• Title/Summary/Keyword: Branches

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Burning-Temperature Change of Living Branches and Leaves of Pinus rigida and Larix leptolepis (고온로의 가열 온도에 의한 리기다소나무와 일본잎갈나무 생엽과 생지의 연소온도변화)

  • Kim, Kwan-Soo;In-Soo Jang;Ki-Don Park;Su-Jung Kim
    • The Korean Journal of Ecology
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    • v.18 no.3
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    • pp.333-340
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    • 1995
  • This study aims to examine how the amount of sample and changes in combustible temperature of living branches and leaves treated with high temperature are associated with combustible time of two coniferous trees, Pinus rigida (R) and Larix leptolepis (L), which are the main victims of forest fire. During the first thirty minutes at $80^{\circ}C$, moisture content of R was higher than that of L by 12%, but after four hours, the moisture content was both lowered by 4~5% and turned to highly combustible leaves. With living leaves, the maximal combustible temperature, regardless of heating temperature, turned out to be higher than normal temperature by $67~140^{\circ}C$, and that with living branches, it was higher by $113~207^{\circ}C$. Also, with living leaves (R, L), the duration time of combustion was as follows: 605, 906 seconds at $400^{\circ}C$ and 76, 227 seconds at $600^{\circ}C$, respectively. Concerning the relation between the amount of burnt fuel and maximal temperature, the more the former was, the higher the latter. The total amounts of combustion heat of living branches and living leaves were 1, 121 Cal (20.8%) and 1, 137 Cal (21.4%), respectively. The total amount of combustion heat increased in proportion to the amount of consumed fuel: 100 g of living leaves and branches gave rise to 128 Cal, whereas 300 g did 556 Cal, that was more than three times.

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Key Technologies for Floating Type Artificial Upwelling System to Strengthen Primary Production (해역 기초생산력 증대를 위한 부유식 인공용승시스템 요소기술)

  • Jung, Dong-Ho;Lee, Ho-Saeng;Kim, Hyeon-Ju;Moon, Deok-Soo;Lee, Seung-Won
    • Journal of Ocean Engineering and Technology
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    • v.26 no.1
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    • pp.78-83
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    • 2012
  • The abundant nutrients contained in deep seawater are delivered by natural upwellings from the deep sea to the surface sea. However, the natural upwelling phenomenon is limited to specific areas of the sea; in other areas, the thermocline separates the surface sea from the lower layer. Thus, the surface layer is often deficient in nutritive salts, causing the deterioration of its primary productivity and ultimately leading to an imbalance in the marine ecosystem. Without a consistent supply of nitrogenous nutritive salts, they are absorbed by phytoplankton, resulting in a considerable problem in primary productivity. To solve this issue, a floating type of artificial upwelling system is suggested to artificially pump up, distribute, and diffuse deep seawater containing rich nutritive salts. The key technologies for developing such a floating artificial upwelling system are a floating offshore structure with a large diameter riser, self-supplying energy system, density current generating system, method for estimating the emission and absorption of CO2, and way to evaluate the primary production variation. Strengthening the primary production of the sea by supplying deep seawater to the sea surface will result in a sea environment with abundant fishery resources.

Analysis of Working Time of Nurses in Urban Public Health Center Branches in South Korea.: Focused on Nurses for Visiting Health Service and Chronic Disease Management (도시보건지소 간호사의 업무활동 소요시간 분석 - 방문보건 및 만성질환관리를 중심으로 -)

  • June, Kyung-Ja;Kim, Hee-Gerl;Kim, Souk-Young;So, Ae-Young;Sohn, Shin-Young;Park, Eun-Ok
    • Research in Community and Public Health Nursing
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    • v.19 no.4
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    • pp.649-659
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    • 2008
  • Purpose: The purpose of this study is to investigate working time of nurses in urban public health center branch, especially for nurses for visiting health service and chronic disease management. Method: Daily note. which was developed by this research team. was distributed to nurses at 7 urban public health center branches to be filled out them for 2 weeks during 2 month from June 2007 to August 2007. We analyzed 121 daily notes recorded by visiting nurses and 65 daily notes written by chronic disease management nurses were analyzed. Result: The total working time for visiting nurses at urban public health center branches was 589.85 minutes per day on the average. They spent 147.13 min in actual visiting nursing services, 149.36 min in documenting, 66.94 in preparing, 77.69 min in transferring, and 11.84 min in referring. The total working time for chronic disease management nurses at urban public health center branches was 582.92 minutes per day on the average. They spent 148.77 min in actual chronic disease management services, 120.62 min in documenting, 42.46 min in group education, 37.38 in preparing, and 10.38 min in referring. Conclusion: Based on the results of this study, it is recommended to improve documenting systems and to increase community resources linkage were recommended through the results of this study. The results of this study are expected to be used to plan staffing at urban public health center branches in the future.

