Vegetation and climate history in the Westeifel Volcanic Field (Germany) during the past 11 000 years based on annually laminated lacustrine maar sediments

Boreas ◽  
2009 ◽  
Vol 38 (4) ◽  
pp. 679-690 ◽  
Author(s):  
THOMAS LITT ◽  
CHRISTIAN SCHÖLZEL ◽  
NORBERT KÜHL ◽  
ACHIM BRAUER
2015 ◽  
Vol 432 ◽  
pp. 36-48 ◽  
Author(s):  
Xiao-zhong Huang ◽  
Chun-zhu Chen ◽  
Wan-na Jia ◽  
Cheng-bang An ◽  
Ai-feng Zhou ◽  
...  

2018 ◽  
Vol 91 (2) ◽  
pp. 881-891 ◽  
Author(s):  
J. Andrew Nunnery ◽  
Sherilyn C. Fritz ◽  
Paul A. Baker ◽  
Wout Salenbien

AbstractVarious paleoclimatic records have been used to reconstruct the hydrologic history of the Altiplano, relating this history to past variability of the South American summer monsoon. Prior studies of the southern Altiplano, the location of the world’s largest salt flat, the Salar de Uyuni, and its neighbor, the Salar de Coipasa, generally agree in their reconstructions of the climate history of the past ∼24 ka. Some studies, however, have highly divergent climatic records and interpretations of earlier periods. In this study, lake-level variation was reconstructed from a ∼14-m-long sediment core from the Salar de Coipasa. These sediments span the last ∼40 ka. Lacustrine sediment accumulation was apparently continuous in the basin from ∼40 to 6 ka, with dry or very shallow conditions afterward. The fossil diatom stratigraphy and geochemical data (δ13C, δ15N, %Ca, C/N) indicate fluctuations in lake level from shallow to moderately deep, with the deepest conditions correlative with the Heinrich-1 and Younger Dryas events. The stratigraphy shows a continuous lake of variable depth and salinity during the last glacial maximum and latter stages of Marine Oxygen Isotope Stage 3 and is consistent with environmental inferences and the original chronology of a drill core from Salar de Uyuni.


2001 ◽  
Vol 44 (S1) ◽  
pp. 119-122 ◽  
Author(s):  
Chaoyong Hu ◽  
Junhua Huang ◽  
Guanqing Yang ◽  
Xiulun Lin ◽  
Nianqiao Fang

2005 ◽  
Vol 30 (3) ◽  
pp. 83-93
Author(s):  
Meltem Yýlmaz

Much of the world, is currently experiencing intense growth, especially in and around cities. Most conventional practitioners of modern design and construction find it easier to make buildings as if nature and place did not exist. Cars and factories might be thought as the most obvious enemies of the environment, but buildings consume more than half the energy used worldwide. Attempts to destroy building traditions have been associated in some countries with a drive to modernize. Beyond the traditional aspects of dwelling, the impact of globalization and its effect on rural economies, environmental problems, rapid urbanization and the unprecedented scale of housing problems which confront the peoples of the world in the twenty-first century, bring a new urgency to the study of the vernacular architecture in a sustaining sense. In this work, the concept of “sustainability” will be taken into consideration especially within the building scale. Vernacular architecture in the past produced a built environment which met people's needs without deteriorating the environment. This paper discusses the concept of sustainability in building design and connects it to the vernacular architecture with the search of the vernacular Antiochia houses as a sample; focusing on its architectural properties in detail. The study concludes that what is expected of architects in the current century is, wherever they work, they are to understand and digest the nature of climate, history and culture, that is to say, to obtain inspiration from the essence of place and to contribute to the creation of relevant architecture and city for a sustainable future.


2002 ◽  
Vol 58 (2) ◽  
pp. 171-181 ◽  
Author(s):  
Mark E. Lyford ◽  
Julio L. Betancourt ◽  
Stephen T. Jackson

AbstractRecords of Holocene vegetation and climate change at low elevations (<2000 m) are rare in the central Rocky Mountain region. We developed a record of Holocene vegetation and climate change from 55 14C-dated woodrat middens at two low-elevation sites (1275 to 1590 m), currently vegetated by Juniperus osteosperma woodlands, in the northern Bighorn Basin. Macrofossil and pollen analyses show that the early Holocene was cooler than today, with warming and drying in the middle Holocene. During the Holocene, boreal (Juniperus communis, J. horizontalis) and montane species (J. scopulorum) were replaced by a Great Basin species (J. osteosperma). J. osteosperma colonized the east side of the Pryor Mountains 4700 14C yr B.P. Downward movement of lower treeline indicates wetter conditions between 4400 and 2700 14C yr B.P. Increased aridity after 2700 14C yr B.P. initiated expansion of J. osteosperma from the east to west side of the Pryor Mountains.


2003 ◽  
Vol 35 (1) ◽  
pp. 56-66 ◽  
Author(s):  
V. M. Makeyev ◽  
D. P. Ponomareva ◽  
V. V. Pitulko ◽  
G. M. Chernova ◽  
D. V. Solovyeva

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