• 제목/요약/키워드: Asbestos Cement Slates

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GIS를 이용한 석면슬레이트 분포지도 작성 (A Study on the Distribution Maps for Asbestos Cement Slates Using GIS)

  • 김영찬;손병훈;김혜미;홍원화
    • KIEAE Journal
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    • 제11권3호
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    • pp.57-62
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    • 2011
  • Asbestos have been used around the world because of reliable and cost-effective physicochemical characteristics. After incubation period about 15-40 years asbestos can cause various cancers, including malignant mesothelioma when inhaled into the air. These properties turned out, asbestos have been banned from using in developed countries. Also in Korea also, the use of asbestos was banned across the board by revision of Industry Safety and Health Act in February 2009. Therefore, the problem of asbestos is not when using. It is about dismantling, maintenance, and the final processing of asbestos waste. Asbestos Cement slates which is Widely distributed throughout the country as roofing materials has much scattering potential compare with inside materials. Also Ministry of Environment is planning to introduce legislation 'Asbestos Safety Management Act' through Environment Announcement and The same Act. 24 show as follows. Minister of Environment or governor should do survey on the actual condition targeting rural buildings with slates and partly or fully fund to dissolve, remove asbestos slate which was used in each buildings. Therefore, to solve these problems, database-building and necessity of management strategies have been continually arisen. So this study was performed. Its application value is very high in terms of its political, economic. Asbestos Cement Slates database could build to collect national registered building data and then using GIS, asbestos cement Slates distribution map were constructed in each province's cities and counties of the country. And this map by Application, construction was to visualize by application, construction of year. Through these results, information of Asbestos Cement Slates could visually inform to policy makers, asbestos dismantling and management contractor, and civilian and it would alleviate the gap of knowledge information. This is expected to be utilized by medium and long-term and effective plan for demolition and dismantling of asbestos cement Slates.

A Study on the Distribution of the Asbestos Cement Slates and Calculation of Disposal Cost in the Rural Area

  • Kim, Young-Chan;Son, Byeung-Hun;Park, Wha-Me;Hong, Won-Hwa
    • Architectural research
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    • 제13권2호
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    • pp.31-40
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    • 2011
  • Asbestos have been used around the world by physical and chemical characteristics that are a reliable and cost-effective. But asbestos, once called the miracle of mineral, is now a quiet time bomb. Asbestos hazards have been studied and the government has pursued 'Comprehensive Measures for Asbestos Management' jointly with related departments. As a part of plan, Ministry of Environment is to introduce legislation 'Asbestos Safety Management Act' through Environment Announcement No. 2010-108. The same Act. 24 shows as follows. Minister of Environment or governor should do survey on the actual condition targeting rural buildings with slates and partly or fully fund to dissolve, remove asbestos slate which was used in each building. However, the local survey was only conducted by each municipality regionally. And there is no actual condition data by area, application and year, and there was no data on disposal costs concerning asbestos slate buildings In this study, discharge of asbestos slate was calculated per unit area and formula was developed with regression analysis. In addition, Demolition, dismantling, disposal costs were computed via a phone survey to disposal companies and then this study proposed standards for this.

자동차 제조 사업장 근로자들의 석면 취급 이력 추정 (Estimation of the Asbestos Handling History of Workers in the Automobile Manufacturing Industry in Korea)

