• Title/Summary/Keyword: 군락이식

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Creating Eelgrass Beds Using Granulated Coal Ash (석탄회 조립물을 이용한 잘피군락 조성에 관한 연구)

  • Kim, Kyunghoi;Hyeon, Yejin;Hibino, Tadashi
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.22 no.7
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    • pp.814-820
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    • 2016
  • In order to utilize coal ash for eelgrass beds, a pilot plant experiment was carried out. Eelgrass was transplanted to on artificial bed made of granulated coal ash. Successful settlement of eelgrass was achieved and the density of the eelgrass increased at an exponential rate through vagetative propagation after 24 months. An increase in biodiversity in and around the artificial eelgrass bed was observed after the transplant took place. From the results of this experiment, it can be concluded that granulated coal ash is a suitable material for creating eelgrass beds.

Transplantation Method of Damage Ecosystem Associated with Development of the Borrow Pits (토취장 개발에 따른 훼손생태계 이식방안 연구)

  • Lee, Soo-Dong;Kang, Hyun-Kyung
    • Korean Journal of Environment and Ecology
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    • v.26 no.3
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    • pp.394-405
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    • 2012
  • The aim of this study was to propose methods to transplant for the ecosystem damage borrow pits. The research site is Junggun-dong Gwangyang-si Jeollanam-do. The total area of the site is approximately $199,026m^2$, but the area damaged by exploitation of soil and rocks is about $84,200m^2$. This signals the transplanting method to solve the problems of ecological destruction. The research will focus on the areas either which are evaluated as damaged or in which the development is inevitable. Therefore, this study will investigate the vegetation structure and their evolution, topological and soil character, and annual ring structure; in the end, the study will propose compensating and restoring options. This study proposed the selection of trees and their planting methods by using the models of the community transplantation(Quercus mongolica trees) and the tree transplantation(Pinus thunbergii trees). The study set out plans that will attempt to restore the Quercus mongolica forests and 89 Quercus mongolica trees of the canopy layer trees, 153 middle layer trees, and 661 shrubs are suitable. The tree transplantation utilized the existing Pinus thunbergii trees. The number of transplantation is 2,648. The total area of the transplantation topsoil is calculated to be $15,353m^3$. These study results must be contributed to reduce a damaged ecosystems and compensated damaged ecosystems for solving the problem of damaged borrow pits.

The Change of Soil Animals by Forest Ecosystem Restoration Types (산림생태계 복원유형별 토양동물 변화)

  • Kang, Hyun-Mi;Song, Jae-Tak;Choi, Song-Hyun;Kim, Dong-Hyo
    • Korean Journal of Environment and Ecology
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    • v.31 no.1
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    • pp.62-71
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    • 2017
  • In this study, in order to examine the change of soil animals by vegetation restoration types, experimental sites with biotope restoration method, forest topsoil paving method, small diameter trees planting method and multi-layer community planting method were applied and the control site was selected. The naturalness of soil animals was analysed by studying the change of soil animals. It was confirmed that the control site has a high level of the naturalness of soil animals as it includes a mixture of fauna sensitive and insensitive to environment distributed widely over the site. The experimental site with biotope restoration method showed a similar level of the naturalness of soil animals as the control site. Furthermore, the naturalness of soil animals in the experimental sites with small diameter trees planting method and multi-layer community planting method also showed a progressive restoration although the level of the naturalness of soil animals is lower than the experimental site with the biotope restoration method. Therefore, it is confirmed that the experimental site with biotope restoration method shows a faster recovery of soil animal than other sites. This is because this method uses the portion of topsoil and subsoil that were dug from the intact forest during transplantation.

Soil Environment Analysis and Habitat of Halophyte for Restoration in the Salt Marshes of Southern and Western Coasts of Korea (한국 서.남해안 염습지 복원을 위한 염생식물의 생육지와 토양환경 분석)

  • Lee, Jeom-Sook;Ilm, Byung-Sun;Myeong, Hyen-Ho;Park, Jung-Won;Kim, Ha-Song
    • Korean Journal of Plant Resources
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    • v.22 no.1
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    • pp.102-110
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    • 2009
  • This study examined the halophyte community and soil analysis according to habitat in representative 18 salt marshes of southern and western coasts of Korea from July 2006 to April 2008 and suggested basic materials for vegetational restoration of these aras. First, the survey area was classified into coastal and estuarine marshes. Then, the coastal marshes were classified into clay marsh, sand gravel marsh, and sand marsh, and the esturarine marshes, into salt swamp and estuary marsh. Major plant communities according to habitat pattern were Phragmites communis, Carex scabrifolia, and Suaeda japonica community in the clay marsh; Phragmites communis, Zoysia sinica, Carex scabrifolia, Salicornia herbacea, Artemisia fukudo, Suaeda martima community in the sand gravel marsh; Elymus mollis, Carex kobomugi, and Vitex rotundifolia community in the sand mars; Phragmites communis, Zoysia sinica, Suaeda martima, and Carex scabrifolia community in the salt swamp, and Suaeda japonica, Phragmites communis, Carex scabrifolia, and Suaeda asparagoides community in the estuary marsh. The soil environment of halophyte community area showed a difference to soil and halophyte community according to habitat characteristics of halophyte. Thus, to restore salt mashes in the coast area, it is advantageous for the stable settlement, germination, and growth of halophyte to grasp physical and physicochemical characteristics of habitat soil in the salt marshes, to select halophyte suitable to these habitat conditions, and to expand gradually in the natural vegetation area after transplantation.