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Biomass Production of Pinus densiflora forma erecta Uyeki by Planting Density and Its Allocation Chracteristics (식재밀도에 따른 강송의 Biomass 생산 및 배분 특성)

  • 이돈구;권기철;김영환
    • Journal of Korea Foresty Energy
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    • v.18 no.1
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    • pp.6-10
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    • 1999
  • This study was conducted to examine biomass production and its allocation characteristics by the planting density for 12- year - old Pinus densiflora forma erecta Uyeki plantation located in Chilbo Experimental Forest of Seoul National University in Suwon, Kyonggj-do. Different sample trees were selected for harvest by the planting density as follows; six trees from 1.0m X 1.0m, five trees from 1.8m X 1.8m, four trees from 3.0m X 3.0m. Stem, previous year branches, current year branches, previous year needles and current year needles were weighed respectively with the stratified clipping method, and biomass production and its allocation characteristics were analyzed : (1) Total biomass of the above-ground was the highest at the planting density of 1.8m X l.8m and followed by 1.0m X l.0m. (2) The higher the planting density was, the lower the ratio of biomass in branches and needles. (3) As the planting density decreased, the moisture contents of stem and current year branches increased but those of needles and previous year branches decreased. (4) Maximum photosynthetic layer appeared in the upper portion of the tree at higher density plantation.

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Effects of Germanium Treatment on Germanium Concentration and Flower Development in Winter Pruned Branches in 'Niitaka' Pear Trees ('신고'배 과원에서 게르마늄 처리방법이 동계전정된 가지의 게르마늄 함량과 화아에 미치는 영향)

  • Choi, Hyun-Sug;Kim, Wol-Soo;Kim, Tae-Yeon;Choi, Kyeong-Ju;Lee, Youn
    • Korean Journal of Organic Agriculture
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    • v.18 no.4
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    • pp.549-557
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    • 2010
  • This study was established on which germanium (Ge), known as one of the functional nutrients, treatment is the most effective method for increasing Ge uptake and contributing flowering development in the pruned branches in the winter. Ge treatment included foliar application, soil fertigation, trunk injection, and the three-combined application. Ge concentration in the pruned branches was greater on the three-combined treated trees, and Ge treated branches had greater Ge concentrations than the control. Pruned branches grown in the solution culture had greater bud weight and bud scale number on the Ge treated trees than the control. Ge treatments increased flowering per branch and flower number per bud as well as improved resistance of the freezing temperature damage. Overall, there were no consistent results of all the variables by the Ge application methods.

Effect of Girdling on the Flowering and Yield in Scion Rooted 'Shiranuhi' Mandarin grown in Plastic Film House (부지화 자근발생 감귤나무의 착화와 수량에 미치는 환상박피의 영향)

  • Kang, Seok-beom;Moon, Young-eel;Han, Seung-gab;Lee, Hye-jin;Choi, Yeong-hun
    • Korean Journal of Environmental Agriculture
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    • v.35 no.4
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    • pp.256-262
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    • 2016
  • BACKGROUND: 'Shiranuhi' mandarin is one of the popular citrus cultivars in Jeju Island, Korea. However, the emergence of scion roots since the past few years has altered its flowering, fruiting, and quality. Girdling of branches is one of the methods of increasing flowering in citrus trees. METHODS AND RESULTS: This experiment was conducted to determine the effect of girdling on the flowering and yields of scion rooted 'Shiranuhi' mandarin hybrid. We selected normal trees without scion roots as controls. The trees with scion roots were divided into two groups: trees without girdling and with girdling on main branches. Each group contained five replications and the experiment was conducted in Gosan and Harye of Jeju Island. The scion rooted trees revealed severely decreased flowering and low flowering/leaf ratios; however, the leaf/fruit ratio significantly increased. But, girdling on main branches significantly increased flowering and the flowering/leaf ratio. In the scion rooted trees, yields dropped due to poor flowering; however, girdling of branches efficiently improved the yields of the trees. Fruit quality, fruit size, and fruit weight of scion rooted trees were low in comparison with the control, whereas girdling of the branches improved flowering and the fruit weight to some extent. No significant difference in soluble solid contents was observed. CONCLUSION: Girdling is an effective method to induce flowering of the scion rooted 'Shiranuhi' mandarin trees. In addition, yields of scion rooted trees were improved.

An Anatomical Comparison of the Secondary Xylem in the Branch, Stem and Root of Salix glandulosa and Quercus variavilis (왕버들과 굴참나무의 뿌리, 줄기 및 가지에 있어서 이기목부(二期木部)의 해부학적(解剖學的) 비교(比較))

  • Ryu, Ha Yong;Soh, Woong Young
    • Journal of Korean Society of Forest Science
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    • v.77 no.3
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    • pp.283-293
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    • 1988
  • Anatomical features of the secondary xylem were described in the branches, stems, and roots of Salix glandulosa and Quercus variavilis. In Quercus variavilis, the stem shows ring-porous wood, while the root shows diffuse-porous wood. In both species, it is found that the boundaries between the growth rings are not well defined in the roots. Both vessel elements and fibers are the longest in the roots followed by the sterns and the branches in turn and diameter of vessel elements shows the same trend. In cross section, the number of vessels per unit area are the longest in the branches followed by the stems and the roots in turn as well. Perforation plates are simple in both species and their angles are wide in the root, intermediate in the stems, and narrow in the branches. In tangential section, height of rays is taller in the roots than in the stem and branches.

