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Application Experiments of Consolidation Treatment for Pelitic Sedimentary Rocks: Bird Track Fossils in Haman Formation

점토질 퇴적암의 강화처리 적용실험 연구: 함안층 새발자국 화석지

  • Lee, Gyu Hye (Department of Cultural Heritage Conservation Sciences, Kongju National University) ;
  • Lee, Chan Hee (Department of Cultural Heritage Conservation Sciences, Kongju National University) ;
  • Yang, Hye Ri (Department of Cultural Heritage Conservation Sciences, Kongju National University)
  • 이규혜 (공주대학교 문화재보존과학과) ;
  • 이찬희 (공주대학교 문화재보존과학과) ;
  • 양혜리 (공주대학교 문화재보존과학과)
  • Received : 2020.02.08
  • Accepted : 2020.02.20
  • Published : 2020.02.28

Abstract

The bird track fossil site in Haman Formation is divided into seven sedimental layers by the sedimentary structures, lithofacies and sequences. The bird tracks top on the highest layer, which includes ripple marks and suncracks. The layer has lithofacies with reddish grey siltstone and dark grey mudstone, alternately. As an analysis for the same rocks of the fossil site, physical properties show on mean values for 0.62% of absorption rate, 1.64% of porosity and 2.63 of specific gravity. Rock-forming minerals composed mainly of plagioclase, quartz, calcite, chlorite and mica. Meanwhile, we executed an experiments based on the petrography and weatherings to find a proper consolidants. In the experiments, the OH 100 reagent proved stable aspect and the lowest transition rate in terms of weight and chromaticity. Also, it showed the highest increase in ultrasonic velocity, improving the physical properties of the rocks. In the case of applying the OH 100 with antihygro, an swelling inhibitors on the sedimentary rocks, the chromaticity indicated an stable transition aspect. When it comes to the physical properties, the antihygro also decreases the porosity effectively. Thus, the most proper method for the fossil site of Haman Formation is to apply antihygro and OH 100 reagents since the rocks includes clay minerals that show swelling characteristics. However, this result is deduced from an indoor application experiments, leaving the necessity of verification how these reagents would affect the bird tracks site under the field condition.

함안층 새발자국 화석지는 퇴적순서와 구조 및 암상에 따라 7개의 지층으로 구분되며, 새발자국은 최상부층에서 나타난다. 이 화석층에는 연흔과 건열 등이 분포하며, 주로 적회색 미사암과 흑색 이암이 교호하는 암상을 보인다. 화석층과 동일 암석을 수습하여 물리적 및 광물학적 특성 분석 결과, 흡수율 0.62%, 공극률 1.64%, 비중 2.63이며, 조암 광물로는 사장석, 석영, 방해석, 녹니석 및 운모가 동정되었다. 화석지의 암석학적 및 풍화특성을 바탕으로 보존처리에 적합한 강화제 적정성 실험 결과, 시료의 무게변화가 가장 적은 것은 OH 100이었다. 강화실험에 따른 색차도 OH 100을 적용한 시료에서 가장 안정적임을 보였다. 팽윤저지제와 병행하여 강화제를 처리한 시료는 색차에 큰 변화가 있었다. 초음파 속도 변화 역시 OH 100에서 가장 높아져 암석의 물성이 강화된 것으로 나타났다. 팽윤저지제와 함께 OH 100을 적용한 경우에 공극율이 감소하여 물성강화에 영향을 미친 것으로 확인되었다. 그러나 함안층 새발자국 화석지는 점토광물을 포함하는 세립질 퇴적암으로 점토광물의 층간간격 및 흡수율 감소를 통한 물성강화를 위해 실제 화석지에는 팽윤저지제(antihygro)와 OH 100 강화제를 병행해 처리하는 것이 가장 안정적일 것으로 판단된다. 이는 실내 함침실험 결과이므로 화석지에 직접 사용하기 위해서는 현장 적용실험 등의 검증이 필요하다.

Keywords

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