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Accurate compound-specific C-14 dating of archaeological pottery vessels 期刊论文
NATURE, 2020, 580 (7804) : 506-+
作者:  Yin, Yafei;  Lu, J. Yuyang;  Zhang, Xuechun;  Shao, Wen;  Xu, Yanhui;  Li, Pan;  Hong, Yantao;  Cui, Li;  Shan, Ge;  Tian, Bin;  Zhang, Qiangfeng Cliff;  Shen, Xiaohua
收藏  |  浏览/下载:35/0  |  提交时间:2020/05/13

Pottery is one of the most commonly recovered artefacts from archaeological sites. Despite more than a century of relative dating based on typology and seriation(1), accurate dating of pottery using the radiocarbon dating method has proven extremely challenging owing to the limited survival of organic temper and unreliability of visible residues(2-4). Here we report a method to directly date archaeological pottery based on accelerator mass spectrometry analysis of C-14 in absorbed food residues using palmitic (C-16:0) and stearic (C-18:0) fatty acids purified by preparative gas chromatography(5-8). We present accurate compound-specific radiocarbon determinations of lipids extracted from pottery vessels, which were rigorously evaluated by comparison with dendrochronological dates(9,10) and inclusion in site and regional chronologies that contained previously determined radiocarbon dates on other materials(11-15). Notably, the compound-specific dates from each of the C-16:0 and C-18:0 fatty acids in pottery vessels provide an internal quality control of the results(6) and are entirely compatible with dates for other commonly dated materials. Accurate radiocarbon dating of pottery vessels can reveal: (1) the period of use of pottery  (2) the antiquity of organic residues, including when specific foodstuffs were exploited  (3) the chronology of sites in the absence of traditionally datable materials  and (4) direct verification of pottery typochronologies. Here we used the method to date the exploitation of dairy and carcass products in Neolithic vessels from Britain, Anatolia, central and western Europe, and Saharan Africa.


Using lipid residues absorbed in potsherds, the ages of pottery from various archaeological sites are determined and validated using sites for which the dates are well known from other methods.


  
Growth and yield drivers of loblolly pine in the southeastern US: A meta-analysis 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2019, 435: 205-218
作者:  Restrepo, Hector I.;  Bullock, Bronson P.;  Montes, Cristian R.
收藏  |  浏览/下载:15/0  |  提交时间:2019/04/09
Pines taeda L.  Schumacher model  Site quality  Spatially explicit models  Genetically improved trees  Silvicultural regimes  
Environmental implications of harvesting lower-value biomass in forests 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2018, 407: 47-56
作者:  Vance, Eric D.;  Prisley, Stephen P.;  Schilling, Erik B.;  Tatum, Vickie L.;  Wigley, T. Bently;  Lucier, Alan A.;  Van Deusen, Paul C.
收藏  |  浏览/下载:11/0  |  提交时间:2019/04/09
Biomass harvesting  Residues  Site productivity  Biodiversity  Water quality  Certification  
Salvage logging of mountain birch after geometrid outbreaks: Ecological context determines management outcomes 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2017, 405
作者:  Vindstad, Ole Petter Laksforsmo;  Jepsen, Jane Uhd;  Klinghardt, Moritz;  Ek, Malin;  Ims, Rolf Anker
收藏  |  浏览/下载:14/0  |  提交时间:2019/04/09
Basal sprout  Sapling  Herbivory  Stand recovery  Site quality  Field experiment  
Geocentric alternatives to site index for modeling tree increment in uneven-aged mixed stands 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2017, 392: 43477
作者:  Danescu, Adrian;  Albrecht, Axel T.;  Bauhus, Juergen;  Kohnle, Ulrich
收藏  |  浏览/下载:15/0  |  提交时间:2019/04/09
Basal area increment  Climate change  Climate-sensitive modeling  Site quality  Uneven-aged forests  
West Valley Demonstration Project Annual Site Environmental Report Calendar Year 2013 科技报告
来源:US Department of Energy (DOE). 出版年: 2014
作者:  Rendall, John D.;  Steiner, Alison F.;  Pendl, Michael P.
收藏  |  浏览/下载:26/0  |  提交时间:2019/04/05
West Valley Demonstration Project  WVDP  Annual Site Environmental Report  ASER  Calendar Year 2013  CH2M HILL • B&W West Valley  LLC  DE-EM0001529  Public Health and Safety and the Environment Are Protected  Airborne and Waterborne Releases to the MEOSI  Climate Change  DOE/NYSERDA Consent Decree  Dose Assessment  Dose to Biota  Drinking Water  Environmental Characterization Support Services  Environmental Compliance  Environmental Management System: EMS  Environmental Monitoring  Groundwater Protection Program  High-Level Waste (HLW) Canister Interim Storage System  HLW canister storage pad  National Emissions Standards for Hazardous Air Pollutants  NESHAP  National Environmental Policy Act  NEPA  North Plateau Full-Scale Permeable Treatment Wall  PTW  Nuclear Regulatory Commission (NRC)-Licensed Disposal Area  NDA  Performance Indicators  Phase 1 Decommissioning and Facility Disposition Contract  Phase 1 Studies  Quality Assurance  Record of Decision  ROD  Resource Conservation and Recovery Act  RCRA  Safety Success  Site Sustainability Plan  SSP  State Pollutant Discharge Elimination System (SPDES) Permit Noncompliance  SPDES  Tank and Vault Drying System  T&VDS  Vertical Storage Casks  VSC  Waste Minimization and Pollution Prevention  Waste Tank Farm  WTF  Waste-Incidental-to-Reprocessing  WIR