• 제목/요약/키워드: Natural power energy

검색결과 584건 처리시간 0.028초

혹한기 광산배수 처리 공정 내 황산염 환원 박테리아의 활성 증진을 위한 발광다이오드의 이용 제안 (Use of Light Emitting Diode for Enhanced Activity of Sulfate Reducing Bacteria in Mine Drainage Treatment Process Under Extreme Cold)

  • 최유진;최연우;이안나;김경웅
    • 자원환경지질
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    • 제50권3호
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    • pp.251-256
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    • 2017
  • 본 연구는 폐광산에서 배출되는 산성광산배수가 하천수 및 지하수에 유출되면서 발생되는 환경 오염들을 막기 위해 생물학적 자연정화 처리 방법인 연속적 알칼리도 생성 시스템의 효율을 증대 시키는 방안에 관한 연구이다. 연속적 알칼리도 생성 시스템를 이용한 산성광산배수의 처리는 대부분 황산염 환원 박테리아를 이용한 생물학적 처리 기술이며, 실제 현장 적용실험에서 그 효과가 증명되었고, 광산배수 정화 사업에 적용하도록 개발된 사례가 많다. 그러나 계절적인 온도 저하로 기온이 매우 낮은 겨울이나 초봄 동안에는 황산염 환원 박테리아가 생존은 가능하더라도 황산염을 환원시키는 활동이 거의 멈추게 되어 지속적인 산성광산배수 처리 효율에 문제점을 야기한다. 본 연구에서는 연속적 알칼리도 생성 시스템에 발광 다이오드를 접목하여 유기물 층의 황산염 환원 박테리아 활성을 증진시키고, 온도가 낮은 겨울철에도 발광 다이오드의 발열 효과를 이용하여 활성 온도를 유지 할 수 있는 방안을 제안한다. 더불어, 산성광산배수 처리 시설은 전력을 쉽게 공급할 수 없는 곳에 위치한 지리적인 특성을 고려하여, 발광 다이오드에 전원을 공급할 수 있는 전원 공급 장치로 태양 전지 모듈 사용을 제안한다. 본 방법을 통하여 추가적 연구들이 진행된다면, 태양광 에너지와 발광 다이오드를 융합한 친환경적인 방법을 이용하여 겨울철에도 산성광산배수 처리 기술의 효율을 극대화 할 수 있을 것이다.

태양에너지를 이용한 곡물건조시스템의 시뮬레이션에 관한 연구 (Simulation of Drying Grain with Solar-Heated Air)

