three repetitions were sowed, and 10 g/L of calcium chloride deicing salt was added in the treatment. As a result of the chemical properties of soil, soil in control treatment was acidic and soil electrical conductivity in BVM was the lowest. Also, exchangeable cations (K+, Ca2+, Na+, and Mg2+) in soil and all the three plants were significantly decreased in the BVM treatment. Meanwhile, the germination rate of Dendranthema zawadskii var. latilobum was the highest under high concentration deicing salt in compared to the two plants. Overall, three native groundcover plant growth was higher in the BVM than control treatment significantly. These results suggest that the treatment of blanket vegetation mat has a positive effect on soil and plant growth in soil damaged by deicing salt.
This study aimed to analyze the growth and physical responsees of Dracaena braunii in response salt accumulation in ornamental water culture and to examine the effect of activated carbon on this growth response. The experiment was conducted in a plant growth chamber and the indoor environmental conditions of the chamber were set at 23 ± 1℃ temperature, 70 ± 3% humidity, and 1,000 lux brightness. The observation of the growth response of plants in the presence of activated carbon showed that the pH with activated carbon maintained sub-acidic to neutral (6.27∼7.32) conditions and showed decreased electric conductivity in the media. As the treatment with added activated carbon showed good growth and physical responses, this indicated that absorption effect of activated carbon had a positive influence on the growth of plants. However, as the absorption effect of activated carbon may decrease over time and the use of high concentrations of activated carbon might cause nutrition shortage, various concentration of activated carbon and their absorption effects need to be investigated in the future.
This study analyzed the placement shape and correlation of green space focusing on anion that is one of curing substances. As its result, it was found out that the meteorological element becomes different and the generated amount of anion also gets different along such different meteorological element in case the shape of placing green space. As the result of analyzing the correlation with meteorological element , it was analyzed that it was the positive correlation in case of time, temperature and relative humidity and it was also analyzed that it was negative correlation in case of wind velocity and amount of light. But, in case of wind velocity, it was considered that the further complement research is required as the sampling distribution was shown as so biased by the windproof effect of the trees planted at the outskirts of green space in case of wind velocity. Based on th analyzed results as above, it suggested the model of generating anion by implementing multiple regression analysis such as y = -2462.383 + 0.304x1 x 72.746x2 x 7.315x3 x - 0.138x4 (x1; time, x2; air temperature, x3; relative humidity, x4; luminous intensity, R2; 0.691).
In order to determine the short-term impact induced by chloride ionic, CaCl2 was used to study the chloride ionic effects of salinity on substrate and growth of Dracacena braunii grown in ornamental hydro-culture. A distilled water (control) was enriched with 10, 20, 50, 100, and 150 g・L -1 of CaCl2, respectively. Before planting, acidity and electronic conductivity values remarkably increased with increasing concentration of CaCl2. However, 4 weeks after planting, acidity values decreased to a slightly acidic pH, while there were not significant differences among electronic conductivity values obtained. Number of root, fresh weight, and total chlorophyll content were significantly decreased in response to CaCl2 concentration in comparison with control, whereas dry weight, water content, and color of stem were no significant effect of CaCl2 concentration less than 20 g・L -1 . These results showed that initial CaCl2 concentrations above 20 g・L -1 is considered to be the threshold value that will sustain the Dracacena braunii in the growth condition and above which plant growth will be retarded.
The objectives of this study were to assess plant growth of the flowering shrub species for adapting to growing on hanging baskets in the vertical greenery system with different cover materials and substrates for low maintenance effectively utilizing rainfall. Water amount taken up by the fabric cover was higher than that by the plastic film cover. Evaporated water amount from the fabric cover was much slower than that from the plastic cover. A higher ratio of hydrophilic polymer to the substrate resulted in higher substrate water content within the same cover material. The relative growth rates of plant height, leaf width and stem diameter were higher when the Cotoneaster horizontal was grown in the vertical greenery system with the fabric cover, whereas the leaf number and survival rate were higher with the plastic film cover. The relative growth rates of plant height, leaf width and leaf number and the survival rate was higher when the Euonymus fortunei ‘Emerald n Gold’ was grown in the vertical greenery system with plastic film cover than those with both fabric cover and hydrophilic polymer treatment. In contrast, the stem diameter of Euonymus fortunei ‘Emerald n Gold’ was higher in the plants grown in the vertical greenery system with the fabric cover at a 1.0% ratio of hydrophilic polymer to substrate than that with plastic film cover. The highest stem diameter of Spiraea × bumalda ‘Gold Mound’ was observed in the plant grown in the vertical greenery system with fabric cover and at a 1.0% ratio of hydrophilic polymer to substrate, while there was no significant difference in the plant height. The leaf number was decreased with increase in the ratio of hydrophilic polymer to substrate, while the leaf width was decreased. The survival rate of Spiraea × bumalda ‘Gold Mound’ was higher than 80% regardless of treatments. In particular, the highest survival rate was observed in the plastic film cover treatment after overwintering.
