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9篇 您的检索式:作者名="Patrick Hatcher"
    题名 作者 年代 出处 被引量
1Hydrogen-deficient molecules in natural riverine water samples—evidence for the existence of black carbon in DOM显示文摘Sunghwan Kim Louis A. Kaplan Ronald Benner Patrick G. Hatcher 2004Marine Chemistry2004,,1:2
2Overestimates of black carbon in soils and sediments显示文摘Myrna J. Simpson Patrick G. Hatcher 2004Naturwissenschaften2004,,9:1
3Analysis of aliphatic biopolymers using thermochemolysis with tetramethylammonium hydroxide(TMAH)and gas chromatography mass spectrometry显示文摘Jose C Del Riaol Patrick G Hatcher 1998Org Geochem1998,29,5:1
4Use of High resolution 13 C NMR to examine the enzymatic colvalent binding of 13 C-labelled 2,4-Dichlorophenol to humic substances显示文摘Patrick G Hatcher 1993Environ Sci Technol1993,27,:1
5Analysis of aliphaticbiopolymers using thermochemolysis with tetramethylammoniumhydroxide ( TMAH ) and gas chromatography mass spectrometry显示文摘Jose C Del Riaol Patrick G Hatcher 1998Org Geochem1998,29,5:1
6Identification of black carbon derived structures in a volcanic ash soil humic acid by Fourier transform ion cyclotron resonance mass spectrometry显示文摘Robert W Kramer Elizabeth B Kujawinski Patrick G Hatcher 2004Environ Sci Technol2004,38,12:1
7Identification of black carbon derived structures in a volcanic ash soil humic acid by Fourier transform ion cyclotron resonance mass spectrometry显示文摘Robert W Kramer Elizabeth B Kujawinski Patrick G Hatcher 2004Environ Sci Technol2004,38,12:1
8Use of High - resolution ^13C NMR to examine the enzymatic colvalent binding of ^13C - labelled 2, 4 - Dichlorophenol to humic substances显示文摘Patrick G Hatcher 1993Environ Sci Technol1993,27,:1
9High-resolution mass spectrometric characterization of dissolved organic matter from warm and cold periods in the NEEM ice core显示文摘Dissolved organic matter(DOM) is an important component of ice cores but is currently poorly characterized. DOM from one Holocene sample(HS, aged at 1600–4500 B.P.) and one Last Glacial Maximum sample(LS, aged at 21000–25000 B.P.) from the North Greenland Eemian Ice Drilling(NEEM) ice core were analyzed by ultra-high resolution Fourier transform ion cyclotron resonance mass spectrometry(FT-ICR-MS). CHO compounds contributed 50% of the compounds identified in negative-ionization mode in these two samples, with significant contributions from organic N, S, and P compounds, likely suggesting that marine DOM was an important source in these samples. Overall, the chemical compositions are similar between these two samples, suggesting their consistent DOM sources. However, subtle differences in the DOM between these two samples are apparent and could indicate differences in source strength or chemistry occurring through both pre-and post-depositional processes. For example, higher relative amounts of condensed carbon compounds in the HS DOM(5%), compared to the LS DOM(2%), suggest potentially important contributions from terrestrial sources. Greater incorporation of P in the observed DOM in the LS DOM(22%), compared to the HS DOM(13%), indicate more active microbiological processes that likely contribute to phosphorus incorporation into the DOM pool. Although these two samples present only a preliminary analysis of DOM in glacial/interglacial periods, the data indicate a need to expand the analysis into a broader range of ice-core samples, geographical locations, and glacial/interglacial periods.Jian Zhong Xu Amanda Grannas Cun De Xiao Zhi Heng Du Amanda Willoughby Patrick Hatcher Yan Qing An 2018Research in Cold and Arid Regions2018,10,1:0
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