Ancient glass an interdisciplinary exploration
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Cambridge University Press
2013
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100 | 1 | |a Henderson, Julian |d 1953- |e Verfasser |0 (DE-588)188420630 |4 aut | |
245 | 1 | 0 | |a Ancient glass |b an interdisciplinary exploration |c Julian Henderson, University of Nottingham |
264 | 1 | |a New York |b Cambridge University Press |c 2013 | |
300 | |a XX, 433 Seiten |b Illustrationen |c 26 cm | ||
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650 | 4 | |a Archäologie | |
650 | 4 | |a Geschichte | |
650 | 4 | |a Glass manufacture |x History | |
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adam_text | CONTENTS
Figures Page
χίϋ
Tables
xvii
Preface
xix
1
Glass as a Material: A Technological Background in
Faience, Pottery and Metal?
і
1.1
Glass as a Material
1
1.2
The Formation of Glass: Of Volcanic Glass, Asteroids, Slags
and Scums
5
1.3
Production of the First Glasses
8
1.4
The First Glass: A Paradigm Shift?
12
1.4.1
Glazed Steatite, Egyptian Blue and Faience
13
1.5
Evidence of Production Sites
18
1.6
Conclusions
19
2
Ways to Flux Silica: Ashes and Minerals
22
2.1
Glass Raw Materials
22
2.2
Halophytic Plant Ashes
23
2.2.1
Occurrence and Range of Types
23
2.2.2
Technological Considerations
24
2.2.3
Chemical Analyses of Plant Ashes
26
2.2.3.1
The Choice of Scientific Techniques for the
Analysis of Plant Ashes
26
2.2.3.2
Turner s Research
26
2.2.3.3
Brill s Work
28
2.2.3.4
Other and More Recent Research
29
vii
Contents
2.3 Major
Elemental Compositions of Syrian Halophytic Plants
and the Implications for Ancient Glass Production
34
2.3.1
A Relationship between Halophytic Plant Ash
Compositions and Plant Species?
36
2.3.2
Glass Coloration and Halophytic Plant Ashes
42
2.3.3
Alkali Levels in Halophytic Plants
44
2.3.4
Calcium Levels in Halophytic Plants
46
2.4
Forest Plant Ash Compositions
48
2.5
Natron
51
2.6 Reh
and Oos
53
2.7
Nephaline
54
2.8
Conclusions
54
3
Silica, Lime and Glass Colourants
56
3.1
Silica
56
3.2
Calcium and Aluminium
64
3.3
Colourants and Opacifiers
65
3.3.1
What Causes Glass Colour?
65
3.3.2
The Use of Colourant Materials
68
3.3.2.1
Cobalt Coloration in Glass
69
3.3.2.2
Manganese-Coloured Glass
75
3.3.2.3
Copper-and Gold-Coloured Translucent Glasses
75
3.3.3
Decolorised Glass
76
3.3.4
Glass Opacification
77
3.4
Conclusions
81
4
Glass Chemical Compositions
83
4.1
The Middle East and Europe
с
2500
b.C.-a.d.
1700 85
4.1.1
Plant Ash Glasses
с
2500-c.
800 B.c.; a.D. 800-1700 85
4.1.2
Mixed-Alkali Glass and Its Compositional Variations
(с.
ІЮО-сЛЗОв.с.)
90
4.1.3
The Transition from Plant Ash Glass to Natron Glass,
с
A.D. 800 91
4.1.4
Natron Glasses
с
800
в.С.-с.
A.D. 800 92
4.1.5
The Demise of Natron Glass Technology: The
Reintroduction
of Plant Ash Glass Technology from
с
a.D. 800
in the Middle East
97
4.1.6
The Demise of Natron Glass Technology: From
Natron Glass to Wood Ash Glass North of the Alps
102
4.1.7
Wood Ash Glasses and the Use of Other Alkali-Rich
Plants (c.