본 연구는 옥상녹화에서 무기질계 인공토와 유기질계 인공토가 초본인 돌나물과 목본인 순비기나무의 생육에 미치는 영향을 살펴 봄으로써 유기질계 인공토의 효용성을 제시하고자 한다. 연구기간 은 2013년 5월에서 10월로 약 5개월이며, 식물종은 초본류에 돌나 물을, 목본류에 순비기나무를 대상으로 무기질계 인공토(Inorganic substrate=perlite, IOS), 자연토(natural soil, NS), 유기질계 인공 토Ⅰ(organic substrate=artificial compost Ⅰ, OS1), 유기질계 인공토 Ⅱ(organic substrate=artificial compost Ⅱ, OS2)로 구 성하였다. 돌나물의 초장, 줄기수, 엽수, 상대엽록소함량비는 유기 질계 인공토 Ⅰ처리구(OS1)> 자연토 처리구(NS)> 무기질계 인 공토(IOS) 순으로 높았으며, 통계적인 차이가 뚜렷하였다. 생체중 과 건물중 또한 OS1, NS, IOS 처리구 순으로 생육결과와 비교적 유사한 경향을 보였다. 순비기나무는 수고, 경경, 엽장, 엽폭은 유기 질계 인공토 Ⅱ(OS2)> 자연토 처리구(NS)> 무기질계 인공토 (IOS) 순으로 유의적으로 높았으며, 특히 유기질계 인공토 Ⅱ 처리 구에서 단기간의 실험임에도 불구하고 그 차이가 뚜렷했다. 이에 옥상녹화의 식재지반에서 무기질계 인공토의 단용처리는 식물생 육에 부정적인 영향을 미칠 수 있으므로 식물생육을 위한 적정비율 의 유기질계 인공토의 활용이 요구된다.
This study focused on the characteristics of change soil water with respect to soil thickness and soil mixture ratio, in order to effectively carry out an afforestation system for a roof with a low level of management and a light weight. Soil hardness tended to increase as sand particle was increase regardless soil thickness and soil porosity had more higher artificial soil than natural soil mixture. In case of soil pH, natural soil mixture had between 6.7 and 7.4, and artificial soil mixture had 6.0∼6.8. Organic matter, electrical conductance and exchangeable content were highest in L10, which it had the highest leafmold ratio.
Soil moisture tension(kPa) in 15cm soil thickness was observed natural soil mixture had a considerable change but artificial soil mixture had a gradual change when non-rainfall kept on. In the experimental L10, S10, S7L3 and S5L5 object, the amount of moisture tended to rapidly decrease. However, in the experimental P7P1L2, P6P2L2, P5P3L2 and P4P4L2 objects, which contained pearlite and peat moss, the amount of moisture tended to gradually decrease. As a result, the use of a artificial soil mixture soil seems to be required for the afforestation of a roof for a low level of management.
The present study investigated the causes and intensity of the urban heat island phenomenon by the seasons according to the pattern of land use in Chungju City. Highest temperature and lowest moisture areas of the urban were very similar to the distribution of commercial districts, on the other hand, lowest temperature and highest moisture areas were distributed in manufacturing districts, green zones and the Hoam Lake. If appear at intensity of the distance from the outer circumference of commercial districts, wind direction and the rise of temperature, we could observe the remarkable expansion of high temperature from commercial districts toward residential districts around of downwind in all seasons. In case the effect of the wind was not significant as well, high temperature in commercial districts appeared tendency that a little spread to 1, 2 residential districts around. But checked up the intimate relations between the amount of moving heat and wind, when out of consideration that size of area was not much compared than residential areas of downwind affected by the wind. These phenomenon was relatively obvious in summer, the other side, in spring and autumn appeared a similar tendency.