Pulltrouser Swamp : : Ancient Maya Habitat, Agriculture, and Settlement in Northern Belize / / ed. by B. L. Turner, Peter D. Harrison.

Among Mesoamericanists, the agricultural basis of the ancient Maya civilization of the Yucatan Peninsula has been an important topic of research—and controversy. Interest in the agricultural system of the Maya greatly increased as new discoveries showed that the lowland Maya were not limited to slas...

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Superior document:Title is part of eBook package: De Gruyter University of Texas Press Complete eBook-Package Pre-2000
MitwirkendeR:
HerausgeberIn:
Place / Publishing House:Austin : : University of Texas Press, , [2021]
©1983
Year of Publication:2021
Language:English
Series:Texas Pan American Series
Online Access:
Physical Description:1 online resource (310 p.)
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Other title:Frontmatter --
Contents --
Preface --
1. Wetlands and the Maya: An Overview of the Problem and the Pulltrouser Swamp Project --
2. The Physical Setting: Northern Belize and Pulltrouser Swamp --
3. Vegetation Associations at Pulltrouser Swamp --
4. The Excavations of Raised and Channelized Fields at Pulltrouser Swamp --
5. The Soils of Pulltrouser Swamp: Classification and Characteristics --
Further Comments on Soils and Raised Fields --
6. Macrofloral Remains of the Pulltrouser Area: Settlements and Fields --
7. Analysis of Pollen from the Fields at Pulltrouser Swamp --
8. Mollusca: A Contrast in Species Diversity from Aquatic and Terrestrial Habitats --
9. The Pulltrouser Settlement Survey and Mapping of Kokeal --
10. The Excavations at Southern Kokeal --
11. The Ceramics of the Pulltrouser Area: Settlements and Fields --
12. The Lithic Artifacts of the Pulltrouser Area: Settlements and Fields --
13. Pulltrouser Swamp and Maya Raised Fields: A Summation --
References --
Index
Summary:Among Mesoamericanists, the agricultural basis of the ancient Maya civilization of the Yucatan Peninsula has been an important topic of research—and controversy. Interest in the agricultural system of the Maya greatly increased as new discoveries showed that the lowland Maya were not limited to slash-and-burn technology, as had been previously believed, but used a variety of more sophisticated agricultural techniques and practices, including terracing, raised fields, and, perhaps, irrigation. Because of the nature of the data and because this form of agricultural technology had been key to explanations of state formation elsewhere in Mesoamerica, raised-field agriculture became a particular focus of investigation. Pulltrouser Swamp conclusively demonstrates the existence of hydraulic, raised-field agriculture in the Maya lowlands between 150 B.C. and A.D. 850. It presents the findings of the University of Oklahoma's Pulltrouser SwampProject, an NSF-supported interdisciplinary study that combined the talents of archaeologists, anthropologists, geographers, paleobotanists, biologists, and zoologists to investigate the remains of the Maya agricultural system in the swampy region of northern Belize. By examining soils, fossil pollen and other plant remains, gastropods, relic settlements, ceramics, lithics, and other important evidence, the Pulltrouser Swamp team has clearly demonstrated that the features under investigation are relics of Maya-made raised and channelized fields and associated canals. Other data suggest the nature of the swamps in which the fields were constructed, the tools used for construction and cultivation, the possible crops cultivated, and at least one type of settlement near the fields, with its chronology. This verification of raised fields provides dramatic evidence of a large and probably organized workforce engaged in sophisticated and complex agricultural technology. As record of this evidence, Pulltrouser Swamp is a work of seminal importance for all students and scholars of New World prehistory.
Format:Mode of access: Internet via World Wide Web.
ISBN:9781477303276
9783110745351
DOI:10.7560/750678
Access:restricted access
Hierarchical level:Monograph
Statement of Responsibility: ed. by B. L. Turner, Peter D. Harrison.