• Title/Summary/Keyword: Waste Disposal Cost

검색결과 140건 처리시간 0.026초

축산분뇨 해양투기 수용 억제를 위한 법적 개선 (A Legal Improvement to Reduce a Disposal of Livestock Sludge at Sea)

  • 정창수;김영일
    • 한국해양환경ㆍ에너지학회지
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    • 제11권3호
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    • pp.132-137
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    • 2008
  • 축산분뇨는 화학적산소요구량과 구리함량이 각각 평균 $930,726{\pm}380.801mg/kg$$679{\pm}341mg/kg$으로 높아 해양투기 시에는 해양환경에 악영향을 초래할 수 있다. 반면에 육상에서는 유기물 분해를 통해 발생되는 바이오가스 에너지 활용과 양질의 축산분뇨는 풍부한 질소 및 인을 함유하여 퇴비로서의 충분한 경제적 가치를 갖고 있다. 그럼에도 불구하고, 우리나라 축산분뇨 해양투기량은 1997년에 51천 $m^3$에서 시작되어 2005년 2,745천 $m^3$으로 급격히 증가하였고, 2007년 폐기물 해양투기량(7,451천 $m^3$)에서 축산분뇨는 약 27%로서 큰 비중을 차지하였다. 축산분뇨 해양투기 비용은 $20,000{\sim}33,000$원으로서 퇴비(20,000원), 정화처리(10,000원) 보다도 높지만, 축산농가들은 아직도 퇴비와 정화처리 등 육상 활용보다는 해양투기를 선호하고 있다. 이에 따라 본 소고에서는 축산농가들의 해양투기 선호 요인들에 대한 분석을 통해 개선안을 제시하여 축산분뇨 해양투기로부터의 해양환경오염을 방지하고자 한다.

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원전수거물 처분장 후보부지 특성평가 방안 (Site Characterization for a Low-level Radioactive Waste Repository)

  • 김천수;배대석;박천수
    • 한국방사성폐기물학회:학술대회논문집
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    • 한국방사성폐기물학회 2003년도 가을 학술논문집
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    • pp.276-282
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    • 2003
  • 지층처분연구를 통한 지구과학분야의 기술적 발전은 천연방벽의 특성을 이해하기 위한 계측방법 및 단계적 부지조사ㆍ평가과정을 확립하였으나, 아직도 지하매질의 불균질성과 규모 종속적인 특성 때문에 후보부지특성에 대한 이해는 부족한 상태이다. 부지특성 평가결과의 불확실성으로 인한 시간적ㆍ경제적 부담을 줄이기 위해서는 무엇보다도 후보부지를 중심으로 계획된 정확하고 치밀한 부지특성평가계획의 수립과 전반적인 수행과정 및 결과에 대한 품질보증 시스템의 적용이 요구된다. 또한 원전수거물 처분시설에서 요구되는 충분조건과 필요조건으로 구분하여 단계별로 평가하여야 한다.

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환태평양시대의 목포항만 개발방향 (A Study on Development Works of Mokpo Port for Pax Pacific Asiana)

  • 홍동문
    • 한국항만경제학회지
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    • 제17권1호
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    • pp.129-157
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    • 2001
  • In Korea, the quantity of waste is excessive as a result of increases in population and consumption following industrialization. This has resulted in urban environmental problems, a shortage of landfills and pollution around landfills. Thus, there is a need to conduct research in order to find an effective long-term alternative. In Japan, there are more landfills at sea than there are on land. Based on projections for Korea, on-land landfills in the metropolitan area will be filled to capacity by 2020 and then be closed. This research recommends the construction of landfill sites at sea as an alternative waste disposal method. Its findings show that the most the suitable sites for landfills within the Seoul metropolitan area are the regions around Jangbongdo Island and Mueido Island. It also suggests that the best way to transport waste is through the Kyungin Canal from the middle collection center to the lower Han River. The estimated cost of constructing an at-sea landfill to be used for 50 years is approximately two trillion won, with a total construction time of 10 years. In the future, further research related to this study will be conducted in order to ensure that environmentally-friendly landfills are built.

