• 제목/요약/키워드: Reclamation demand

검색결과 36건 처리시간 0.026초

Principle of restoration ecology reflected in the process creating the National Institute of Ecology

  • Kim, A. Reum;Lim, Bong Soon;Seol, Jaewon;Lee, Chang Seok
    • Journal of Ecology and Environment
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    • 제45권3호
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    • pp.105-116
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    • 2021
  • Background: The creation of the National Institute of Ecology began as a national alternative project to preserve mudflats instead of constructing the industrial complexes by reclamation, and achieve regional development. On the other hand, at the national level, the research institute for ecology was needed to cope with the worsening conditions for maintaining biodiversity due to accelerated climate change such as global warming and increased demand for development. In order to meet these needs, the National Institute of Ecology has the following objectives: (1) carries out studies for ecosystem change due to climate change and biodiversity conservation, (2) performs ecological education to the public through exhibition of various ecosystem models, and (3) promotes regional development through the ecological industry. Furthermore, to achieve these objectives, the National Institute of Ecology thoroughly followed the basic principles of ecology, especially restoration ecology, in the process of its construction. We introduce the principles and cases of ecological restoration applied in the process. Results: We minimized the impact on the ecosystem in order to harmonize with the surrounding environment in all the processes of construction. We pursued passive restoration following the principle of ecological restoration as a process of assisting the recovery of an ecosystem degraded for all the space except in land where artificial facilities were introduced. Reference information was applied thoroughly in the process of active restoration to create biome around the world, Korean peninsula forests, and wetland ecosystems. In order to realize true restoration, we pursued the ecological restoration in a landscape level as the follows. We moved the local road 6 and high-voltage power lines to underground to ensure ecological connectivity within the National Institute of Ecology campus. To enhance ecological diversity, we introduced perch poles and islands as well as floating leaved, emerged, wetland, and riparian plants in wetlands and mantle communities around the forests of the Korean Peninsula in the terrestrial ecosystem. Furthermore, in order to make the public aware of the importance of the intact nature, the low-lying landscape elements, which have disappeared due to excessive land use in most areas of Korea, was created by imitating demilitarized zone (DMZ) landscape that has these landscape elements. Conclusions: The National Institute of Ecology was created in an eco-friendly way by thoroughly reflecting the principles of ecology to suit its status and thus the impact on the existing ecosystem was minimized. This concept was also designed to be reflected in the process of operation. The results have become real, and a result of analysis on carbon budget analysis is approaching the carbon neutrality.

폐광산 채움재와 암반 경계부의 전단 및 접합특성에 관한 기초 연구 (A Fundamental Study on Shearing/Bonding Characteristics of Interface Between Rock Mass and Backfills in Mine Openings)

  • 김병렬;이현우;김영진;조계홍;최성웅
    • 터널과지하공간
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    • 제31권6호
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    • pp.623-646
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    • 2021
  • 국내외적으로 전기화의 가속으로 인해 전력수요가 급증됨에 따라, 석탄화력발전소의 수요가 늘어나고 있다. 석탄화력발전소는 경제적으로 많은 이점이 있지만, 대기오염물질 증가, 발전회의 매립 처분에 의한 오염 유발 가능성 등의 환경적인 문제를 수반하고 있다. 특히, 발전부산물인 발전회의 경우에는 재활용률이 70%에 그치고 있으며, 나머지는 전량 매립되고 있다. 본 연구에서는 발전회의 재활용률을 증대시키고 지하에 위치하는 폐광산의 지반 안정성을 확보하기 위하여, 발전회를 폐광산 채움재로 이용하여 지하 폐광산의 채굴 공동을 충전하는 방안에 대한 기초연구를 수행하였다. 암반과 폐광산 채움재의 접합부에서 상호작용에 의한 충전 및 지반보강 효과를 분석하기 위하여, 다양한 거칠기를 갖는 절리면 모사 시료를 제작하여 접합강도 시험과 직접 전단시험을 수행하고 이에 대한 통계분석을 수행하여 절리면의 거칠기와 재령일에 따른 접합 및 전단거동 특성을 규명하였다. 또한 접합부 거동특성이 전산해석 기법을 이용한 지반안정성 분석에 미치는 영향을 검토하기 위하여 지하광산을 모델링하고 접합부 유무에 따른 거동특성을 비교하였다.

