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Compositional tracking of dissolved organic matter in semiarid wheat-based cropping systems using fluorescence EEMs-PARAFAC and absorbance spectroscopy

机译:利用荧光EEMs-PARAFAC和吸收光谱分析半干旱小麦种植系统中溶解有机物的成分追踪

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摘要

We conducted this study to quantify long-term cropping related changes in soil organic carbon (SOC) stocks and characterize the optical properties of dissolved organic matter (DOM) after a decadal on-farm experiment in Montana, USA. Soil samples (0-50 cm) were collected from minimum till (MT) and no-till (NT) fields under fallow-winter wheat (Triticum aestivum L; F-W) and pea-winter wheat (Pisum sativum L.; P-W) rotations. Stocks of SOC(0-50 cm) averaged 65.6 Mg C ha(-1) and 60.6 Mg C ha(-1) for P-W and F-W, respectively. The net SOC accretion rate for P-W equated to 0.61 Mg ha(-1) yr(-1) relative to F-W. We used absorbance spectroscopy and excitation-emission matrices to characterize DOM composition of samples collected from MT F-W and NT P-W. The two cropping systems exhibited similar estimates of aromaticity (absorbance at 254 nm; 0.33-0.39 a.u.) and humification index (1.83-1.86). Parallel factor (PARAFAC) analysis revealed humic-like (C1, C2), monolignol/amino acid-like (C3), and amino acid-/tannin-like (C4) components with equivalent fluorescent intensities among MT F-W and NT P-W. Fluorescence efficiencies increased with depth, suggesting a shift from larger, plant-like material to smaller, microbial-derived precursors. Overall, we found DOM composition to be minimally affected by cropping systems in this semiarid climate of the northern Great Plains.
机译:在美国蒙大拿州进行了十年的农场试验后,我们进行了这项研究,以量化土壤有机碳(SOC)储量与长期种植相关的变化,并表征可溶性有机物(DOM)的光学性质。在小冬小麦(Triticum aestivum L; FW)和豌豆冬小麦(Pisum sativum L.; PW)轮作下,从最小耕作(MT)和免耕(NT)田地收集土壤样品(0-50 cm)。 。 P-W和F-W的SOC(0-50 cm)库存平均分别为65.6 Mg C ha(-1)和60.6 Mg C ha(-1)。相对于F-W,P-W的净SOC积聚率等于0.61 Mg ha(-1)yr(-1)。我们使用吸收光谱和激发发射矩阵来表征从MT F-W和NT P-W收集的样品的DOM组成。两种耕作系统对芳香性(在254 nm处的吸光度; 0.33-0.39 a.u.)和增湿指数(1.83-1.86)有相似的估计。平行因子(PARAFAC)分析显示在MT F-W和NT P-W之间具有相同的荧光强度的类腐殖质(C1,C2),单木酚/氨基酸类(C3)和氨基酸/单宁类(C4)组分。荧光效率随深度的增加而增加,表明从较大的类植物材料向较小的微生物来源前体转变。总体而言,我们发现在大平原北部这种半干旱气候下,种植系统对DOM的影响最小。

著录项

  • 来源
    《Journal of arid environments》 |2019年第8期|34-42|共9页
  • 作者单位

    Montana State Univ, Land Resources & Environm Sci, 334 Leon Johnson Hall, Bozeman, MT 59717 USA|Univ Lethbridge, Dept Biol Sci, 4401 Univ Dr, Lethbridge, AB T1K 3M4, Canada|Agr & Agri Food Canada, Lethbridge Res & Dev Ctr, 5403-1st Ave S, Lethbridge, AB T1J 4B1, Canada;

    Montana State Univ, Land Resources & Environm Sci, 334 Leon Johnson Hall, Bozeman, MT 59717 USA;

    Montana State Univ, Land Resources & Environm Sci, 334 Leon Johnson Hall, Bozeman, MT 59717 USA;

    Montana State Univ, Land Resources & Environm Sci, 334 Leon Johnson Hall, Bozeman, MT 59717 USA;

    Montana State Univ, Land Resources & Environm Sci, 334 Leon Johnson Hall, Bozeman, MT 59717 USA;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Northern great plains; Soil C sequestration; Excitation emission matrices; Humification;

    机译:北部大平原;土壤固碳;激发排放矩阵;腐殖化;

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