Enumeration of Sulfur-Oxidizing Microorganisms on Deteriorating Stone of the Angkor Monuments, Cambodia
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概要
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Annual change in the density of sulfur-oxidizing microorganisms on sandstone was enumerated to know the effects on the deterioration of stone materials of the Angkor monuments in Cambodia. Samples were obtained from total 12 stations at the Angkor Wat, Bayon, and Phnom Krom temples between 1998 and 2007. Sulfur-oxidizing microorganisms enumerated in a mineral salts medium supplemented with elemental sulfur as the sole energy source had a density of 10^1-10^5 MPN (g sample)^<-1>. The sulfur-oxidizing microorganisms of the samples collected at Angkor Wat have tended to decrease in density since 2002; on the other hand, relatively constant values have been recorded in the samples of Bayon and Phnom Krom. These results suggest that the sulfur-oxidizing microorganisms on the stone play an important role in the decay of the building blocks by excreting sulfuric acid.
著者
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LI XIANSHU
Graduate School of Agriculture, Tokyo University of Agriculture and Technology
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ARAI HIDEO
National Research Institute for Cultural Properties
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SHIMODA ICHITA
Department of Chemistry and Engineering, Waseda University
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KURAISHI HIROSHI
Ex-Tokyo University of Agriculture and Technology
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KATAYAMA YOKO
Graduate School of Agriculture, Tokyo University of Agriculture and Technology
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Li Xianshu
Graduate School Of Agriculture Tokyo University Of Agriculture And Technology
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Katayama Yoko
Graduate School Of Agriculture Tokyo University Of Agriculture And Technology
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Shimoda Ichita
Department Of Chemistry And Engineering Waseda University
関連論文
- Enumeration of Sulfur-Oxidizing Microorganisms on Deteriorating Stone of the Angkor Monuments, Cambodia
- PA-59 Sulfur-oxidizing acitivity found in fungus strain isolated from deteriorated stone surface in Angkor site, Cambodia(Physiology/Growth,Poster presentation A)
- 2-06 Autotrophic sulfur oxidation and phylogenetic characteristics of bacteria isolated from deteriorated stone in Angkor site, Cambodia(Physiology/Growth,Oral presentation)
- Biodegradation Potential of Organically Enriched Sediments under Sulfate- and Iron-Reducing Conditions as Revealed by the 16S rRNA Deep Sequencing