  • 금동혁;김용운
    • Journal of Biosystems Engineering
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    • 제4권2호
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    • pp.65-83
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    • 1979
  • Low-temperature drying systems have been extensively used for drying cereal grain such as shelled corn and wheat. Since the 1973 energy crisis, many researches have been conducted to apply solar energy as supplemental heat to natural air drying systems. However, little research on rough rice drying has been done in this area, especially very little in Korea. In designing a solar drying system, quality loss, airflow requirements, temperature rise of drying air, fan power and energy requirements should be throughly studied. The factors affecting solar drying systems are airflow rate, initial moisture content, the amount of heat added to drying air, fan operation method and the weather conditions. The major objectives of this study were to analyze the effects of the performance factors and determine design parameters such as airflow requirements, optimum bed depth, optimum temperature rise of drying air, fan operation method and collector size. Three hourly observations based on the 4-year weather data in Chuncheon area were used to simulate rough rice drying. The results can be summarized as follows: 1. The results of the statistical analysis indicated that the experimental and predicted values of the temperature rise of the air passing through the collector agreed well. 2. Equilibrium moisture content was affected a little by airflow rate, but affected mainly by the amount of heat added, to drying air. Equilibrium moisture content ranged from 12.2 to 13.2 percent wet basis for the continuous fan operation, from 10.4 to 11.7 percent wet basis for the intermittent fan operation respectively, in range of 1. 6 to 5. 9 degrees Centigrade average temperature rise of drying air. 3. Average moisture content when top layer was dried to 15 percent wet basis ranged from 13.1 to 13.9 percent wet basis for the continuous fan operation, from 11.9 to 13.4 percent wet basis for the intermittent fan operation respectively, in the range of 1.6 to 5.9 degrees Centigrade average temperature rise of drying air and 18 to 24 percent wet basis initial moisture content. The results indicated that grain was overdried with the intermittent fan operation in any range of temperature rise of drying air. Therefore, the continuous fan operation is usually more effective than the intermittent fan operation considering the overdrying. 4. For the continuous fan operation, the average temperature rise of drying air may be limited to 2.2 to 3. 3 degrees Centigrade considering safe storage moisture level of 13.5 to 14 perceut wet basis. 5. Required drying time decrease ranged from 40 to 50 percent each time the airflow rate was doubled and from 3.9 to 4.3 percent approximately for each one degrees Centigrade in average temperature rise of drying air regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on required drying time. 6. Required drying time increase ranged from 18 to 30 percent approximately for each 2 percent increase in initial moisture content regardless of the fan operation methods, in the range of 18 to 24 percent moisture. 7. The intermittent fan operation showed about 36 to 42 percent decrease in required drying time as compared with the continuous fan operation. 8. Drymatter loss decrease ranged from 34 to 46 percent each time the airflow rate was doubled and from 2 to 3 percent approximately for each one degrees Centigrade in average temperature rise of drying air, regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on drymatter loss. 9. Drymatter loss increase ranged from 50 to 78 percent approximately for each 2 percent increase in initial moisture content, in the range of 18 to 24 percent moisture. 10. The intermittent fan operation: showed about 40 to 50 percent increase in drymatter loss as compared with the continuous fan operation and the increasing rate was higher at high level of initial moisture and average temperature rise. 11. Year-to-year weather conditions had a little effect on required drying time and drymatter loss. 12. The equations for estimating time required to dry top layer to 16 and 1536 wet basis and drymatter loss were derived as functions of the performance factors. by the least square method. 13. Minimum airflow rates based on 0.5 percent drymatter loss were estimated. Minimum airflow rates for the intermittent fan operation were approximately 1.5 to 1.8 times as much as compared with the continuous fan operation, but a few differences among year-to-year. 14. Required fan horsepower and energy for the intermittent fan operation were 3. 7 and 1. 5 times respectively as much as compared with the continuous fan operation. 15. The continuous fan operation may be more effective than the intermittent fan operation considering overdrying, fan horsepower requirements, and energy use. 16. A method for estimating the required collection area of flat-plate solar collector using average temperature rise and airflow rate was presented.

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태양에너지를 이용한 곡물건조시스템의 시뮬레이션에 관한 연구 (Simulation of Drying Grain with Solar-Heated Air)

  • 금동혁
    • Journal of Biosystems Engineering
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    • 제4권2호
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    • pp.64-64
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    • 1979
  • Low-temperature drying systems have been extensively used for drying cereal grain such as shelled corn and wheat. Since the 1973 energy crisis, many researches have been conducted to apply solar energy as supplemental heat to natural air drying systems. However, little research on rough rice drying has been done in this area, especially very little in Korea. In designing a solar drying system, quality loss, airflow requirements, temperature rise of drying air, fan power and energy requirements should be throughly studied. The factors affecting solar drying systems are airflow rate, initial moisture content, the amount of heat added to drying air, fan operation method and the weather conditions. The major objectives of this study were to analyze the effects of the performance factors and determine design parameters such as airflow requirements, optimum bed depth, optimum temperature rise of drying air, fan operation method and collector size. Three hourly observations based on the 4-year weather data in Chuncheon area were used to simulate rough rice drying. The results can be summarized as follows: 1. The results of the statistical analysis indicated that the experimental and predicted values of the temperature rise of the air passing through the collector agreed well.2. Equilibrium moisture content was affected a little by airflow rate, but affected mainly by the amount of heat added, to drying air. Equilibrium moisture content ranged from 12.2 to 13.2 percent wet basis for the continuous fan operation, from 10.4 to 11.7 percent wet basis for the intermittent fan operation respectively, in range of 1. 6 to 5. 9 degrees Centigrade average temperature rise of drying air.3. Average moisture content when top layer was dried to 15 percent wet basis ranged from 13.1 to 13.9 percent wet basis for the continuous fan operation, from 11.9 to 13.4 percent wet basis for the intermittent fan operation respectively, in the range of 1.6 to 5.9 degrees Centigrade average temperature rise of drying air and 18 to 24 percent wet basis initial moisture content. The results indicated that grain was overdried with the intermittent fan operation in any range of temperature rise of drying air. Therefore, the continuous fan operation is usually more effective than the intermittent fan operation considering the overdrying.4. For the continuous fan operation, the average temperature rise of drying air may be limited to 2.2 to 3. 3 degrees Centigrade considering safe storage moisture level of 13.5 to 14 perceut wet basis.5. Required drying time decrease ranged from 40 to 50 percent each time the airflow rate was doubled and from 3.9 to 4.3 percent approximately for each one degrees Centigrade in average temperature rise of drying air regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on required drying time.6. Required drying time increase ranged from 18 to 30 percent approximately for each 2 percent increase in initial moisture content regardless of the fan operation methods, in the range of 18 to 24 percent moisture.7. The intermittent fan operation showed about 36 to 42 percent decrease in required drying time as compared with the continuous fan operation.8. Drymatter loss decrease ranged from 34 to 46 percent each time the airflow rate was doubled and from 2 to 3 percent approximately for each one degrees Centigrade in average temperature rise of drying air, regardless of the fan operation methods. Therefore, the average temperature rise of drying air had a little effect on drymatter loss. 9. Drymatter loss increase ranged from 50 to 78 percent approximately for each 2 percent increase in initial moisture content, in the range of 18 to 24 percent moisture. 10. The intermittent fan operation: showed about 40 to 50 percent increase in drymatter loss as compared with the continuous fan operation and the increasing rate was higher at high level of initial moisture and average temperature rise.11. Year-to-year weather conditions had a little effect on required drying time and drymatter loss.12. The equations for estimating time required to dry top layer to 16 and 1536 wet basis and drymatter loss were derived as functions of the performance factors. by the least square method.13. Minimum airflow rates based on 0.5 percent drymatter loss were estimated.Minimum airflow rates for the intermittent fan operation were approximately 1.5 to 1.8 times as much as compared with the continuous fan operation, but a few differences among year-to-year.14. Required fan horsepower and energy for the intermittent fan operation were3. 7 and 1. 5 times respectively as much as compared with the continuous fan operation.15. The continuous fan operation may be more effective than the intermittent fan operation considering overdrying, fan horsepower requirements, and energy use.16. A method for estimating the required collection area of flat-plate solar collector using average temperature rise and airflow rate was presented.

