Hypogenic karst of the Great Basin

Author:

Hose* Louise D.1,DuChene* Harvey R.2,Jones Daniel3,Baker* Gretchen M.4,Havlena Zoë5,Sweetkind Donald6,Powell Doug7

Affiliation:

1. Department of Geological Sciences and Engineering, University of Nevada, Reno, Nevada 89557, USA

2. Karst Waters Institute, P.O. Box 362, Lake City, Colorado 81235, USA

3. Department of Earth and Environmental Science, New Mexico Institute of Mining and Technology, Socorro, New Mexico 87801, USA; and National Cave and Karst Research Institute, Carlsbad, New Mexico 88220, USA

4. Great Basin National Park, Baker, Nevada 89311, USA

5. Department of Earth and Environmental Science, New Mexico Institute of Mining and Technology, Socorro, New Mexico 87801, USA

6. U.S. Geological Survey, Denver Federal Center, P.O. Box 25046, MS 980, Denver, Colorado 80225, USA

7. Humboldt-Toiyabe National Forest, Ely Ranger District, Ely, Nevada 89301, USA

Abstract

ABSTRACT Discoveries in the 1980s greatly expanded speleologists’ understanding of the role that hypogenic groundwater flow can play in developing caves at depth. Ascending groundwater charged with carbon dioxide and, especially, hydrogen sulfide can readily dissolve carbonate bedrock just below and above the water table. Sulfuric acid speleogenesis, in which anoxic, rising, sulfidic groundwater mixes with oxygenated cave atmosphere to form aggressive sulfuric acid (H2SO4) formed spectacular caves in Carlsbad Caverns National Park, USA. Cueva de Villa Luz in Mexico provides an aggressively active example of sulfuric acid speleogenesis processes, and the Frasassi Caves in Italy preserve the results of sulfuric acid speleogenesis in its upper levels while sulfidic groundwater currently enlarges cave passages in the lower levels. Many caves in east-central Nevada and western Utah (USA) are products of hypogenic speleogenesis and formed before the current topography fully developed. Wet climate during the late Neogene and Pleistocene brought extensive meteoric infiltration into the caves, and calcite speleothems (e.g., stalactites, stalagmites, shields) coat the walls and floors of the caves, concealing evidence of the earlier hypogenic stage. However, by studying the speleogenetic features in well-established sulfuric acid speleogenesis caves, evidence of hypogenic, probably sulfidic, speleogenesis in many Great Basin caves can be teased out. Compelling evidence of hypogenic speleogenesis in these caves include folia, mammillaries, bubble trails, cupolas, and metatyuyamunite. Sulfuric acid speleogenesis signs include hollow coralloid stalagmites, trays, gypsum crust, pseudoscallops, rills, and acid pool notches. Lehman Caves in Great Basin National Park is particularly informative because a low-permeability capstone protected about half of the cave from significant meteoric infiltration, preserving early speleogenetic features.

Publisher

Geological Society of America

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Origin and modern microbial ecology of secondary mineral deposits in Lehman Caves, Great Basin National Park, NV, USA;Geobiology;2024-05

2. Gypsum Sediments in Lehman Caves, Great Basin National Park, NV, USA.;New Mexico Geological Society, 2022 Annual Spring Meeting, Proceedings Volume, Theme: "Karst in New Mexico in recognition of 2022 being the International Year of Caves and Karst";2022-04-07

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