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Utilization of Kota stone slurry powder and accelerators in concrete

  • Devi, Kiran;Saini, Babita;Aggarwal, Paratibha
    • Computers and Concrete
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    • 제23권3호
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    • pp.189-201
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    • 2019
  • Recent advances in the concrete technology are aiding in minimizing the use of conventional materials by substituting by-products of various industries and energy sources. A large amount of stone waste i.e., dust and slurry form both are being originated during natural stone processing and causing deadily effects on the environment. The disposal problem of stone waste can be resolved effectively by using waste in construction industries. In present work, Kota stone slurry powder, as a substitution of cement was used along with accelerators namely calcium nitrate and triethanolamine as additives, to study their impact on various properties of the concrete mixtures. Kota stone slurry powder (7.5%), calcium nitrate (1%) and triethanolamine (0.05%) were used separately as well in combination in different concrete mixtures. Mechanical Strength, modulus of elasticity and electrical resistivity of concrete specimens of different mix proportions under water curing were studied experimentally. The durability properties in terms of strength and electrical resistivity against sulphate and chloride solution attack at various curing ages were also studied experimentally. Results showed that accelerators and Kota stone slurry powder separately enhanced the mechanical strength and electrical resistivity; but, their combination decreased strength at all curing ages. The durability of concrete specimens was also affected under the exposure to chemical attack too. Kota stone slurry powder found to be the most effective material among all materials. Material characterization was also done to study the microstructural properties.

실리카질 재료로서 석분 슬러지를 사용한 콘크리트의 강도 특성 (The Strength Properties of Concrete Used Stone Powder Sludge as Siliceous Material)

  • 정지용;최선미;곽은구;최세진;이성연;김진만
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2005년도 춘계 학술기술논문발표대회 논문집
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    • pp.85-88
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    • 2005
  • The stone powder sludge occurred at aggregate production process is classified the specified waste, so it is disposed by appropriate method. But the problems of the shortage of the disposal-site, the environment pollution, and the increase of disposal cost can be occurred in handling process, therefore the stone powder sludge is required the development of recycling technique. The stone powder sludge includes SiO2 of about $63\%$. This characteristic is important at the production of hardened specimens under condition of hydro-thermal reaction. In this study, we investigated the strength properties of concrete used stone powder sludge as siliceous material. The test results under condition of hydro-thermal reaction shows the two main facts. The first, the stone powder sludge is affected to fluidity because the surface of the stone powder sludge has characteristics of flakily and angularity. The second, weight content of the stone powder sludge, is not effective factor to the properties of strength.

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회수 Cyclotol의 비군사화를 위한 소각공정 (Incineration for Demilitarization of Waste Cyclotol)

  • 이시황;백승원;문일;박정수;김현수;오민
    • 한국군사과학기술학회지
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    • 제19권4호
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    • pp.545-550
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    • 2016
  • Demilitarization involves the disposal and recovery of obsolete explosives or ammunition. Cyclotol has been used as a military explosive along with RDX and HMX. A limited number of processes exist for safe disposal due to their sensitivity to thermal shock. Rotary kilns are widely used for thermal decomposition in many countries due to cost effectiveness and simplicity compared with supercritical oxidation. Phase change as well as condensed phase reactions(CPRs) and gas phase reactions(GPRs) with rates described by the Arrhenius equation of cyclotol has been considered in this work. Changes in gas fraction, reaction rate and mass of explosives were predicted at 490, 505 and 575 K. A maximum temperature of 2062 K has been predicted within the reactor at an initial temperature of 575 K due to GPRs. From this research, Thermal decomposition in the rotary kiln is plausible for demilitarization.

Relationship of Ceramic Insulation Panel System Development and Verification of LCC

  • Han, Min-Cheol;Jeon, Kyu-Nam;Lee, Gun-Cheol;Kim, Tae-Hui
    • 한국건축시공학회지
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    • 제12권4호
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    • pp.386-392
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    • 2012
  • In this study, life cycle cost (LCC) is analyzed according to insulation panel system type using a deterministic LCC analysis method. Through this analysis, it was found that the construction cost in the deterministic LCC analysis for Ceramic panels was low compared to the construction cost for metal and stone panels. Also, the difference in cost between the Ceramic panel and the metal panel was about 2 times. In the area of maintenance cost, it was found to be similar to the previously analyzed construction cost, in which the metal panel has the highest cost due to the high cost of construction and the frequent need for maintenance. In the case of the stone panel, a small difference in cost is shown compared with that of the Ceramic panel, but the cost is higher than the Ceramic panel. Regarding the cost of waste disposal, the Ceramic panel can reduce the cost by at least 1.5 times and up to 2 times compared to other panel systems. Finally, in the analysis of sensitivity according to changes in discount rates, the Ceramic panel and metal panel systems have a similar cost, and the cost of the metal panel is a bit larger than that of other panel systems. Thus, in the subjects used in the analysis, the Ceramic panel system shows the highest economic benefits.