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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고준위방사성폐기물 심층처분에 미치는 황산염과 황화물의 영향에 대한 고찰 (A Review of the Influence of Sulfate and Sulfide on the Deep Geological Disposal of High-level Radioactive Waste)

  • 김진석;이승엽;이상호;권장순
    • 자원환경지질
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    • 제56권4호
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    • pp.421-433
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    • 2023
  • 원자력발전소의 사용후핵연료(Spent Nuclear Fuel: SNF)에 대한 최종처분은 지하 심부의 지질학적 저장소에서 이루어진다. 사용후핵연료를 감싸는 금속처분용기는 주철과 구리 등으로 제작되어 방사성핵종을 장기간 격리할 예정이며, 공학적방벽과 천연방벽으로 구성된 다중방벽처분시스템에 의해 보호를 받도록 설계된다. 지하 심부의 환경(심층처분환경)은 점차 무산소의 환원환경으로 바뀌게 되며, 이러한 환경에서 구리처분용기의 부식을 일으킬 수 있는 유력한 물질 중 하나는 황화물이다. 황화물에 의한 응력균열부식은 구리처분용기의 안정성을 크게 저하시켜 처분장의 장기안전성에 큰 영향을 미칠 수 있다. 심층처분환경에는 황산염이 다양한 형태로 존재 또는 유입될 수 있으며, 황산염환원미생물에 의해 황화물로 전환되어 구리처분용기의 부식에 기여할 수 있다. 완충재와 뒤채움재의 유력한 후보물질인 벤토나이트에는 주로 석고(CaSO4)와 같은 산화형태의 황산염 광물이 포함되어 있다. 심층처분환경 내에 미생물이 생장할 만한 공간이 있고 유기 탄소 등 전자공여체가 충분히 공급된다면 미생물 활동에 의해 황산염이 황화물로 환원될 수 있다. 하지만 근계영역에서 생성된 황화물과 지권으로부터 유입되는 황화물 중 대부분은 완충재에 의해 차단되어 극히 일부만이 처분용기에 도달할 것이다. 처분환경에서 존재가능한 황화철 광물 중 하나인 황철석은 용해과정에서 황산염을 발생시켜 구리처분용기의 부식에 기여할 수 있다. 하지만 황철석의 극히 낮은 용해도로 인해 산화 생성물의 양은 매우 적을 것이고 포화된 벤토나이트의 낮은 수리전도도로 인해 처분용기로 산화 생성물의 이동은 제한될 것이다. 우리는 심층처분환경에서 황산염의 존재와 환원 그리고 황화물과 황철석의 형성 및 거동 특성 등에 관한 주요 연구 사례 등을 종합적으로 분석, 정리하였고, 고준위방사성폐기물 처분장의 장기안전성에 대한 황산염과 황화물의 영향을 이해하고자 하였다.

