• 제목/요약/키워드: Concentrated Wastes

검색결과 37건 처리시간 0.028초

광산 폐기물을 활용한 다공성 담체 개발 (Development of Porous Support with Mine Waste Materials)

  • 정문영;정명채;최연왕
    • 자원환경지질
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    • 제37권1호
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    • pp.143-151
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    • 2004
  • 광산 폐기물의 순환자원화 방안을 모색하기 위해 상동중석광산 광미를 대상으로 그의 물리적ㆍ화학적 특성, 광물학적 조성, 중금속 용출특성 및 분쇄특성, 그리고 그를 출발원료로 하여 포말법으로 제조한 세라믹 담체의 특성 등을 조사하였다. 광미의 화학적, 광물학적 특성은 심도별 큰 차이가 없고 광미의 중금속 용출량은 환경기준값 보다 낮아 광미 자체를 물질전환법에 의해 재활용하는데는 문제가 없다고 판단되었다. 그러나 광미의 median경(d$_{50}$ )은 10∼30$\mu\textrm{m}$ 이었다. 따라서 환경소재인 다공성 담체의 제조에 적합한 입도분포인 median경 3$\mu\textrm{m}$을 얻기 위해서는 슬러리 농도 40 vol% 기준일 때분산제인 PEI를 첨가하여 교반밀로 700 rpm으로 1시간이상 습식분쇄하여야만 가능함을 알 수 있었다. 그리고 광미 슬러리의 발포율을 3배로 하여 제조한 큐빅형 greenbody를 1,075$^{\circ}C$에서 90분 소결한 담체의 물성은 겉보기 밀도 0.52g/$cm^{3}$, 전체 기공율 80%, 열린 기공율72%, 기공의 크기분포가 30∼350$\mu\textrm{m}$이었다. 즉, 광산 폐기물인 광미를 출발원료로 하여 폐수처리용 환경소재로서 활용성이 매우 큰 매크로 기공을 가진 다공성 세라믹 담체를 제조 할 수 있었다.

Characterization of Cation Exchange and Cesium Selectivity of Synthetic Beta-Dicalcium Silicate Hydrate

  • El-Korashy, S.A.
    • 대한화학회지
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    • 제46권6호
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    • pp.515-522
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    • 2002
  • 240$^{\circ}C$와 Ca/Si=2 몰 비율의 열수상태에서 합성된 고체 베타-디칼슘 실리케이트 하이드레이트($\beta-C_2$SH)는 Fe, Cu, Zn, Cd, 및 Pb와 같은 2가 금속 양이온에 대한 양이온 교환 성질을 보여준다. 그 고체에 희한 금속 양이온 흡인력은 $Fe^{2+}$$Cu^{2+}$$Zn^{2+}$$Cd^{2+}$ = $Pb^{2+}$의 순서로 됨이 밝혀졌다. 고체에 세슘 선택성은 $Li^+$, $Na^+$$K^+$와 같은 1가 양이온이나 $Ca^{++}$, $Mg^{++}$$Ba^{++}$와 같은 2가 양이온이 $Cs^+$보다 백배이상 진한 상태에서 나타내었다. $Cs^+$의 흡인력은 $Mg^{++}$의 존재하에서 최대치를 보여주었고, 반면에 $K^+$의 존재하에서 최소치를 보여주었다. 2가 금속이온에 대한 $\beta-C_2$SH의 다른 친화도는 이들 이온을 분리하는데 사용 할수 있다. 또한 $\beta-C_2$SH에 희한 금속 양이온 교환에 대한 반응경로 및 세슘 선택성이 연구되었다.

