• 제목/요약/키워드: Waste to Energy Plant

검색결과 286건 처리시간 0.032초

알카리화 및 산성화에 의한 우라늄 함유 슬러지의 열분해 고체 폐기물로부터 우라늄 제거 (Removal of Uranium by an Alkalization and an Acidification from the Thermal Decomposed Solid Waste of Uranium-bearing Sludge)

  • 이일희;양한범;이근영;김광욱;정동용;문제권
    • 방사성폐기물학회지
    • /
    • 제11권2호
    • /
    • pp.85-93
    • /
    • 2013
  • 본 연구는 우라늄 변환시설 운전 중에 발생된 우라늄 함유 슬러지를 가열 처리하여 분말 형태로 저장 중인 우라늄 함유 슬러지의 열분해 고체폐기물 (Thermal Decomposed Solid Waste of uranium-bearing sludge : TDSW)을 대상으로 TDSW의 용해, TDSW 질산 용해액의 알카리화에 의한 불순물 제거 및 탄산염 알카리화 용액의 산성화에 의한 U 선택적 제거/회수 특성 등을 규명하였다. TDSW의 용해는 질산용해가 탄산염 산화용해 보다 효과적이었다. 1M 질산에서 TDSW의 약 30wt%가 고체 잔류물로 불용해되었고, TDSW 내 함유 U은 99% 이상이 용해되었다. TDSW의 질산 용해액의 알카리화는 탄산염에 의한 알카리화가 불순물 제거 측면에서 보다 효과적이며, 탄산염 알카리화 (pH 약 9)에서 U과 공용해된 Ca, Al, Zn 및 Fe 등의 $98{\pm}1%$가 제거되었다. 그리고 불순물이 거의 제거된 알카리화 용액 (0.5 M $H_2O_2$ 첨가)의 산성화 (pH 약 3) 에서 U의 99% 이상을 회수할 수 있어 TDSW로부터 U을 선택적으로 제거/회수할 수 있었다.

Performance Analysis of WHR-ORC Using Hydrocarbon Mixtures for 20kW Gross Power at Low Temperature

  • Kwakye-Boateng, Patricia;Yoon, Jung-In;Son, Chang-Hyo;Hui, Kueh Lee;Kim, Hyeon-Uk
    • 동력기계공학회지
    • /
    • 제18권6호
    • /
    • pp.140-145
    • /
    • 2014
  • Exploitation of renewable energies is on the increase to mitigate the reliance on fossil fuels and other natural gases with rocketing prices currently due to the depletion of their reserves not to mention their diverse consequences on the environment. Divergently, there are lots of industries "throwing" heat at higher temperatures as by products into the environment. This waste heat can be recovered through organic Rankine systems and converted to electrical energy with a waste heat recovery organic Rankine cycle system (WHR-ORC). This study uses the annual average condenser effluent from Namhae power plant as heat source and surface seawater as cooling source to analyze a waste heat recovery organic Rankine cycle using the Aspen HYSYS simulation software package. Hydrocarbon mixtures are employed as working fluid and varied in a ratio of 9:1. Results indicate that Pentane/Isobutane (90/10) mixture is the favorable working fluid for optimizing the waste heat recovery organic Rankine cycle at the set simulation conditions.

음식물류 폐기물 퇴비 시용이 토마토 생육 및 토양특성에 미치는 영향 (The Effect of Food Waste Compost on Tomato (Lycoperscion Esculentum.L) Growth and Soil Chemical Properties)