A Study on Plant in Submerged Area of Hoengseong Dam -Centered with Subdivided Area to Select Plants Capable of Transfer- (횡성댐 수몰지역내(水沒地域內)의 식생(植生)에 관(關)한 연구(硏究) -이식대상구역(移植對象區域)을 중심(中心)으로-)

  • Lee, Woo-Cheol;Lee, Ki-Eui;Seo, Ok-Ha;Jo, Hyun-Kil;Baic, Weon-Kee;Kim, Kyoung-Jin
    • Journal of Forest and Environmental Science
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    • v.13 no.1
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    • pp.28-50
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    • 1997
  • This study was carried out in a part of conservative plans recovering natural ecosystem which will be submerged, as Hoengseong dam is being constructed around Hoengseong-Eup and Gabcheon-Myun. The submerged area was divided into 7 small areas to figure out what kinds of species of plants are and will be according to detailed geographic characteristics. In the center of the subdivided areas, Degree of Green Naturality, standing biomass, net 36production per year, and composition of plant species were investigated. The results are as following; 1. The surveyed area was classified into 8 degree by Degree of Green Naturality, and the appeared degree and the rate of occupation were 0(3.1%), 1(5.3%), 2(28.2%), 3(0.1%), 5(0.2%), 7(4.6%), 7(44.7%), and 8(13.8%). 2. Standing biomass was 88,436.3 ton/year and net production per year was 12,960.3 ton/year. 3. The list of vascular plants identified in this study consisted of 86 families, 221 genera, 1 variety, 3 formae and 306 species, totally summiting upto 310 species. 4. The 7 surveyed areas were largely occupied by Pinus community. In addition, there were Quercus mongolica, Quercus dentata, and Quercus acutissima communities.

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Monitoring for the Restoration of Evergreen Broad-leaved forest in Warm Temperate Region(II) (난대 기후대의 상록활엽수림 복원 모니터링(II))

  • 오구균;최송현;나경태;김성현
    • Korean Journal of Environment and Ecology
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    • v.17 no.4
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    • pp.316-323
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    • 2004
  • In order to monitor the vegetation restoration in the evergreen broad-leaved forest, eighteen experimental plots including control plots were established at Wando Arboretum in 1996. Several treatments such as density control, selective cutting and warm temperate species planting were done in the experimental plots. Seven years after the restoration experiments, the important percentage of Quercus acuta showed a tendency to a higher increase in the experiment plots than control plots in Q. Acutu. Also the important percentage of Q. Acuta in Q. acute Carpinus tschonoskii community increased in the tree layer. Pinus densiflora community was increased highly in important percentage of Q. Acuta, As a whole, vegetation structure in the experiment plot showed successional stage to Q. Acutu community. In addition, important percentage of evergreen broad-leaved trees and shrubs and number of warm temperate species and basal area were increased in the experiment plots while the introduced evergreen broad-leaved trees were declined.

미나미아키가와 산림유역의 식물군락에 관한 고찰 -미나미아키가와 유역의 관속 식물상-

  • 안영희;이성기;김재헌;윤용한
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2003.05a
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    • pp.348-350
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    • 2003
  • 산지 개발로 인한 미나미아키가와유역의 임지훼손 예정지에서 실시한 식물상의 조사결과 일본의 환경청과 자연보호협회 등 각 기관에서 지정 관리하는 식물 중 학술적, 사회적으로 주목되는 식물이 11과, 12종, 2변종 확인되었다. 따라서 임도개설이 실시될 경우 푸른개고사리, 섬잔고사리, 좀물통이, 산작약, 세잎진달래, 난과의 새우난초 등 개체가 확인된 종에 대하여 잔토처리장 등 적절한 장소에 이식하여 보전할 필요가 있는 것으로 사료되며, 주요 개체 확인 부근에서의 공사는 주의하여 실시하여야 한다.

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Changes in Morphological Characteristics and Productivity of $Zostera$ $caespitosa$ Transplants (이식된 포기거머리말($Zostera$ $caespitosa$)의 형태적 특성 및 생산성의 변화)

  • Park, Jung-Im;Park, Jae-Yeong;Lee, Kun-Seop;Son, Min-Ho
    • Korean Journal of Environmental Biology
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    • v.30 no.1
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    • pp.47-53
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    • 2012
  • To evaluate adaptation success of $Zostera$ $caespitosa$ transplants, we transplanted the seagrass shoots at the bare area in close proximity to the donor bed using staple method in October 2005. Shoot density, morphological characteristics and leaf productivity of transplants and reference plants in the vicinity of the planting site were monitored monthly for 2 years. While shoot density of reference plants exhibited significant seasonal variations; increasing during spring and summer and decreasing during fall and winter, that of transplants increased consistently without initial loss during the whole study period. Although sheath length, leaf width and shoot height and weight of sheath, leaf and shoot of transplants were smaller than those of reference plants at the start of transplantation, increased rapidly reaching even higher values than those of reference plants 5 months after transplantation. Leaf productivity of transplants and reference plants showed seasonal variations; increasing during spring and summer and decreasing during fall and winter. But, leaf productivity of transplants increased at the beginning of transplantation during fall which is low production period. All of the $Z.$ $caespitosa$ transplants survived during the whole study period. Rapid changes in shoot morphology and growth of transplants indicated that $Z.$ $caespitosa$ transplants had great morphological plasticity and adapted successfully within 5 months.