Effective Use of Orange Juice Residue for Removing Heavy and Radioactive Metals from Environments

  • Inoue, Katsutoshi;Zhu, Yushan;Ghimire, Kedar-Nath;Yano, Masayuki;Makino, Kenjiro;Miyajima, Tohru
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.264-269
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    • 2001
  • Large amounts of orange juice are produced in Japan every yea.. Accompanied by the production of orange juice, large amount of juice residues are also generated in nearly the same amounts with juice. Although, at present, some of these residues are marketed as a feed for cattle after drying and mixing with lime, the marketing price is lower than its production cost and the difference is paid by the consumers as a part of the price of orange juice. In the present work, we developed new innovative use of orange juice residue, a biomass waste, as adsorption gel for removing toxic heavy metals such as lead. arsenic, selenium and so on as well as radioactive elements such as uranium and thorium from environments. The major components of orange juice residue are cellulose. hemicellulose and pectin, which are converted into pectic. acid, an acidic polysaccharide, by means of saponification with concentrated sodium hydroxide solution. In the previous work, we found that crosslinked pectic acid gel strongly an selectively adsorbs lead over other metals such as zinc an copper. On the other hand. it is well known that polysaccharides such as cellulose can be easily phosphorylated and that phosphorylated polysaccharides have high affinity to uranium and thorium as well as some trivalent metals such as ferric iron and aluminum. Taking account of the noticeable characteristics of these polysaccharides, 2 types of adsorption gels were prepared from orange juice residue: one is the gel which was prepared by saponificating the residue followed by crosslinking with epichlorohydrin and another is that prepared by crosslinking the residue followed by phosphorylation. The former gel exhibited excellent adsorptive separation behavior for lead away from zinc owing to high content of pectic acid while the latter gel exhibited that for uranium and thorium. Both types of adsorption gels exhibited high affinity to ferric iron, which enables selective and strong adsorption for some toxic oxo-anions of arsenic (V and III), . selenium and so on via iron loaded on these gels. These results demonstrate that biomass wastes such as orange juice residue can be effectively utilized fer the purpose of removing toxic heavy or radioactive metals existing in trace or small amounts in environments.

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폐기물 매립지 침출수에 의한 중금속 용출에 관한 연구 (A Study on the Leaching of Heavy Metals by Municipal Solid Waste Landfill Leachate)

  • 정종관;장원;박영숙
    • 환경영향평가
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    • 제6권1호
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    • pp.105-110
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    • 1997
  • Sanitary landfill is a general method as a final disposal of municipal solid waste(MSW), therefore leachate characteristics are very various as lime goes by because of highly concentrated organic acids are contained non biodegradable COD. So it is hard to abide by the mandatory standards of discharge eventhough applying the physicochemical and biological processes to treat the leachate. The process of treating leachate are determined by the degree of removal and components, but they are highly contained organic materials. It is a removal method to use jointly with the physicochemical process if the hard and fast rule is needed. The critical components of material are COD, ammonia, salts and heavy metals in the case of treating biologically. Biological process is to use metabolism of microorganism, therefore it is a desirable condition which heavy metals are not contained, because they acting as an inhibitor of enzyme. Of these are contained, organic decomposition and synthetic function of microorganisms decrease significantly. Consequently, this research paper lays emphasis on the concentration of heavy metals in leachate and for the purpose of forecasting the factors which are affecting the leaching of metalic waste in some degree, experimented the various reacting conditions. 1. When the concentration of heavy metals in leachate is in comparison with the level eluted after reaction, at pH 7.9 the result of reaction for PCB to CCL scrap showed that Zn, Mn, Cu was more eluted 11.6 times, 340.3 times, and 2,705.5 times respectively than the leachate undiluted solution. 2. At the condition of strong acid pH 4.7, the concentration of heavy metals in EM undiluted solution showed that Zn, Mn, Cu was more eluted 26.5 times, 147.3 times, and 3,656.3 times respectively than leachate undiluted solution. 3. When the ratio leachate to EM was 50 vs 50(V/V%), Mn was more eluted 198.7 times than leachate undiluted solution, but Zn and Cu do not show the meaningful results. 4. The color of landfill leachate was black-brown. And fulvic acid that is main ingredient of NBD COD contained, oxygen of 44~50%. For that reason, I estimated that the level of Zn, Mn, Cu was higher than the case of leachate. 5. COD of leachate from general landfill is difficult to remove. Because the solution of heavy metals is improved by the character of leachate(pH & ingredient of oxygen etc.) hence the Mn, Cu, Zn act as disturbing factor, the biochemical treatment is hard. Therefore the type of PCB & CCL scrap, iron, aluminum contained metals need to previously separate from general wastes as much as possible.