  • 이영돈;칼리드후세인;유재홍;주진호
    • 한국환경농학회지
    • /
    • 제38권4호
    • /
    • pp.332-337
    • /
    • 2019
  • BACKGROUND: From year 2005, landfill for food waste has been prohibited. Also, according to London agreement in year 2013, ocean discharge for livestock manure, sewage sludge, and food waste has been regulated. Alternative way for food waste disposal is incineration. However, due to high moisture content, additional input for energy is needed. Therefore, effective way for food waste disposal such as application of food waste compost is needed. METHODS AND RESULTS: Seven different treatments (livestock compost, food waste compost, food waste + livestock compost, livestock compost + chemical fertilizer, food waste compost + chemical fertilizer, food waste + livestock compost + chemical fertilizer and control) were applied to tomato crop. All treatments were replicated with completely randomized design. Tomato growth treated with LC+NPK showed the highest values at 6 weeks for all parameters such as leaf length (11.80 cm), leaf width (6.88 cm), and chlorophyll (61.12 O.D.), compared to other treatments. Subsequently the FWC+LC+NPK treatment was followed (11.51 cm, 6.40 cm, 59.50 O.D. for leaf length, leaf width, and chlorophyll, respectably). EC, OM contents, and CEC in the soil treated with the composts significantly increased. CONCLUSION: To evaluate the effect of food waste compost application on tomato growth and soil chemical properties, we carried out field experiment treated with 7 treatments with 3 replicates. The LC+NPK treatment showed highest values for all parameters. Some parameters such as shoot length and total length for tomato were not significantly different between the LC+NPK and the FWC+LC+NPK treatments.

냉각수 활용 히트펌프 설치 위치에 따른 광교 열병합발전소의 성능 특성 예측 (Prediction of Performance Characteristics with Various Location of Waste Heat Recovery Heat Pump in a Gwang-gyo Cogeneration Plant)

  • 박흔동;허기무;윤성훈;문윤재;유호선;이재헌
    • 플랜트 저널
    • /
    • 제10권2호
    • /
    • pp.28-37
    • /
    • 2014
  • 히트펌프는 연소를 동반하지 않기 때문에 화석연료의 연소과정에서 발생하는 이산화탄소($CO_2$)의 배출을 억제함과 동시에 산업체 폐수, 배증기, 냉각수, 지하수, 하수 등 이미 존재하는 다양한 열을 회수할 수 있다는 장점이 있다. 한국지역 난방공사에는 파주, 고양삼송, 광교 열병합발전소에 폐열회수 조건 및 경제성 등을 고려하여 기기 냉각수 폐열을 열원으로 활용하는 히트펌프를 설치하여 운영하고 있다. 본 논문은 최근 건설된 150 MW급 광교 열병합발전소를 대상으로 상용 프로그램인 THERMOFLEX를 활용하여 기기 냉각수 폐열을 이용한 5 Gcal/h 용량의 히트펌프 설치 위치가 발전소 성능에 미치는 영향에 대해 연구하였다. 총 3가지 경우에 대해 히트펌프의 위치에 따른 성능의 영향을 살펴보았는데, 그 결과 지역 난방수 가열기 전단에 히트펌프를 설치한 경우가 전기출력 감소에도 불구하고 열출력 증가량이 커서 발전소 총효율에서 가장 유리한 것으로 확인되었다.

  • PDF

고에너지 밀링으로 제조된 폐디스플레이 패널 분말의 밀링시간에 따른 인듐 용출특성 (Characteristics of Indium Dissolution of Waste LCD Panel Powders Fabricated by High Energy Ball Milling (HEBM) Process with Milling Time)

  • 김효섭;성준제;이철희;홍현선;홍순직
    • 한국분말재료학회지
    • /
    • 제18권4호
    • /
    • pp.378-384
    • /
    • 2011
  • In this research, the indium dissolution properties of the waste LCD panel powders were investigated as a function of milling time fabricated by high-energy ball milling (HEBM) process. The particle morphology of waste LCD panel powders changed from sharp and irregular shape of initial cullet to spherical shape with an increase in milling time. The particle size quickly decreased to 15 ${\mu}m$ until the first minute, then decreased gradually about 6 ${\mu}m$ with presence of agglomerated particles after 5 minutes, which increased gradually reaching a uniform size of 13 ${\mu}m$ consist of agglomerated particles after 30 minutes. The glass recovery, after dissolution, was over 99% at initial cullet, which decreased to 90.1 and 78.6% with increasing milling time of 1 and 30 minute respectively, due to a loss in remaining powder of the surface ball and jar, as well as the filter paper. The dissolution amount of indium out of the initial cullet was 208 ppm before milling, turning into 223 ppm for the mechanically milled powder after 1 minute, and nearly 146~125 ppm with further increase in milling time because of the reaction surface decrease of powders due to agglomeration. With this process, maximum dissolving indium amount (223 ppm) could be achieved at a particle size of 15 ${\mu}m$ with 1 minute of milling.