동.서양 해자(垓字)의 비교 고찰 (A Comparative Considerations of the Moat at the East and West)

  • 정용조;박주성;심우경
    • 한국전통조경학회지
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    • 제28권3호
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    • pp.29-38
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    • 2010
  • 해자란 성벽 외곽에 파 놓은 못 또는 물길로 적이 성벽에 직접 접근할 수 없도록 하거나 이를 경계로 공간을 구분하고자 설치된 시설의 하나로, 본 연구에서는 고대로부터 중세에 이르기까지 동양과 서양에서 존재했던 해자의 특성을 비교하기 위한 것으로 수행한 연구의 결과는 다음과 같다. 첫째, 동양의 해자는 자연적 해자와 인공적 해자를 동시에 설치하였으나, 서양의 해자는 천연의 요새지에 성(城)을 쌓아 자연적 해자를 많이 활용하였다. 둘째, 한국의 해자는 일본 및 중국, 서양의 다른 국가에 비해 해자의 규모가 작다. 셋째, 동양의 성은 읍이나 왕궁을 보호하기 위해 성을 쌓았으나, 서양에서는 왕이나 영주, 대저택, 부호의 저택을 보호하기 위해 성을 쌓았으며, 적의 침입을 방어하기 위해 자연적 해자와 인공적 해자를 병행하여 활용하였다. 넷째, 동양에서 풍수지리는 우리 민족의 기층적 사상 체계를 이루어온 수많은 사상들 중 하나로 신라 이후 우리 민족에게 깊은 영향을 끼친 관념임을 부인할 수 없으며, 성의 위치를 정할 때에도 풍수지리를 고려하였다. 성을 둘러싸고 있는 해자는 성내에 있는 좋은 기(氣)가 밖으로 빠져 나가지 못하게 하는 역할을 하였다. 다섯째, 서양에서 Ha-Ha수법은 담장 대신 정원 부지의 경계선에 해당되는 곳에 도랑을 파서 외부로부터의 침입을 막도록 한 것으로서 이 도랑의 존재를 모르고 원로를 따라 거닐다가 갑자기 원로가 도랑으로 차단되고 있음을 발견하였을 때 부지불식 중에 지르는 감탄사로 원래 중세기 때의 군사용 호였는데, 정원에 수직적으로 담을 둘러치는 물리적인 경계 없이 정원을 바라볼 수 있게 정원의 경계선에 깊은 도랑과 같은 모양으로 파 놓음으로써 가축이 정원으로 들어오는 것을 막고, 목장이나 산림, 경작지 등을 정원의 구성요소로 끌어들이는 역할을 하였다.

환경분쟁조정제도의 현황과 과제 (Environmental Dispute Adjustment System : Current Status and Issues)

  • 윤이숙;이춘원
    • 한국중재학회지:중재연구
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    • 제28권1호
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    • pp.125-151
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    • 2018
  • Rapid industrial growth based on massive fossil fuel energy consumption has caused serious damages on natural environment and every aspects of human life. As demands for clean and pleasant living circumstance increases, conflicts and disputes around environmental problems have also been widespread. Given the 'environmental rights' is a relatively new legal concept, however, resolving environmental disputes through the traditional legal principles and litigation procedures could be restrictive and, in some sense. inefficient as well as expensive. With efforts to develop new legal principles on environmental disputes, the environmental dispute adjustment system has been introduced as an alternative dispute resolution to the traditional legal dispute procedures. The Korean Environmental Dispute Resolution Commission introduced as the environmental dispute adjustment system has been well established for the past twenty-seven years, given the steadily increasing numbers of applications to the Commission over environmental disputes. However, as most cases are still small in money terms and mainly subject to adjudication, the effectiveness and practical contribution of the Commission in the resolution of environmental disputes have in fact been limited. For the enhancement of the status and roles of the Commission as the prior instrument of the alternative dispute resolution(ADR) in environmental disputes, several suggestions could be considered as follows: First, mediation needs to be more activated than adjudication in order to meet the primary purpose of ADR that resolves environmental disputes according to free will of concerned parties. Second, the scope of mediation could be expanded to the areas including potential environmental damages. Third, the roles and responsibilities of the Environmental Dispute Resolution Commissions at both central and local levels need to be evenly distributed. Fourth, the mechanism and procedures of environmental dispute resolution should be standardized. Fifth, the status of the Environmental Dispute Resolution Commission could be elevated in rank by shifting its current affiliation from the Ministry of Environment to the Office of Prime Minister. Sixth, the organizational structure and human resources of the Commission need to be reinforced. Seventh, the current situation that tends to give priority to litigation procedures when an environment dispute is simultaneously pending in litigation and mediation should be eased and properly adjusted. Eighth, the adoption of mandatory mediation in advance to litigation needs to be discussed. Ninth, the legal authority of the Commission's decisions should be further guaranteed. If above suggestions are thoroughly reviewed and properly adopted, the roles, authority and power of the Environmental Dispute Resolution Commission would be increased in the era when environmental conflicts get widespread, requiring an effective alternative environmental dispute resolution mechanism.