국내외 골재산업 동향 연구 (Study on the Trend of Aggregate Industry)

  • 채광석;구남인;이영근;양희문;박기형
    • 광물과 암석
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    • 제36권2호
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    • pp.135-145
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    • 2023
  • 골재(aggregate)는 콘크리트(concrete) 또는 아스팔트(asphalt)와 같은 안정화된 재료를 생산하는데 사용되며 주택, 산업, 도로, 에너지 및 건강에 대한 사회적 요구를 충족시키는데 기본이 된다. 2021년 세계 골재 생산량은 423억 5천만톤으로 전년도 419억 7천만톤과 비교하여 0.91% 증가하였고 중국, 인도, 유럽연합(EU) 및 미국(USA)만 20억만톤 이상 골재를 생산하여 점유율은 71.75%로 나타났다. 우리나라는 골재 생산이 지속적으로 증가하여 3억 9천만톤, 점유율 0.85%로 멕시코 및 일본을 추월하여 7위를 차지하였다. 전세계적으로 산업용 모래 및 자갈은 3억 5천만톤이 생산되었고, 상위 국가 순위는 중국, 미국, 네델란드, 이탈리아, 인도, 튀르키예 및 프랑스로 나타났다. 7개 국가만 천만톤 이상 생산하여 전체 점유율이 74.69%를 차지했다. 골재 수출액은 전년도 천연석 193.7억 달러, 인공석 109.3억 달러와 비교하여 천연석은 23.1억 달러, 인공석은 26.6억 달러 증가해 각각 216.8억 달러, 135.9억 달러로 나타났다. 모래 수출액은 총 17.1억 달러이며 상위 국가 순위는 미국, 네델란드, 독일 및 벨기에으로 나타났으며, 4개 국가만 1억 달러이상 수출하여 전체 점유율이 57.70%을 차지했다. 자갈 수출액은 총 27.5억 달러이며 상위 국가 순위는 중국, 노르웨이, 독일, 벨기에, 프랑스 및 오스트리아로 나타났고, 6개 국가만 1억 달러이상 수출하여 전체 점유율이 48.30%를 차지했다. 1950년대 이후 골재 채석은 인구 증가, 도시화, 기반 시설 개발 및 생활방식의 변화로 인해 급속도로 증가했다. 또한 해수면 상승으로 인한 토지 간척 및 홍수 방지를 위해 막대한 양의 골재를 필요로 한다. 2011~2060년에 골재 채석 규모와 수요가 연간 24Gt에서 55Gt로 두배로 증가할 것으로 예상된다. 그러나 골재 채취로 피해를 받는 생태계를 돌이킬 수 없는 상황까지 진행될 가능성이 높으며, 세계적으로 골재 부족과 사회적 갈등이 증가할 것으로 전망된다.

한국의 지역개발과 댐건설 (Regional Development And Dam Construction in Korea)

