Investigation of early Bronze Age civilizations in Yunnan: a scientific analysis of metallurgical relics found at the Guangfentou ruins in Jiangchuan

[1]  M. Martinón-Torres,et al.  Bronze production in the Iron Age of the Iberian Peninsula: The case of El Castru, Vigaña (Asturias, NW Spain) , 2017 .

[2]  E. Pernicka,et al.  Large scale smelting of speiss and arsenical copper at Early Bronze Age Arisman, Iran , 2012 .

[3]  S. Weiner,et al.  Iron and bronze production in Iron Age IIA Philistia: new evidence from Tell es-Safi/Gath, Israel , 2012 .

[4]  Erica Hanning,et al.  Metal para Zambujal: reconstrucción experimental de una tecnología de 5.000 años , 2010 .

[5]  Thilo Rehren,et al.  On the origins of extractive metallurgy: new evidence from Europe , 2010 .

[6]  Rui J. C. Silva,et al.  Smelting and recycling evidences from the Late Bronze Age habitat site of Baiões (Viseu, Portugal) , 2010 .

[7]  Thomas Oliver Pryce,et al.  Khao Sam Kaeo - an archaeometallurgical cross-roads fro Trans-Asiatic technological traditions , 2010 .

[8]  I. Villa Lead isotopic measurements in archeological objects , 2009 .

[9]  Thilo Rehren,et al.  Almizaraque and the early copper metallurgy of Southeast Spain: New data , 2004 .

[10]  Natalja Ryndina,et al.  Copper Production from Polymetallic Sulphide Ores in the Northeastern Balkan Eneolithic Culture , 1999 .

[11]  F. Allard Stirrings at the Periphery: History, Archaeology, and the Study of Dian , 1998 .

[12]  Paul T. Craddock,et al.  Early metal mining and production , 1997 .

[13]  N. Chakraborti,et al.  Thermodynamics of roasting arsenopyrite , 1983 .

[14]  R. Tylecote Copper ingots and marine copper , 1980 .

[15]  R. Brill,et al.  Isotope Studies of Ancient Lead , 1967, American Journal of Archaeology.

[16]  J. Geiss,et al.  Isotopenuntersuchungen zur Bestimmung der Herkunft römischer Bleirohre und Bleibarren , 1966 .

[17]  E. Pernicka,et al.  Copper processing in the oases of northwest Arabia: technology, alloys and provenance , 2015 .

[18]  Rui J. C. Silva,et al.  Bronze production in Southwestern Iberian Peninsula: the Late Bronze Age metallurgical workshop from Entre Águas 5 (Portugal) , 2013 .

[19]  R. Gauss,et al.  Metal for Zambujal: experimentally reconstructing a 5000-year-old technology , 2011 .

[20]  S. Rovira,et al.  Experimental co-smelting to copper-tin alloys , 2009 .

[21]  A. Hauptmann The archaeometallurgy of copper , 2007 .

[22]  S. Rovira TECNOLOGÍA METALÚRGICA Y CAMBIO CULTURAL EN LA PREHISTORIA DE LA PENÍNSULA IBÉRICA , 2004 .

[23]  W. Dong Abundant Concentration of Lead on the Sample of Bronze drum in Viet Nam and Survey for Lead isotopic , 2002 .

[24]  T. Rehren,et al.  High-temperature workshop residues from Tara: iron, bronze, glass , 2002 .

[25]  J. B. Lambert Archaeological chemistry. , 2002, Accounts of chemical research.

[26]  H. Bachmann The Identification of Slags from Archaeological Sites , 1982 .

[27]  Stanley E. Aschenbrenner,et al.  Excavations at Nichoria in Southwest Greece, Vol. I: Site, Environs, and Techniques , 1980 .