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농촌마을의 생활폐기물 처리실태 및 발생특성 연구 (Study on the Waste Treatment Status and Characteristics in the Small Villages)

  • 이형진;최훈근;김성범;조문식;김성미;박수정;정일록;오길종
    • 유기물자원화
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    • 제14권1호
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    • pp.112-130
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    • 2006
  • 마을단위의 폐기물관리개선 방안을 제시하기 위하여 전국의 14개 군을 현지 방문하여 마을단위의 폐기물 관리계획 및 처리실태를 파악하였고 농촌폐기물의 관리실태 및 처리현황을 살펴보았다. 또한 2개 마을을 선정하여 마을에서 배출되는 생활폐기물의 발생량과 성상을 조사하고, 농촌지역에서 노천소각후의 소각잔재물을 채취하여 Pb 등 7개 중금속을 분석하였다. 1. 마을단위쓰레기종량제와 재활용품 분리수거 여부 등을 파악하기 위하여 담당공무원 및 마을이장을 대상으로 한 설문서의 회신율은 담당공무원 70.3%, 이장 31.8%이었다. 2. 농촌지역의 생활쓰레기의 발생량은 A마을 48.6g/인/일, B마을 54.3g/인/일로 나타나 전국의 생활폐기물 발생량 1.05kg/인 보다 적게 나타났으며 이러한 원인은 재활용품이 제외되고 가연성 물질을 소각하기 때문인 것으로 판단된다. 3. 조사대상 14개 군의 마을단위쓰레기종량에 영향을 미칠 것으로 생각되는 인구구조의 고령화단계를 살펴보면 2개 군은 고령화사회, 8개 군은 고령사회, 4개 군은 초고령사회에 해당하였고, 재정자립도와 청소예산재정자립도 평균은 각각 16.1%, 17.9%로 나타나, 전국 평균(57.2%, 31.4%)보다 크게 낮아 농촌지역의 마을단위쓰레기종량제 정착에 저해요인의 하나로 판단된다.

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CHANGES IN WATER USE AND MANAGEMENT OVER TIME AND SIGNIFICANCE FOR AUSTRALIA AND SOUTH-EAST ASIA

  • Knight, Michael J.
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 1997년도 추계 국제학술심포지움 논문집
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    • pp.3-31
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    • 1997
  • Water has always played a significant role in the lives of people. In urbanised Rome, with its million people. sophisticated supply systems developed and then fled with the empire. only to be rediscovered later But it was the industrial Revolution commencing in the eighteenth century that ushered in major paradigm shifts In use and altitudes towards water. Rapid and concentrated urbanisation brought problems of expanded demands for drinking supplies, waste management and disease. The strategy of using water from local streams, springs and village wells collapsed under the onslaughts of rising urban demands and pollution due to poor waste disposal practices. Expanding travel (railways. and steamships) aided the spread of disease. In England. public health crises peaks, related to water-borne typhoid and the three major cholera outbreaks occurred in the late eighteenth and early nineteenth century respectively. Technological, engineering and institutional responses were successful in solving the public health problem. it is generally accepted that the putting of water into pipe networks both for a clean drinking supply, as well as using it as a transport medium for removal of human and other wastes, played a significant role in towering death rates due to waterborne diseases such as cholera and typhoid towards the end of the nineteenth century. Today, similar principles apply. A recent World Bank report Indicates that there can be upto 76% reduction in illness when major water and sanitation improvements occur in developing countries. Water management, technology and thinking in Australia were relatively stable in the twentieth century up to the mid to late 1970s. Groundwater sources were investigated and developed for towns and agriculture. Dams were built, and pipe networks extended both for supply and waste water management. The management paradigms in Australia were essentially extensions of European strategies with the minor adaptions due to climate and hydrogeology. During the 1970s and 1980s in Australia, it was realised increasingly that a knowledge of groundwater and hydrogeological processes were critical to pollution prevention, the development of sound waste management and the problems of salinity. Many millions of dollars have been both saved and generated as a consequence. This is especially in relation to domestic waste management and the disposal of aluminium refinery waste in New South Wales. Major institutional changes in public sector water management are occurring in Australia. Upheveals and change have now reached ail states in Australia with various approaches being followed. Market thinking, corporatisation, privatisation, internationalisation, downsizing and environmental pressures are all playing their role in this paradigm shift. One casualty of this turmoil is the progressive erosion of the public sector skillbase and this may become a serious issue should a public health crisis occur such as a water borne disease. Such crises have arisen over recent times. A complete rethink of the urban water cycle is going on right now in Australia both at the State and Federal level. We are on the threshold of significant change in how we use and manage water, both as a supply and a waste transporter in Urban environments especially. Substantial replacement of the pipe system will be needed in 25 to 30 years time and this will cost billions of dollars. The competition for water between imgation needs and environmental requirements in Australia and overseas will continue to be an issue in rural areas. This will be especially heightened by the rising demand for irrigation produced food as the world's population grows. Rapid urbanisation and industrialisation in the emerging S.E Asian countries are currently producing considerable demands for water management skills and Infrastructure development. This trend e expected to grow. There are also severe water shortages in the Middle East to such an extent that wars may be fought over water issues. Environmental public health crises and shortages will help drive the trends.