  • 안경모
    • 물과 미래
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    • 제9권1호
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    • pp.38-42
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    • 1976
  • Because of differences in thoughts and ideology, our country, Korea has been deprived of national unity for some thirty years of time and tide. To achieve peaceful unification, the cultivation of national strength is of paramount importance. This national strength is also essential if Korea is to take rightful place in the international societies and to have the confidence of these societies. However, national strength can never be achieved in a short time. The fundamental elements in economic development that are directly conducive to the cultivation of national strength can be said to lie in -a stable political system, -exertion of powerful leadership, -cultivation of a spirit of diligence, self-help and cooperation, -modernization of human brain power, and -establishment of a scientific and well planned economic policy and strong enforcement of this policy. Our country, Korea, has attained brilliant economic development in the past 15 years under the strong leadership of president Park Chung Hee. However, there are still many problems to be solved. A few of them are: -housing and home problems, -increasing demand for employment, -increasing demand for staple food and -the need to improve international balance of payment. Solution of the above mentioned problems requires step by step scientific development of each sector and region of our contry. As a spearhead project in regional development, the Saemaul Campaign or new village movement can be cited. The campaign is now spreading throughout the country like a grass fire. However, such campaigns need considerable encouragement and support and the means for the desired development must be provided if the regional and sectoral development program is to sucdceed. The construction of large multipurpose dams in major river basin plays significant role in all aspects of national, regional and sectoral development. It ensures that the water resource, for which there is no substitute, is retained and utilized for irrigation of agricultural areas, production of power for industry, provision of water for domestic and industrial uses and control of river water. Water is the very essence of life and we must conserve and utilize what we have for the betterment of our peoples and their heir. The regional and social impact of construction of a large dam is enormous. It is intended to, and does, dras tically improve the "without-project" socio-economic conditions. A good example of this is the Soyanggang multipurpose dam. This project will significantly contribute to our national strength by utilizing the stored water for the benefit of human life and relief of flood and drought damages. Annual average precipitation in Korea is 1160mm, a comparatively abundant amount. The catchment areas of the Han River, Keum River, and Youngsan River are $62,755\textrm{km}^2$, accounting for 64% of the national total. Approximately 62% of the national population inhabits in this area, and 67% of the national gross product comes from the area. The annual population growth rate of the country is currently estimated at 1.7%, and every year the population growth in urban area increases at a rising rate. The population of Seoul, Pusan, and Taegu, the three major cities in Korea, is equal to one third of our national total. According to the census conducted on October 1, 1975, the population in the urban areas has increased by 384,000, whereas that in rural areas has decreased by 59,000,000 in the past five years. The composition of population between urban and rural areas varied from 41%~59% in 1959 to 48%~52% in 1975. To mitigate this treand towards concentration of population in urban areas, employment opportunities must be provided in regional and rural areas. However, heavy and chemical industries, which mitigate production and employment problems at the same time, must have abundant water and energy. Also increase in staple food production cannot be attained without water. At this point in time, when water demand is rapidly growing, it is essential for the country to provide as much a reservoir capacity as possible to capture the monsoon rainfall, which concentarated in the rainy seaon from June to Septesmber, and conserve the water for year round use. The floods, which at one time we called "the devil" have now become a source of immense benefit to Korea. Let me explain the topographic condition in Korea. In northern and eastern areas we have high mountains and rugged country. Our rivers originate in these mountains and flow in a general southerly or westerly direction throught ancient plains. These plains were formed by progressive deposition of sediments from the mountains and provide our country with large areas of fertile land, emminently suited to settlement and irrigated agricultural development. It is, therefore, quite natural that these areas should become the polar point for our regional development program. Hower, we are fortunate in that we have an additional area or areas, which can be used for agricultural production and settlement of our peoples, particularly those peoples who may be displaced by the formation of our reservoirs. I am speaking of the tidelands along the western and southern coasts. The other day the Ministry of Agriculture and Fishery informed the public of a tideland reclamation of which 400,000 hectares will be used for growing rice as part of our national food self-sufficiency programme. Now, again, we arrive at the need for water, as without it we cannot realize this ambitious programme. And again we need those dams to provide it. As I mentioned before, dams not only provide us with essential water for agriculture, domestic and industrial use, but provide us with electrical energy, as it is generally extremely economical to use the water being release for the former purposes to drive turbines and generators. At the present time we have 13 hydro-electric power plants with an installed capacity of 711,000 kilowatts equal to 16% of our national total. There are about 110 potential dams ites in the country, which could yield about 2,300,000 kilowatts of hydro-electric power. There are about 54 sites suitable for pumped storage which could produce a further 38,600,000 kilowatts of power. All available if we carefully develop our water resources. To summarize, water resource development is essential to the regional development program and the welfare of our people, it must proceed hand-in-hand with other aspects of regional development such as land impovement, high way extension, development of our forests, erosion control, and develop ment of heavy and chemical industries. Through the successful implementation of such an integrated regional development program, we can look forward to a period of national strength, and due recognition of our country by the worlds societies.

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Bottom Ash 혼합토의 자중압밀 특성 연구 (A Study on Characteristics of Self-weight Consolidation of Bottom Ash Mixed Soil)