A.D. 800-1700) 104
viii
Contents
4.1.8
Lead Oxide-Silica Glass in the West
108
4.2
India, Pakistan, and Sri Lanka 111
4.2.1
The Compositional Types 111
4.2.2
Soda-Alumina Glass: Technology and Trade
(Beads and Bangles)
113
4.3
Africa and Madagascar
116
4.3.1
The Compositional Types
116
4.3.2
High Lime High Alumina Glass
117
4.4
China and Southeast Asia
118
4.4.1
The Compositional Types
118
4.4.2
Lead-Barium Oxide Glasses
123
4.4.3
Potassium-Silica Glasses
123
4.4.4
Potassium-Lime Glasses
124
4.4.5
Lead-Potassium and Lead-Soda Glasses
125
4.4.6
Mixed-Alkali Glasses in Southeast Asia
126
4.4.7
Lead-Silica Glasses
126
Early Glass in the Middle East and Europe: Innovation,
Archaeology and the Contexts for Production and Use
127
5.1
The Social and Political Contexts of Early Glass Production
in the Middle East
127
5.2
The Occurrence of Early Glasses in Mesopotamia
132
5.2.1
Alalakh, Tell Atchana (Plain of Antioch), Turkey
136
5.2.2
Ugarit-Ras Shamra, Syria
138
5.2.3
Tell
Brak,
Syria, Northern Mesopotamia
139
5.2.4
Nuzi,
Near Kirkuk, Iraq, Northern Mesopotamia
140
5.2.5
Assur,
Iraq, Northern Mesopotamia
141
5.2.6
Tell al-Rimah, Iraq, Northern Mesopotamia
142
5.2.7
Ur, Iraq, Babylonia
142
5.2.8
Nippur, Iraq, Babylonia
143
5.2.9
Tchoga Zanbil, Iran, Babylonia
143
5.3
Innovation and Glass Technology in Mesopotamia
144
5.4
The Social and Political Contexts for the Earliest Evidence
of Glass Production in Europe
148
5.4.1
Frattesina,
Provincia Rovigo,
a Key Site for Early
Glass in Europe
152
5.4.1.1
The Chronology of Frattesina (Twelfth-Ninth
Centuries
B.c.) 154
5.4.1.2
Evidence of the Glass Industry at Frattesina
154
5.5
Conclusions
156
ix
Contents
Early Glass in the Middle East and Europe: Scientific
Analysis
158
6.1
Scientific Analysis of Mesopotamian and Syro-Palestinian
Glasses (c.
1500 1000
B.C.)
160
6.2
Scientific Analyses of Egyptian Glasses
164
6.3
Scientific Analyses of Mycenaean Glasses
165
6.4
Did Primary Glass Production Occur in Different Parts of
the Bronze Age Mediterranean?
167
6.4.1
An
Isotopie
Approach
175
6.4.2
The Way Forward
181
6.5
Scientific Analyses of Mixed-Alkali and Potassium Glasses,
and Mixed-Alkali Glassy Faience and Faience from Europe:
Evidence of Production Zones?
183
6.5.1
Potassium Glasses
196
6.6
Local Production Centres in Bronze Age Europe
197
6.7
Conclusions
199
Hellenistic to Early Roman Glass: A Change from
Small- to Large-Scale Production?
203
7.1
The Hellenistic and Roman Middle East
205
7.2
Hellenistic Glass Production
209
7.2.1
Primary and Secondary Production of Hellenistic
Glass
214
7.2.1.1
Rhodes
214
7.2.1.2
Beirut
215
7.2.1.3
Syria, Greece and North Africa
222
7.3
Some Hellenistic Vessel Forms
223
7.3.1
Hellenistic Core-Formed Vessels
223
7.3.2
Hellenistic Glass on Rhodes
226
7.4
Early Roman Glass Production
227
7.5
The Use of Hellenistic and Roman Glass
232
Late Hellenistic and Early Roman Glass: Scientific
Studies
235
8.1
Levantine Glass and a Comparison with Other Glasses
236
8.2
The Relevance of Furnace Glass
242
8.3
Greece Rhodes and Transalpine Europe
246
8.4
Links with Roman Glass
247
8.5
Glass and Society
250
Contents
9
Islamic Glass: Technological Continuity and
Innovation
252
9.1
The Social, Political and Religious Contexts of Islamic Glass
Production
252
9.2
Islamic Glass Technology
257
9.2.1
Raw Materials and Historical References to Their Use
260
9.2.2
The Change from Natron to Plant Ashes
265
9.3
Production Centres
266
9.4
Archaeological Evidence for Production Sites and Furnaces
270
9.5
Archaeological Considerations for Scientific Analysis
276
10
Islamic Glass: Scientific Research
279
10.1
Umayyad Glass
280
10.2
Abbãsid
Glass
282
10.3
Glass Compositions and Vessel Types from the Middle East
290
10.4
Other Islamic Glass Compositions
296
10.4.1
Islamic Glass from North Africa and the Persian Gulf
300
10.5
Conclusions
303
11
The Provenance of Ancient Glass
306
11.1
Models for Glass Production and Glass Provenance
307
11.2
Glass Provenance and the Chemical Composition of Raw
Materials
309
11.2.1
Silica
309
11.2.2
Natron,
Trona,
Nepheline and
Reh 310
11.2.3
Plant Ashes
310
11.3
Glass Provenance and Batch Formation
314
11.3.1
Alkali Sources
315
11.3.2
Ashing and Fritting
316
11.3.3
Bronze Age Glass
317
11.4
Glass Provenance and Chemical Compositions
319
11.4.1
Technological and Cultural Factors
319
11.4.2
The Chemical Compositions of Plant Ashes and