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경주지역의 청동생산(靑銅生産) 공방운영(工房運營)에 대한 일고찰 (Research to Bronze production related workshop management of the Gyeongju Area)

  • 차순철
    • 헤리티지:역사와 과학
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    • 제38권
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    • pp.179-222
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    • 2005
  • 경주지역(慶州地域)에서 현재까지 발굴조사된 17개소의 청동공방유적(靑銅工房遺漬)들에 대한 연구결과 이들 유적들은 운영주체가 누구인가에 따라서 궁중공방(宮中工房), 관영공방(官營工房), 사영공방(私營工房)으로 구분이 가능하다. 경주지역의 청동공방은 소규모의 궁중수공업(宮中手工業)을 위한 공방에서 대규모의 관영수공업(官營手工業)을 위한 공방으로 발전을 했고, 이후 귀족의 등장에 따라 사영수공업(私營手工業)으로 변화하였다. 궁중공방은 궁성(宮城)이 위치했던 월성(月城), 전 임해전지(傳 臨海殿址)와 인근의 황남동(皇南洞) 주변지역에서 확인된 청동공방으로서 소규모로 운영되었다. 관영공방은 경주시 동천동 일대에 집중된 청동공방으로 한 지역에 집중된 모습을 보여주고 있다. 한편 관영공방 단계에서는 공방 옆에 대형 도로가 위치하는데 이는 공방에 소요되는 원자재(原資材)를 원활하게 공급하기 위한 목적으로 추정된다. 그리고 도로의 보수작업에 청동공방에서 발생한 폐기물(廢棄物)이 사용된 점은 도로와 청동공방이 서로 유기적(有機的)으로 연결되어 있음을 보여준다. 사영공방은 귀족들에 의해서 운영된 공방으로 관영공방에 속한 장인(匠人)들이나 개별적인 공장(工匠)들이 귀족들에게 흡수되어 만들어진 새로운 형태의 공방으로 시내 곳곳에 공방이 위치하는 모습으로 변화한다. 따라서 귀족들의 가택(家宅) 안에 마련된 작업장인 사영공방이 등장하게 되면서 공방의 운영주체는 국가에서 개인으로 점차 변화해 나간다고 추정할 수 있다. 사영공방은 왕경 안에 위치한 대형사찰에서 절 안에 공방을 두고 필요한 물품을 직접 생산하던 공방으로 청동주조와 관련된 작업장이 주로 발견되었다. 이상과 같이 신라왕경 안에서 운영된 청동공방의 존재를 통해서 우리는 당시의 기술력과 상품의 교역권, 생산지(生産地)와 수요처(需給處)의 관계를 확인할 수 있고, 사회상을 알 수 있는 중요한 단서를 찾을 수 있다.