A Transdisciplinary Approach for Water Pollution Control: Case Studies on Application of Natural Systems

  • Polprasert, Chongrak;Liamlaem, Warunsak
    • Environmental Engineering Research
    • /
    • 제19권3호
    • /
    • pp.185-195
    • /
    • 2014
  • Despite the enormous technical and economic efforts to improve environmental conditions, currently about 40% of the global population (or 2 billion people) are still lack access to safe water supply and adequate sanitation facilities. Pollution problems and transmission of water- related diseases will continue to proliferate. The rapid population growth and industrialization will lead to a reduction of arable land, thus exacerbating the food shortage problems and threatening environmental sustainability. Natural systems in this context are a transdisciplinary approach which employs the activities of microbes, soil and/or plants in waste stabilisation and resource recovery without the aid of mechanical or energy-intensive equipments. Examples of these natural systems are: waste stabilisation ponds, aquatic weed ponds, constructed wetlands and land treatment processes. Although they require relatively large land areas, the natural systems could achieve a high degree of waste stabilisation and at the same time, yield potentials for waste recycling through the production of algal protein, fish, crops, and plant biomass. Because of the complex interactions occurring in the natural systems, the existing design procedures are based mainly on empirical or field experience approaches. An integrated kinetic model encompassing the activities of both suspended and biofilm bacteria and some important engineering parameters has been developed which could predict the organic matter degradation in the natural systems satisfactorily.

시멘트 바이패스 더스트에 존재하는 염화칼륨의 용해 및 수득 특성 (Solubility and Yield Characteristics of KCl in Cement By-Pass Dust)

  • 윤영민;정재현;추용식
    • 자원리싸이클링
    • /
    • 제25권3호
    • /
    • pp.43-48
    • /
    • 2016
  • 시멘트 공장에서는 폐기물 재활용 측면에서 다양한 산업부산물 및 생활폐기물을 사용한다. 이들 폐기물에는 다량의 칼륨과 염소 및 소량의 중금속 등도 함유되어 있으며, 이들 성분을 유가자원으로 활용하기 위한 다양한 시도가 이루어지고 있다. 본 연구에서는 칼륨과 염소를 용해 결정화하여 염화칼륨을 수득하기 위한 다양한 방안을 검토하였다. 특히 혼합수 함량, 슬러리 온도 및 교반시간 등을 제어하였다. 또한 수득 염화칼륨 중에 존재하는 중금속 종류 함량 등도 분석하였다. 염화칼륨 수득량은 혼합수 함량 증가에 따라 증가하였으나, 1 : 2 (더스트:혼합수) 이상에서는 소폭 증가하였다. 슬러리 온도에 따른 수득량은 일정온도 이상에서 증가하는 경향을 나타내었으며, 교반시간 10분 이상에서는 수득량 변화가 관찰되지 않았다. 교반시간 증가에 따라 수득된 염화칼륨의 중금속 종류 함량도 다양하였으며, 주요 중금속은 Pb, Cu 및 $Cr^{6+}$ 등으로 확인되었다.