사용후핵연료 관리 현안 및 정책 제언 (Spent Nuclear Fuel Management in South Korea: Current Status and the Way Forward)

  • 황용수;장선영;한재준
    • 대한환경공학회지
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    • 제37권5호
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    • pp.312-323
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    • 2015
  • 본 논문은 국내 외 사용후핵연료 및 방사성폐기물 관리 현안 분석을 바탕으로 향후 나아갈 방향을 제시한다. 원자력 발전을 앞서 이용해 온 미국 사례를 중심으로 다양한 국가들의 처분장 확보 및 실패 사례와 최근의 관리 정책 기조를 정리하였다. 아울러, 원전 해체에 따른 고선량 방사성폐기물, 핵안보 사안 그리고 핵연료 전주기 관점에서 평가한 경제성 기반 정책 수립의 필요성을 논하였다. 사용후핵연료 및 방사성폐기물 관리의 핵심 사안을 세부적으로 중간저장, 영구처분 그리고 재처리로 분류하고 기술 검토와 인허가 체제 구축 및 연구 추진 방향성에 대한 정책 제언을 담았다.

한빛원전 폐수지 제염공정 개발연구 (Research and Development for Decontamination System of Spent Resin in Hanbit Nuclear Power Plant)

  • 성기홍
    • 방사선산업학회지
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    • 제9권4호
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    • pp.217-221
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    • 2015
  • When reactor coolant leaks occur due to cracks of a steam generator's tube, radioactive materials contained in the primary cooling water in nuclear power plant are forced out toward the secondary systems. At this time the secondary water purification resin in the ion exchange resin tower of the steam generator blowdown system is contaminated by the radioactivity of the leaked radioactive materials, so we pack this in special containers and store temporarily because we could not dispose it by ourselves. If steam generator tube leakage occurs, it produces contaminated spent resins annually about 5,000~7,000 liters. This may increase the amount of nuclear waste productions, a disposal working cost and a unit price of generating electricity in the plant. For this reasons, it is required to develop a decontamination process technique for reducing the radioactive level of these resins enough to handle by the self-disposal method. In this research, First, Investigated the structure and properties of the ion exchange resin used in a steam generator blowdown system. Second, Checked for a occurrence status of contaminated spent resin and a disposal technology. Third, identified the chemical characteristics of the waste radionuclides of the spent resin, and examined ionic bonding and separation mechanism of radioactive nuclear species and a spent resin. Finally, we carried out the decontamination experiment using chemicals, ultrasound, microbubbles, supercritical carbon dioxide to process these spent resin. In the case of the spent resin decontamination method using chemicals, the higher the concentration of the drug decontamination efficiency was higher. In the ultrasound method, foreign matter of the spent resin was removed and was found that the level of radioactivity is below of the MDA. In the microbubbles method, we found that the concentration of the radioactivity decreased after the experiment, so it can be used to the decontamination process of the spent resin. In supercritical carbon dioxide method, we found that it also had a high decontamination efficiency. According to the results of these experiments, almost all decontamination method had a high efficiency, but considering the amounts of the secondary waste productions and work environment of the nuclear power plant, we judged the ultrasound and supercritical carbon dioxide method are suitable for application to the plant and we established the plant applicable decontamination process system on the basis of these two methods.

Review and Strategy for Study on Korean Buffer Characteristics Under the Elevated Temperature Conditions: Mineral Transformation and Radionuclide Retardation Perspective

  • Park, Tae-Jin;Yoon, Seok;Lee, Changsoo;Cho, Dong Keun
    • 방사성폐기물학회지
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    • 제19권4호
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    • pp.459-467
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    • 2021
  • In the majority of countries, the upper limit of buffer temperature in a repository is set to below 100℃ due to the possible illitization. This smectite-to-illite transformation is expected to be detrimental to the swelling functions of the buffer. However, if the upper limit is increased while preventing illitization, the disposal density and cost-effectiveness for the repository will dramatically increase. Thus, understanding the characteristics and creating a database related to the buffer under the elevated temperature conditions is crucial. In this study, a strategy to investigate the bentonite found in Korea under the elevated temperatures from a mineral transformation and radionuclides retardation perspective was proposed. Certain long-term hydrothermal reactions generated the bentonite samples that were utilized for the investigation of their mineral transformation and radionuclide retardation characteristics. The bentonite samples are expected to be studied using in-situ synchrotron-based X-Ray Diffraction (XRD) technique to determine the smectite-to-illite transformation. Simultaneously, the 'high-temperature and high-pressure mineral alteration measurement system' based on the Diamond Anvil Cell (DAC) will control and provide the elevated temperature and pressure conditions during the measurements. The kinetic models, including the Huang and Cuadros model, are expected to predict the time and manner in which the illitization will become detrimental to the performance and safety of the repository. The sorption reactions planned for the bentonite samples to evaluate the effects on retardation will provide the information required to expand the current knowledge of repository optimization.