  • 윤원섭;신승구;채영수
    • 한국지반신소재학회논문집
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    • 제14권4호
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    • pp.59-77
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    • 2015
  • 본 연구에서는 매립재료에 대한 새로운 요구를 만족하기 위해 석탄회(bottom ash)와 해안준설토를 혼합한 혼합토를 준설매립지반에 적용하기 위한 연구를 계획하였다. 화력발전소에서 발생되는 석탄회는 크게 비회와 저회로 구분된다. 비회의 경우 입자가 작아 재활용 시 투수계수가 작기 때문에 환경적인 부분에서 문제가 제기되지 않아 연구가 많이 진행되었으나 저회의 경우 입도가 크고 투수계수가 커 재활용 시 환경적인 문제가 제기되어 그동안은 활용이 제한되었다. 하지만 최근에 발표된 연구결과에 따르면 bottom ash를 활용한 지반개량구간에서 추출한 침출수의 수질분석 실험을 실시한 연구결과 중금속 오염수치가 기준치 이내로 나타나 환경적인 문제는 크게 없는 것으로 나타나 향후 bottom ash의 활용이 크게 늘어날 것으로 평가된다. 이러한 bottom ash는 모래의 입도를 가지고 있으며, 그동안은 대부분이 폐기되기 때문에 재료 수급 시 운반비만 고려하면 되며, 대부분의 화력발전소가 해안에 위치하고 있어 배를 이용하여 운반하면 운반비를 줄일 수 있어 경제적인 측면에서도 준설매립에 가장 적당한 재료로 판단된다. 또한 새만금사업 등 해안준설 매립에 대한 수요가 크기 때문에 준설토보다 시공기간과 공사비 절감의 효과를 극대화할 수 있는 혼합토의 연구가 필요한 것으로 판단된다. 따라서 본 연구에서는 최근 해안매립지반의 새로운 개발 요구에 따라 bottom ash와 카올리나이트를 혼합한 혼합토에 대한 실내 자중압밀실험을 실시, 혼합토의 시료처리과정과 혼합방법에 따른 자중압밀특성에 대해 연구하였으며, 이 연구결과는 향후 대규모 해안 준설매립지반의 적용시 기초자료로 활용이 가능할 것으로 판단된다.

A Laboratory-Scale Study of the Applicability of a Halophilic Sediment Bioelectrochemical System for in situ Reclamation of Water and Sediment in Brackish Aquaculture Ponds: Effects of Operational Conditions on Performance

  • Pham, Hai The;Vu, Phuong Ha;Nguyen, Thuy Thu Thi;Bui, Ha Viet Thi;Tran, Huyen Thanh Thi;Tran, Hanh My;Nguyen, Huy Quang;Kim, Byung Hong
    • Journal of Microbiology and Biotechnology
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    • 제29권10호
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    • pp.1607-1623
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    • 2019
  • Sediment bioelectrochemical systems (SBESs) can be integrated into brackish aquaculture ponds for in-situ bioremediation of the pond water and sediment. Such an in-situ system offers advantages including reduced treatment cost, reusability and simple handling. In order to realize such an application potential of the SBES, in this laboratory-scale study we investigated the effect of several controllable and uncontrollable operational factors on the in-situ bioremediation performance of a tank model of a brackish aquaculture pond, into which a SBES was integrated, in comparison with a natural degradation control model. The performance was evaluated in terms of electricity generation by the SBES, Chemical oxygen demand (COD) removal and nitrogen removal of both the tank water and the tank sediment. Real-life conditions of the operational parameters were also experimented to understand the most close-to-practice responses of the system to their changes. Predictable effects of controllable parameters including external resistance and electrode spacing, similar to those reported previously for the BESs, were shown by the results but exceptions were observed. Accordingly, while increasing the electrode spacing reduced the current densities but generally improved COD and nitrogen removal, increasing the external resistance could result in decreased COD removal but also increased nitrogen removal and decreased current densities. However, maximum electricity generation and COD removal efficiency difference of the SBES (versus the control) could be reached with an external resistance of $100{\Omega}$, not with the lowest one of $10{\Omega}$. The effects of uncontrollable parameters such as ambient temperature, salinity and pH of the pond (tank) water were rather unpredictable. Temperatures higher than $35^{\circ}C$ seemed to have more accelaration effect on natural degradation than on bioelectrochemical processes. Changing salinity seriously changed the electricity generation but did not clearly affect the bioremediation performance of the SBES, although at 2.5% salinity the SBES displayed a significantly more efficient removal of nitrogen in the water, compared to the control. Variation of pH to practically extreme levels (5.5 and 8.8) led to increased electricity generations but poorer performances of the SBES (vs. the control) in removing COD and nitrogen. Altogether, the results suggest some distinct responses of the SBES under brackish conditions and imply that COD removal and nitrogen removal in the system are not completely linked to bioelectrochemical processes but electrochemically enriched bacteria can still perform non-bioelectrochemical COD and nitrogen removals more efficiently than natural ones. The results confirm the application potential of the SBES in brackish aquaculture bioremediation and help propose efficient practices to warrant the success of such application in real-life scenarios.