An improved method for the sealed-tube zinc graphitization of microgram carbon samples and 14C AMS measurement

被引:27
作者
Walker, Brett D. [1 ]
Xu, Xiaomei [1 ]
机构
[1] Univ Calif Irvine, Dept Earth Syst Sci, Irvine, CA 92697 USA
关键词
Graphitization; C-14; Zinc; Accelerator mass spectrometry; Compound-specific; CSRA; Small sample; REDUCTION METHOD; INTERFACE; PRECISION; HPLC;
D O I
10.1016/j.nimb.2018.08.004
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Advances in accelerator mass spectrometry (AMS) and environmental chemistry techniques have increased demand for the natural abundance C-14 analysis of ultra-small ( < 25 mu gC) and compound-specific samples. The sealed-tube zinc (Zn) method is used for the reduction of sample CO2 to graphite on an iron catalyst. This method provides reliable, low AMS C-14 backgrounds and high measurement precision over a wide range of sample sizes (1000 mu gC to < 15 mu gC). Recently, Rinyu and co-workers demonstrated improved ion beam currents and C-14 backgrounds when performing sealed-tube Zn graphitization by applying a thermal gradient (from room temperature to 550 degrees C) on 25-100 mu gC samples M. However, many compound-specific radiocarbon analysis (CSRA) measurements are limited to smaller sample sizes - often < 10 mu gC per analyte with repeated collection by gas or liquid chromatography. Using a similar thermal gradient setup, we present an improved sealed-tube Zn method for the graphitization of samples ranging from ultra-small mass (2 mu gC) and up to 100 mu gC in the Keck Carbon Cycle AMS facility (KCCAMS) at the University of California, Irvine. Our improved method produces high AMS currents (he(12)C(+) similar to 1 A mu gC(-1)), a low extraneous C blank (0.5-0.7 mu gC), high measurement precision (2-10% as relative % error) and accuracy (95-97%, as an absolute % difference of measured vs. consensus fraction modem values) for modern 2-5 mu gC samples. These improvements have resulted in a sealed-tube Zn method which equals the performance of the ultra-small mass H-2 reduction method for 2-10 mu gC samples [2].
引用
收藏
页码:58 / 65
页数:8
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共 18 条
  • [1] Radiocarbon Analysis of Individual Amino Acids: Carbon Blank Quantification for a Small-Sample High-Pressure Liquid Chromatography Purification Method
    Bour, Amy L.
    Walker, Brett D.
    Broek, Taylor A. B.
    McCarthy, Matthew D.
    [J]. ANALYTICAL CHEMISTRY, 2016, 88 (07) : 3521 - 3528
  • [2] HPLC Purification of Higher Plant-Dervied Lignin Phenols for Compound Specific Radiocarbon Analysis
    Ingalls, Anitra E.
    Ellis, Erin E.
    Santos, Guaciara M.
    McDuffee, Kelsey E.
    Truxal, Laura
    Keil, Richard G.
    Druffel, Ellen R. M.
    [J]. ANALYTICAL CHEMISTRY, 2010, 82 (21) : 8931 - 8938
  • [3] Tracing the production and fate of individual archaeal intact polar lipids using stable isotope probing
    Kellermann, Matthias Y.
    Yoshinaga, Marcos Y.
    Wegener, Gunter
    Krukenberg, Viola
    Hinrichs, Kai-Uwe
    [J]. ORGANIC GEOCHEMISTRY, 2016, 95 : 13 - 20
  • [4] Preparative HPLC with ultrastable-Y zeolite for compound-specific carbon isotopic analyses
    Kenig, F
    Popp, BN
    Summons, RE
    [J]. ORGANIC GEOCHEMISTRY, 2000, 31 (11) : 1087 - 1094
  • [5] Small-mass graphite preparation by sealed tube zinc reduction method for AMS 14C measurements
    Khosh, Matthew S.
    Xu, Xiaomei
    Trumbore, Susan E.
    [J]. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 2010, 268 (7-8) : 927 - 930
  • [6] IMPROVED PRECISION OF RADIOCARBON MEASUREMENTS FOR CH4 AND CO2 USING GC AND CONTINUOUS-FLOW AMS ACHIEVED BY SUMMATION OF REPEATED INJECTIONS
    McIntyre, Cameron P.
    McNichol, Ann P.
    Roberts, Mark L.
    Seewald, Jeffrey S.
    von Reden, Karl F.
    Jenkins, William J.
    [J]. RADIOCARBON, 2013, 55 (2-3) : 677 - 685
  • [7] A CONTINUOUS-FLOW GAS CHROMATOGRAPHY 14C ACCELERATOR MASS SPECTROMETRY SYSTEM
    McIntyre, Cameron P.
    Galutschek, Ernst
    Roberts, Mark L.
    von Reden, Karl F.
    McNichol, Ann P.
    Jenkins, William J.
    [J]. RADIOCARBON, 2010, 52 (02) : 295 - 300
  • [8] Gas Chromatograph-Combustion System for 14C-Accelerator Mass Spectrometry
    McIntyre, Cameron P.
    Sylva, Sean P.
    Roberts, Mark L.
    [J]. ANALYTICAL CHEMISTRY, 2009, 81 (15) : 6422 - 6428
  • [9] An interface for the direct coupling of small liquid samples to AMS
    Ognibene, T. J.
    Thomas, At.
    Daley, P. F.
    Bench, G.
    Turteltaub, K. W.
    [J]. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 2015, 361 : 173 - 177
  • [10] FLAME-SEALED TUBE GRAPHITIZATION USING ZINC AS THE SOLE REDUCTION AGENT: PRECISION IMPROVEMENT OF EnvironMICADAS 14C MEASUREMENTS ON GRAPHITE TARGETS
    Orsovszki, Gergely
    Rinyu, Laszlo
    [J]. RADIOCARBON, 2015, 57 (05) : 979 - 990