Plant Ash Glasses
320
11.4.3
Summary
325
11.5
The Use of Isotopes to Provenance Glass: The Importance
of an Environmental Approach
326
11.5.1
Calcium Sources, Strontium Isotopes and Glass
Provenance
328
xi
Contents
11.5.2
Silica Sources, Neodymium and Oxygen Isotopes
and Glass Provenance
330
11.5.3
Lead Isotopes in Glass
333
11.5.4
Mixing of Raw Glass and Glass Raw Materials
334
11.6
A Case Study: Strontium, Neodymium, Oxygen and Lead
Isotopes of Glass Found at the Glassmaking Site of
Al-Raqqa, Syria
333
11.6.1
New Information about the Use of Glass Raw
Materials
339
11.6.2
Evidence for Mixing of Raw Materials
340
11.6.3
Local Production and Imports
342
11.7
Lead Isotope Analyses of Bronze Age and Islamic Plant Ash
Glasses
345
11.8
The Future Potential of Isotope Studies
347
11.8.1
Local Manufacture
348
11.8.1.1
Bronze Age and Islamic Plant Ash Glasses
348
11.8.1.2
Phoenician, Hellenistic, Iron Age and Roman
Natron Glasses
351
11.8.2
The Supply System
355
11.8.2.1
Bronze Age and Islamic Plant Ash Glass
355
11.8.2.2
Phoenician, Hellenistic, Iron Age and Roman
Natron Glasses
356
11.8.3
Trade
357
11.8.3.1
Trade in Bronze Age and Islamic Plant Ash
Glasses
357
11.8.3.2
Trade in Phoenician, Hellenistic, Iron Age and
Early Roman Natron Glasses
359
11.9
Conclusions
360
12
Conclusions
363
Appendix
373
Bibliography
381
Index
425
Xli
|
any_adam_object | 1 |
author | Henderson, Julian 1953- |
author_GND | (DE-588)188420630 |
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author_sort | Henderson, Julian 1953- |
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building | Verbundindex |
bvnumber | BV040755144 |
callnumber-first | T - Technology |
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callnumber-raw | TP850 |
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callnumber-subject | TP - Chemical Technology |
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dewey-ones | 748 - Glass |
dewey-raw | 748.2009/01 |
dewey-search | 748.2009/01 |
dewey-sort | 3748.2009 11 |
dewey-tens | 740 - Graphic arts and decorative arts |
discipline | Kunstgeschichte Geschichte Klassische Archäologie |
era | Geschichte gnd |
era_facet | Geschichte |
format | Book |
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geographic | Glassware, Ancient Glassware, Classical |
geographic_facet | Glassware, Ancient Glassware, Classical |
id | DE-604.BV040755144 |
illustrated | Illustrated |
indexdate | 2025-02-14T17:56:55Z |
institution | BVB |
isbn | 9781107551909 9781107006737 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-025734827 |
oclc_num | 830936853 |
open_access_boolean | |
owner | DE-473 DE-BY-UBG DE-19 DE-BY-UBM DE-20 DE-188 DE-210 |
owner_facet | DE-473 DE-BY-UBG DE-19 DE-BY-UBM DE-20 DE-188 DE-210 |
physical | XX, 433 Seiten Illustrationen 26 cm |
psigel | gbd_4_1308 |
publishDate | 2013 |
publishDateSearch | 2013 |
publishDateSort | 2013 |
publisher | Cambridge University Press |
record_format | marc |
spellingShingle | Henderson, Julian 1953- Ancient glass an interdisciplinary exploration Archäologie Geschichte Glass manufacture History SOCIAL SCIENCE / Archaeology bisacsh Archäologie (DE-588)4002827-6 gnd Glas (DE-588)4021142-3 gnd |
subject_GND | (DE-588)4002827-6 (DE-588)4021142-3 |
title | Ancient glass an interdisciplinary exploration |
title_auth | Ancient glass an interdisciplinary exploration |
title_exact_search | Ancient glass an interdisciplinary exploration |
title_full | Ancient glass an interdisciplinary exploration Julian Henderson, University of Nottingham |
title_fullStr | Ancient glass an interdisciplinary exploration Julian Henderson, University of Nottingham |
title_full_unstemmed | Ancient glass an interdisciplinary exploration Julian Henderson, University of Nottingham |
title_short | Ancient glass |
title_sort | ancient glass an interdisciplinary exploration |
title_sub | an interdisciplinary exploration |
topic | Archäologie Geschichte Glass manufacture History SOCIAL SCIENCE / Archaeology bisacsh Archäologie (DE-588)4002827-6 gnd Glas (DE-588)4021142-3 gnd |
topic_facet | Archäologie Geschichte Glass manufacture History SOCIAL SCIENCE / Archaeology Glas Glassware, Ancient Glassware, Classical |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025734827&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT hendersonjulian ancientglassaninterdisciplinaryexploration |