Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century

The scarcity of excavated early-stage smelting sites related to copper production presents significant challenges in gaining a comprehensive understanding of the copper production process. However, the archaeological site discovered in 2018 in Daeryang-ri, Jinan-gun, Jeollabuk-do, boasts a substanti...

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Published in:Crystals
Main Authors: Hyoryeong Choi, Yeongchun Yu, Namchul Cho
Format: Article
Language:English
Published: MDPI AG 2024-03-01
Subjects:
Online Access:https://www.mdpi.com/2073-4352/14/4/327
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author Hyoryeong Choi
Yeongchun Yu
Namchul Cho
author_facet Hyoryeong Choi
Yeongchun Yu
Namchul Cho
author_sort Hyoryeong Choi
collection DOAJ
container_title Crystals
description The scarcity of excavated early-stage smelting sites related to copper production presents significant challenges in gaining a comprehensive understanding of the copper production process. However, the archaeological site discovered in 2018 in Daeryang-ri, Jinan-gun, Jeollabuk-do, boasts a substantial number of copper smelting remains and related slags, marking it as the first copper manufacturing production site identified on the Korean Peninsula. Consequently, this study selected 10 slag samples, chosen based on surface color and characteristics indicative of a connection to copper smelting, for scientific analysis to accurately ascertain the site’s nature. The primary component analysis of the slags indicated that CuO content ranged from 0.30 to 3.29 wt%, which, although not high, reveals significant quantities of FeO and SiO<sub>2</sub>. X-ray diffraction analysis revealed the presence of minerals such as cristobalite, along with fayalite and wüstite, commonly found in slags, varying by sample. Furthermore, microstructural observation revealed circular copper particles containing sulfur and iron, indicating the presence of copper particles in a matte state that have not been refined. This analysis suggests that the slags recovered from Jinan Daeryang-ri bear evidence of iron smelting at the site, with the slag being produced as an intermediate by-product during copper production.
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spelling doaj-art-e0f9b97a95a14d18ba9c7ff876e9bc4e2025-08-20T00:29:16ZengMDPI AGCrystals2073-43522024-03-0114432710.3390/cryst14040327Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th CenturyHyoryeong Choi0Yeongchun Yu1Namchul Cho2Department of Cultural Heritage Conservation Science, Kongju National University, Gongju 32588, Republic of KoreaGAYA Culture Institute, Kunsan National University, Gunsan 54150, Republic of KoreaDepartment of Cultural Heritage Conservation Science, Kongju National University, Gongju 32588, Republic of KoreaThe scarcity of excavated early-stage smelting sites related to copper production presents significant challenges in gaining a comprehensive understanding of the copper production process. However, the archaeological site discovered in 2018 in Daeryang-ri, Jinan-gun, Jeollabuk-do, boasts a substantial number of copper smelting remains and related slags, marking it as the first copper manufacturing production site identified on the Korean Peninsula. Consequently, this study selected 10 slag samples, chosen based on surface color and characteristics indicative of a connection to copper smelting, for scientific analysis to accurately ascertain the site’s nature. The primary component analysis of the slags indicated that CuO content ranged from 0.30 to 3.29 wt%, which, although not high, reveals significant quantities of FeO and SiO<sub>2</sub>. X-ray diffraction analysis revealed the presence of minerals such as cristobalite, along with fayalite and wüstite, commonly found in slags, varying by sample. Furthermore, microstructural observation revealed circular copper particles containing sulfur and iron, indicating the presence of copper particles in a matte state that have not been refined. This analysis suggests that the slags recovered from Jinan Daeryang-ri bear evidence of iron smelting at the site, with the slag being produced as an intermediate by-product during copper production.https://www.mdpi.com/2073-4352/14/4/327copper smeltingcopper slagssmelting processmatteDaeryang-ri
spellingShingle Hyoryeong Choi
Yeongchun Yu
Namchul Cho
Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century
copper smelting
copper slags
smelting process
matte
Daeryang-ri
title Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century
title_full Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century
title_fullStr Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century
title_full_unstemmed Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century
title_short Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century
title_sort chemical composition crystal structure and microstructure of slags on the korean peninsula from the first copper production remains of the 9th century
topic copper smelting
copper slags
smelting process
matte
Daeryang-ri
url https://www.mdpi.com/2073-4352/14/4/327
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