Studies on the Production of Artificial Zeolite from Coal Fly Ash and Its Utilization in Agro-Environment

  • Lee, Deog-Bae;Henmi, Teruo;Lee, Kyung-Bo;Kim, Jae-Duk
    • 한국환경농학회지
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    • 제19권5호
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    • pp.401-418
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    • 2000
  • 1. Production of the artificial zeolite from coal ash Coal fly ash is mainly composed of several oxides including $SiO_2$ and $Al_2O_3$ derived from inorganic compounds remained after burning. As minor components, $Fe_2O_3$ and oxides of Mg, Ca, P, Ti (trace) are also contained in the ash. These components are presented as glass form resulting from fusion in the process of the combustion of coal. In other word, coal ash may refer to a kind of aluminosilicate glass that is known to easily change to zeolite-like materials by hydrothermal reaction. Lots of hot seawater is disposing near thermal power plants after cooling turbine generator periodically. Using seawater in the hydrothermal reaction caused to produce low price artificial zeolite by reduction of sodium hydroxide consumption, heating energy and water cost. As coal ash were reacted hydrothermally, peaks of quartz and mullite in the ash were weakened and disappeared, and new Na-Pl peaks were appeared strengthily. Si-O-Si bonding of the bituminous coal ash was changed to Si-O-Al (and $Fe^{3+}$) bonding by the reaction. Therefore the produced Na-Pl type zeolite had high CEC of 276.7 $cmol^+{\cdot}kg^{-1}$ and well developed molecular sieve structure with low concentration of heavy metals. 2. Utilization of the artificial zeolite in agro-environment The artificial zeolite(1g) could remove 123.5 mg of zinc, 164.7 mg copper, 184.4 mg cadmium and 350.6 mg lead in the synthetic wastewater. The removability is higher 2.8 times in zinc, 3.3 times in copper, 4.7 times in cadmium and 4.8 times in lead than natural zeolite and charcoal powder. When the heavy metals were treated at the ratio of 150 $kg{\cdot}ha^{-1}$ to the rice plant, various growth inhibition were observed; brownish discoloration and death of leaf sheath, growth inhibition in culm length, number of panicles and grains, grain ripening and rice yield. But these growth inhibition was greatly alleviated by the application of artificial zeolite, therefore, rice yield increased $1.1{\sim}3.2$ times according to the metal kind. In addition, the concentration of heavy metals in the brown rice also lowered by $27{\sim}75%$. Artificial Granular Zeolites (AGZ) was developed for the purification of wastewater. Canon exchange capacity was 126.8 $cmol^+{\cdot}kg^{-1}$. AGZ had Na-Pl peaks mainly with some minor $C_3S$ peaks in X-ray diffractogram. In addition, AGZs had various pore structure that may be adhere the suspended solid and offer microbiological niche to decompose organic pollutants. AGZ could remove ammonium, orthophosphate and heavy metals simultaneously. Mixing ratio of artificial zeolite in AGZs was related positively with removal efficiency of $NH_4\;^+$ and negatively with that of $PO_4\;^{3-}$. Root growth of rice seedling was inhibited severely in the mine wastewater because of strong acidity and high concentration of heavy metals. As AGZ(1 kg) stayed in the wastewater(100L) for 4days, water quality turned into safely for agricultural usage and rice seedlings grew normally.