  • 최상준;김신범;최영은
    • 한국산업보건학회지
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    • 제27권4호
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    • pp.423-432
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    • 2017
  • Objectives: This study was conducted to evaluate asbestos handling history of workers at automobile manufacturing plants in Korea. Methods: National regulations on asbestos and Korea Occupational Safety and Health Agency(KOSHA) database on the information of asbestos containing products were reviewed. We investigated asbestos related materials from one automobile manufacturing plant. Material safety data sheets(MSDS) collected in 2010, work environment monitoring results reported from 2000 to 2013, trade union reports and asbestos survey reports were reviewed. We also interviewed workers with long career and did walk-through survey. Results: The Ministry of Labor in Korea has permitted asbestos manufacturing since 1990. In 1997, the use of crocidolite and amosite asbestos were banned. In 2007, the Korean government announced a total ban on the manufacturing, importation and use of all kinds of asbestos, which took full effect in 2009. A total of 174 asbestos products information from KOSHA database was analyzed. Extruded cement panel for building, special brake for crane farm machinery, gasket, joint sheet and thermal insulator were produced until 2007. From automobile manufacturing plant survey, we confirmed that asbestos containing materials(ACM) such as gasket, heating induction materials have been used until 2011. Asbestos containing building materials(ACBM) such as bamlites, slate and ceiling tex were reported at 122 asbestos dismantling projects in 2014. Conclusion: Although the use of all kinds of asbestos were banned from 2009, ACMs and ACBMs installed before 2009 were still found at automobile manufacturing plant until 2011 and 2014 respectively. In particular, asbestos slates should be managed because most of slates had not been removed until 2014.

발열반응 촉매제와 열처리를 이용한 석면함유 슬레이트의 무해화 연구 (Transformation of Asbestos-Containing Slate Using Exothermic Reaction Catalysts and Heat Treatment)

  • 윤성준;정현이;박병노;김용운;김혜수;박재봉;노열
    • 자원환경지질
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    • 제52권6호
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    • pp.627-635
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    • 2019
  • 슬레이트는 석면을 이용한 대표적인 건축자재 중 하나로써 백석면(10~20%)과 시멘트 성분을 결합하여 만든 제품이다. 슬레이트에 포함되어 있는 석면은 인체에 유입되면 세포 손상이나 변형을 일으키고 체외로 잘 배출되지 않아 폐암, 석면폐, 악성중피종 및 흉막비후 등과 같은 질병을 일으키는 원인이 되는 것으로 입증되어 1977년 세계보건기구(WHO) 산하 국제암연구소(IARC)에서는 1군 발암물질로 지정하였다. 현재 이러한 슬레이트는 대부분 지정매립장에 매립하여 처리하고 있으나 매립용량이 한계에 다다르고 있고 매립한다고 하여도 추후 외부환경으로 노출될 수 있는 잠재적인 위험성이 있어 매립 처리방법 이외에 슬레이트에 포함된 석면을 무해화하여 안전하게 처리할 수 있는 방법이 필요하다. 따라서 이 연구에서는 발열반응 촉매제와 열처리를 이용하여 슬레이트에 함유된 석면 무해화 가능성을 확인하고자 하였다. 실험은 석면해체·제거 사업장에서 발생한 석면함유 슬레이트를 이용하였고 발열반응 촉매제는 염화칼슘(CaCl2), 염화마그네슘(MgCl2), 수산화나트륨(NaOH), 규산소듐(Na2SiO3), 카올린[Al2Si2O5(OH)4)], 활석[Mg3Si4O10(OH)2]을 이용하여 총 6가지의 촉매제를 제조하였다. 6가지의 촉매제를 슬레이트에 각각 도포한 후 열중량-시차열분석(TG-DTA)을 실시하여 분석결과를 토대로 슬레이트 무해화를 위한 열처리 온도를 750℃로 결정하였다. 슬레이트에 6가지 촉매제를 각각 도포한 후 750℃에서 2시간 열처리하여 X-선 회절 분석(XRD), 주사전자현미경 분석(SEM-EDS), 투과전자현미경 분석(TEM-EDS)을 한 결과 슬레이트 내 백석면[chrysotile, Mg3Si2O5(OH5)]이 주상의 고토감람석(forsterite, Mg2SiO4)으로 상전이 됨을 확인하였다. 또한, 슬레이트 원시료와 발열반응 촉매제 도포 후 열처리한 시료에 물리적인 힘을 가하여 광물의 형상 변화를 비교 관찰한 결과, 슬레이트 내 백석면은 섬유형을 유지하였으나 촉매제 도포 및 열처리를 한 시료는 무정형 형태로 깨지는 것을 확인할 수 있었다. 따라서 발열반응 촉매제와 열처리를 통하여 낮은 온도에서 경제적으로 석면함유 슬레이트를 안전하게 처리할 수 있는 하나의 방안을 제시할 수 있을 것으로 사료된다.