GSTDTAP  > 地球科学
DOI10.1130/B31690.1
Late Neogene-Quaternary tephrochronology, stratigraphy, and paleoclimate of Death Valley, California, USA
Knott, Jeffrey R.1; Machette, Michael N.2,10; Wan, Elmira3; Klinger, Ralph E.4; Liddicoat, Joseph C.5; Sarna-Wojcicki, Andrei M.3; Fleck, Robert J.3; Deino, Alan L.6; Geissman, John W.7,11; Slate, Janet L.2; Wahl, David B.3; Wernicke, Brian P.8; Wells, Stephen G.9,12; Tinsley, John C., III3; Hathaway, Jeffrey C.1,13; Weamer, Veva M.1,14
2018-07-01
发表期刊GEOLOGICAL SOCIETY OF AMERICA BULLETIN
ISSN0016-7606
EISSN1943-2674
出版年2018
卷号130页码:1231-1255
文章类型Article
语种英语
国家USA
英文摘要

Sedimentary deposits in midlatitude continental basins often preserve a paleoclimate record complementary to marine-based records. However, deriving that paleoclimate record depends on having well-exposed deposits and establishing a sufficiently robust geochronology. After decades of research, we have been able to correlate 77 tephra beds exposed in multiple stratigraphic sections in the Death Valley area, California, United States. These correlations identify 25 different tephra beds that erupted from at least five different volcanic centers from older than 3.58 Ma to ca. 32 ka. We have informally named and determined the ages for seven previously unrecognized beds: ca. 3.54 Ma tuff of Curry canyon, ca. 3.45 Ma tuff of Furnace Creek, ca. 3.1 Ma tuff of Kit Fox Hills, ca. 3.1 Ma tuff of Mesquite Flat, ca. 3.15 Ma tuff of Texas Spring, 3.117 +/- 0.011 Ma tuff of Echo Canyon, and the ca. 1.3 Ma Amargosa ash bed. Several of these tephra beds are found as far northeast as central Utah and could be important marker beds in western North America.


Our tephrochronologic data, combined with magnetic polarity data and Ar-40/Ar-39 age determinations, redefine Neogene sedimentary deposits exposed across 175 km(2) of the Death Valley area. The alluvial/lacustrine Furnace Creek Formation is a time-transgressive sedimentary sequence ranging from ca. 6.0 to 2.5 Ma in age. The ca. 2.5-1.7 Ma Funeral Formation is typically exposed as a proximal alluvial-fan facies overlying the Furnace Creek Formation. We have correlated deposits in the Kit Fox Hills, Salt Creek, Nova Basin, and southern Death Valley with the informally named ca. 1.3-0.5 Ma Mormon Point formation. In addition, our correlation of the late Pleistocene Wilson Creek ash bed 15 in the Lake Rogers deposits represents the first unambiguous sequences deposited during the Last Glacial Maximum (marine isotope stage [MIS] 2) in Death Valley.


Based on this new stratigraphic framework, we show that the Pliocene and Pleistocene climate in Death Valley is consistent with the well-established marine tropical/ subtropical record. Pluvial lakes in Death Valley and Searles Valley began to form ca. 3.5-3.4 Ma in the late Pliocene during MIS MG5. Initiation of lakes in these two hydrologically separated valleys at the same time at the beginning of a cooling trend in the marine climate record suggests a link to a cooler, wetter (glacial) regional climate in North America. The Death Valley lake persisted until ca. 3.30 Ma, at the peak of the M2 glaciation, after which there is no evidence of Pliocene lacustrine deposition, even at the peak of the Northern Hemisphere Glaciation (ca. 2.75 Ma). If pluvial lakes in the Pliocene are an indirect record of glacial climate conditions, as they are for the Pleistocene, then a glacial climate was present in western North America for similar to 200,000 yr during the Pliocene, encompassing MIS MG5-M2.


Pleistocene pluvial lakes in Death Valley that formed ca. 1.98-1.78 Ma, 1.3-1.0 Ma, and ca. 0.6 Ma (MIS 16) are consistent with other regional climate records that indicate a regional glacial climate; however, Death Valley was relatively dry at ca. 0.77 Ma (MIS 19), when large lakes existed in other basins. The limited extent of the MIS 2 marsh/shallow lake in the Lake Rogers basin of northern Death Valley reflects the well-known regional glacial climate at that time; however, Death Valley received relatively lower inflow and rainfall in comparison.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000437009200012
WOS关键词GREAT-BASIN ; PLEISTOCENE LAKES ; NORTH-AMERICA ; BISHOP ASH ; FAULT ZONE ; PLIOCENE ; HISTORY ; CLIMATE ; NEVADA ; RIVER
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/24850
专题地球科学
作者单位1.Calif State Univ Fullerton, Dept Geol Sci, Fullerton, CA 92834 USA;
2.US Geol Survey, Box 25046, Denver, CO 80225 USA;
3.US Geol Survey, 345 Middlefield Rd,MS 975, Menlo Pk, CA 94025 USA;
4.US Bur Reclamat, Tech Serv Ctr, POB 25007,D-8530, Denver, CO 80225 USA;
5.Columbia Univ, Barnard Coll, Dept Environm Sci, 3009 Broadway, New York, NY 10027 USA;
6.Berkeley Geochronol Ctr, 2455 Ridge Rd, Berkeley, CA 94709 USA;
7.Univ New Mexico, Dept Earth & Planetary Sci, MSC 03 2040, Albuquerque, NM 87001 USA;
8.CALTECH, Div Geol & Planetary Sci, Pasadena, CA 91125 USA;
9.Desert Res Inst, 2215 Raggio Pkwy, Reno, NV 89512 USA;
10.Paleo Seis Surveys LLC, 120 Fairbreeze Dr, Port Townsend, WA 98368 USA;
11.Univ Texas Dallas, Dept Geosci, 800 West Campbell Rd, Richardson, TX 75080 USA;
12.New Mexico Inst Min & Technol, 801 Leroy Pl,Brown Hall 217, Socorro, NM 87801 USA;
13.Paleo Solut, 911 S Primrose Ave,Unit N, Monrovia, CA 91016 USA;
14.Wildermuth Environm Inc, 23693 Birtcher Dr, Lake Forest, CA 92630 USA
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Knott, Jeffrey R.,Machette, Michael N.,Wan, Elmira,et al. Late Neogene-Quaternary tephrochronology, stratigraphy, and paleoclimate of Death Valley, California, USA[J]. GEOLOGICAL SOCIETY OF AMERICA BULLETIN,2018,130:1231-1255.
APA Knott, Jeffrey R..,Machette, Michael N..,Wan, Elmira.,Klinger, Ralph E..,Liddicoat, Joseph C..,...&Weamer, Veva M..(2018).Late Neogene-Quaternary tephrochronology, stratigraphy, and paleoclimate of Death Valley, California, USA.GEOLOGICAL SOCIETY OF AMERICA BULLETIN,130,1231-1255.
MLA Knott, Jeffrey R.,et al."Late Neogene-Quaternary tephrochronology, stratigraphy, and paleoclimate of Death Valley, California, USA".GEOLOGICAL SOCIETY OF AMERICA BULLETIN 130(2018):1231-1255.
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