바이오매스 폐기물의 에탄올 생산 공정의 기술경제성 평가 (Techno-economic Evaluation of an Ethanol Production Process for Biomass Waste)

  • 곽인섭;황종하;이시훈
    • 공업화학
    • /
    • 제27권2호
    • /
    • pp.171-178
    • /
    • 2016
  • 세계 각국은 석유자원의 고갈로 인한 고유가, 지구온난화 등의 환경문제를 해결하기 위하여 많은 노력을 하고 있다. 그중 기존 화석연료를 대체할 수 있는 재생 가능한 청정 에너지원으로 바이오 연료가 주목받고 있다. 그러나 기존의 바이오연료 생산기술은 식량자원인 사탕수수, 옥수수 등을 사용하므로 이를 대체하는 기술개발이 요구되고 있다. 이에 본 연구에서는 식량자원을 대체할 폐기물의 가스화와 혼합 알코올 합성공정이 연계된 간접 알코올 전환 공정의 기술 경제성 평가를 수행하였다. 국내에서 공급되는 바이오매스 폐기물 자원량을 고려한 2000톤/일 급의 전환 공정에서 매일 533000 L의 연료용 에탄올을 생산한다고 가정하였고 이를 위해 필요한 경제성 자료는 기발표된 자료들로부터 계산되어 경제성 분석에 이용되었다. 경제성 분석은 원금회수기간과 내부수익률(internal rate of return, IRR) 및 순현재가치(Net Present Value, NPV)로 진행되었으며, 원료비용과 초기 투자비, 주요 공정비용 및 에탄올 가격 변화, 운용비용의 민감도 분석을 진행하여 각 항목별 민감도를 고찰하였다.

Recent Advances in the Removal of Radioactive Wastes Containing 58Co and 90Sr from Aqueous Solutions Using Adsorption Technology

  • Alagumalai, Krishnapandi;Ha, Jeong Hyub;Choi, Suk Soon
    • 공업화학
    • /
    • 제33권4호
    • /
    • pp.352-366
    • /
    • 2022
  • Nuclear power plant operations for electricity generation, rare-earth mining, nuclear medical research, and nuclear weapons reprocessing considerably increase radioactive waste, necessitating massive efforts to eradicate radioactive waste from aquatic environments. Cobalt (58Co) and strontium (90Sr) radioactive elements have been extensively employed in energy generation, nuclear weapon testing, and the manufacture of healthcare products. The erroneous discharge of these elements as pollutants into the aquatic system, radiation emissions, and long-term disposal is extremely detrimental to humans and aquatic biota. Numerous methods for treating radioactive waste-contaminated water have emerged, among which the adsorption process has been promoted for its efficacy in eliminating radioactive waste from aquatic habitats. The current review discusses the adsorptive removal of radioactive waste from aqueous solutions using low-cost adsorbents, such as graphene oxide, metal-organic frameworks, and inorganic metal oxides, as well as their composites. The chemical modification of adsorbents to increase their removal efficiency is also discussed. Finally, the current state of 58Co and 90Sr removal performances is summarized and the efficiencies of various adsorbents are compared.

바이오가스 연료기반 연료전지발전 기술동향 (Technology Trends of Fuel Cell Power Plant Based on Biogas Fuel)

  • 이종규;전재호;이종연
    • 신재생에너지
    • /
    • 제4권3호
    • /
    • pp.5-14
    • /
    • 2008
  • The target for the reduction of $CO_2$ emissions, as specified in the Kyoto Protocol, can only be achieved by an extended use of renewable fuels and the increasing of the energy efficiency. The energy generation from waste gases with a reasonable content of methane like biogas can significantly contribute to reach this target. A further reduction of greenhouse gas emissions is possible by increasing the electrical efficiency using progressive technologies. Fuel cells can be highly energy conversion devices. Utilizing biogas as the fuel for fuel cell systems offers an option that is technically feasible, potentially economically attractive and greenhouse gas neutral. High temperature fuel cells that are able to operate with carbon monoxide in the feed are well suited to these applications. Furthermore, because they do not require noble metal catalysts, the cost of high-temperature fuel cells has the greatest potential to become competitive in the near future compared to other types of fuel cells.

  • PDF