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Commercial Databases:The Keypoints and Practical Use(5) - Science and Engineering:General Branches - (상용(商用) 데이터베이스:요점(要點)과 활용(活用)(5) - 이공학(理工學):일반 -)

  • Cho, Jae-Ho
    • Journal of Information Management
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    • v.25 no.2
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    • pp.31-60
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    • 1994
  • General branches of science and engineering now enjoy being substantially repleted in their databases. However, comparing the databases of such branches with chemistry or medical science and pharmacology, the strata do not seem to be fully equipped yet. As a matter of fact, the variety of such databases in practical application is still somewhat limited. Moreover, these databases are, with a few exceptions, prepared abroad. In this paper varieties and features of databases now available on the market for each database service system, as well as crucial points for practical use are introduced. At present, it is focussed more or less on the application of bibliographical information. Yet, it would be inevitable to equip them with factual data in order to increase the efficiency of research and development activities. Of course, it is still not easy to solve problems for better profitability and higher technical achievement. The author wishes to emphasize the necessity to fully equip the commercial factual database for said branches as quickly as possible.

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A Study on Application of Combustion Products for Forest Fire Investigation (산불화재 감식을 위한 연소생성물의 응용에 관한 연구)

  • Park, Young-Ju;Lee, Hae-Pyeong
    • Journal of the Korean Society of Safety
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    • v.26 no.4
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    • pp.111-119
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    • 2011
  • This study was designed to provide basic data applicable to fire investigation through consideration of combustion products and propose vulnerability of combustibles through analysis of $CO_2$ emission. In order to achieve these research objectives, characteristics of combustion products such as smoke release rate of each part(raw leaves, branches and barks), $CO_2$ emission and ash production were considered targeting on 6 oak species(Quercus variabilis Blume, Quercus aliena Blume, Quercus serrata, Quercus mongolica Fisch, Quercus dentata Sapling and Quercus acutissima) using cone calorimeter and smoke density tester. As a result, it was found that raw leaves release smoke more relatively than branches and barks, when they burn, and that Quercus variabilis Blume has the highest smoke density. Also, Quercus acutissima released CO and $CO_2$ which are respectively, 6.67 times and 1.43 times more than Quercus variabilis Blume with low $CO_2$ emission. In addition, branches released CO and $CO_2$ more relatively. There was a big difference in ash production among raw leaves(3.1 g), branches(10.5 g) and barks(16.43 g). It was identified that Quercus serrata produces ashes which are nearly 9.95 times more than Quercus variabilis Blume. It demonstrates that Quercus serrata contains relatively higher minerals and that Quercus variabilis Blume can leave lots of traces like stain and carbonization, as it releases smoke a lot and it's difficult to predict visibility, when a forest fire breaks out in its community area. It is also considered that smoke particles containing oil in the air leave strain on the surface of a tree, and that CO and $CO_2$ emission increases, when crown fire to burn branches breaks out.

Effect of the Growth Period on Bioethanol Production from the Branches of Woody Crops Cultivated in Short-rotation Coppices

  • Jo, Jong-Soo;Jung, Ji Young;Yang, Jae-Kyung
    • Journal of the Korean Wood Science and Technology
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    • v.47 no.3
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    • pp.360-370
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    • 2019
  • Woody crops cultivated in short-rotation coppices are attractive sources of lignocellulosic materials for bioethanol production, since they are some of the most abundant renewable resources. In this study, we evaluated the effects of the growth period on bioethanol production using short-rotation woody crops (Populus nigra ${\times}$ Populus maxiwiczii, Populus euramericana, Populus alba ${\times}$ Populus glandulosa, and Salix alba). The carbohydrate contents of 3-year-old and 12-year-old short-rotation woody crop branches were 62.1-68.5% and 64.0-67.1%, respectively. The chemical compositions of 3-year-old and 12-year-old short-rotation woody crop branches did not vary significantly depending upon the growth period. However, the 3-year-old short-rotation woody crop branches (glucose conversion: 26-40%) were hydrolyzed more easily than their 12-year-old counterparts (glucose conversion: 19-24%). Furthermore, following the fermentation of enzymatic hydrolysates from the crop branch samples (by Saccharomyces cerevisiae KCTC 7296) to ethanol, the ethanol concentration of short rotation coppice woody crops was found to be higher in the 3-year-old branch samples (~ 0.18 g/g dry matter) than in the 12-year-old branch samples (~ 0.14 g/g dry matter). These results suggest that immature wood (3-year-old branches) from short-rotation woody crops could be a promising feedstock for bioethanol production.