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창암(蒼巖) 이삼만(李三晩)의 학서(學書) 연마와 서예론(書藝論) 고찰 (A Study on Changam, Lee Samman's a course of learning calligraphy and calligraphy theory)

  • 김도영
    • 문화기술의 융합
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    • 제6권1호
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    • pp.327-334
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    • 2020
  • 조선 후기 3대 명필로 지칭될 만큼 독자적 서풍을 창안한 창암(蒼巖) 이삼만(李三晩)(1770~1845)은 '법고(法古)'를 중시하였는데, 한위대(漢魏代) 서예를 근본으로 하고, 동국진체(東國眞體)를 완성한 원교(圓嶠) 이광사(李匡師)를 마음의 스승으로 삼아 수련하였다. 만년에는 올바른 필법 전수를 위해 『창암서결(蒼巖書訣)』을 저술하여 보편적 서예의 기본원리와 자신의 서예관을 피력하였다. 창암(蒼巖)이 지향하는 서체는 해서(楷書) 근골(筋骨)의 확립을 통한 초서(草書)로 완결된다. 이를 위해 한위(漢魏)의 서체를 전범(典範)으로 제안하였는데, 온후간원(穩厚簡遠)한 한위근골(漢魏筋骨)은 무위자연적(無爲自然的) 무법(無法)의 경지를 보여준다. 이로 보아 창암(蒼巖) 서예론의 핵심이자 궁극적 지향점은 '자연(自然)'임을 알 수 있다. 이는 법의 극치에 이르러 다시 무법(無法)으로 돌아가는 것으로, 여기에서 음양(陰陽)이 생성되고 형(形)·세(勢)·기(氣)가 부드러움을 도모하면 기괴(奇怪)함이 생겨난다고 보았던 것이다. 한편, 고법(古法)에 얽매이지 않고 우졸(愚拙)한 자연천성(自然天成)을 발현하면 장법과 포치가 일운무적(逸韻無跡)한 득필천연(得筆天然)을 이룬다고 강조하였다. 우리는 이 연구에서 그의 서체가 자연을 예술로 승화하면서, 조선 고유의 서예미를 끊임없이 접목·시도하였음을 살펴볼 수 있다. 그리하여 근골이 풍부하고 생명력과 역동감이 넘치는 형세를 이룬 일운무적(逸韻無跡)을 체화(體化)하였고, 득필천연(得筆天然)한 극공(極工)의 심미경지를 이루어 독창적인 '행운유수체(行雲流水體)'로 구현하였고 마침내 호남지방에 동국진체(東國眞體)의 서풍과 서예정신을 더욱 창달시켰다.

저수지 수질개선을 위한 무동력 하향류 수류순환시스템의 현장적용성 (Field Applications of Non-powered Downward Water Circulation System to Improve Reservoir Water Quality)

  • 장여주;임현만;정진홍;박재로;김원재
    • Ecology and Resilient Infrastructure
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    • 제6권2호
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    • pp.109-119
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    • 2019
  • 국내의 많은 저수심 저수지들은 다양한 수질오염물질의 유입으로 인해 부영양화가 진행되고 있으며, 해마다 반복적으로 표층의 녹조 발생과 저층의 빈산소화를 겪고 있다. 이를 방지하기 위한 대책으로 저수지의 성층현상을 완화하는 기존 기술들이 있으나 대부분 동력이 필요하며 비경제적인 측면으로 인해 도입이 어려운 실정이다. 본 연구에서는 바람과 수류의 자연에너지를 활용하는 무동력 수류순환시스템을 개발하고 상이한 조건을 갖는 두 저수지를 대상으로 테스트베드를 구축, 운영하여 현장적용성을 검토하였다. 수류순환시스템을 모사한 전산유체역학 (CFD) 모의 결과, 하향류가 유도되어 표층과 심층 사이의 성층현상을 완화시키고, 영향반경은 약 30 m에 달하는 것으로 해석되었다. 테스트베드에 대한 장기 모니터링 결과, 수류순환 작용에 의해 DO의 변동을 완만하게 하고, DO 과포화 현상을 저감하며, pH의 과도한 상승을 방지하는 등 다양한 수질개선 효과가 관찰되었다. 본 수류순환시스템의 현장적용성을 제고하기 위해서는 홍수시 및 저수심 조건에 대한 대응방안 마련이 필요한 것으로 판단된다.