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News ID: 153286
Publish Date : 01 September 2026 - 23:43

5,000-Year-Old Egyptian Blue Technology May Have Been Made in Iran

TEHRAN — Nearly 500 artifacts discovered at two archaeological sites in northwestern Iran are helping researchers investigate one of the ancient world’s most remarkable technological achievements: the production and use of Egyptian blue, the earliest known synthetic pigment.
The artifacts, dating to the Iron Age II period, were found at Hasanlu during the Hasanlu Project and at nearby Dinkha Tepe during archaeological expeditions led by the Penn Museum from the 1950s to the 1970s. 
Made from molded Egyptian blue paste, they include beads, vessels, furniture elements and decorative objects, revealing that the pigment had uses in ancient Iran that extended well beyond its traditional role as a paint.
Egyptian blue was developed in ancient Egypt about 5,000 years ago and became widely used because of its exceptionally stable blue color. Its presence in northwestern Iran roughly 2,000 years later, however, raises important questions about technological exchange, trade and the movement of people and materials across the ancient Near East.
Researchers from the University of Pennsylvania are now examining the Iranian artifacts to determine how the pigment was produced, where its raw materials originated and whether Egyptian blue was manufactured locally in northwestern Iran.
“If the pigment was made in northwestern Iran, then this is the earliest example of its production outside of Egypt,” archaeometallurgist Vanessa Workman said.
Egyptian blue is a synthetic material whose color comes from crystals with the same chemical composition as the rare naturally occurring mineral cuprorivaite. Because cuprorivaite is extremely uncommon in nature, the presence of the compound in archaeological objects generally indicates deliberate human production.
The manufacturing process required considerable technological knowledge. Ancient craftspeople combined a copper-bearing material with silica, usually quartz sand, an alkali such as plant ash or natron, and calcium carbonate such as limestone. The mixture was ground into a fine powder and heated at a controlled temperature inside a closed container.
Small changes in the recipe or production conditions could produce a related green pigment, demonstrating that ancient artisans had learned to manipulate the chemical composition and crystal structure of materials to obtain a desired color.
The scale and variety of Egyptian

 blue objects at Hasanlu and Dinkha Tepe have particularly attracted researchers’ attention. While Egyptian blue was commonly used as paint in Egyptian art and was also molded into small objects such as beads and amulets, the Iranian assemblage includes much larger and more varied items.
Researchers identified Egyptian blue in furniture legs, vessels, decorative wall tiles, bracelets and anklets, suggesting that the material occupied a significant place in the material culture of the region.
The pigment’s unusual ability to emit infrared light has made it possible to identify traces that may be difficult to see under normal lighting. Museum conservators can use visible-induced infrared luminescence photography to detect Egyptian blue without damaging archaeological objects.
Following the cataloging of the Hasanlu and Dinkha Tepe objects, researchers are now turning to detailed analysis of the pigment itself. Microscopy and chemical testing can reveal variations in composition and provide clues about production methods, while isotopic analysis of raw materials may help identify their geological sources.
The research could shed light not only on the technology behind Egyptian blue but also on the networks that connected ancient Iran with other parts of the Near East.
Determining where the copper, silica, alkali and calcium-bearing materials came from could help establish whether artisans at Hasanlu produced the pigment themselves or obtained it through long-distance exchange. Identifying local production would provide particularly significant evidence for the independent transmission or development of sophisticated pigment technology beyond Egypt.
The destruction of Hasanlu during the Iron Age also offers researchers an unusual archaeological window into the technology and society of the period, preserving objects that might otherwise have disappeared.
For Workman and museum conservator Alexis North, the investigation ultimately goes beyond the history of a single color. Chemical and isotopic evidence can help reconstruct ancient movements, contacts and technological pathways, offering a clearer picture of how people and ideas moved across the ancient world.
The Iranian discoveries therefore place northwestern Iran at the center of a broader question about the spread of ancient technology: how far did the knowledge required to manufacture one of the world’s earliest synthetic pigments travel, and who carried it? 
 
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