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High-frequency monitoring reveals how hydrochemistry and dissolved carbon respond to rainstorms at a karstic critical zone, Southwestern China

机译:高频监测揭示了水解和溶解碳如何在中国西南部的神秘临界区进行暴雨

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摘要

Hydrochemical behavior and dissolved carbon dynamics are highly-sensitive to hydrological variations in the monsoon-influenced karstic critical zone which has high chemical weathering rates and experiences strong anthropogenic impact. Continuous high-frequency monitoring in the spring outlet of a karstic catchment in Southwestern China revealed that most hydrochemical variables changed distinctively in response to hydrologic variations, influenced by mixing of different sources and miscellaneous biogeochemical processes. Na~+, K~+ and SO4" varied significantly with hydrology, showing weak chemostatic behavior controlled by dilution. The flushing effect and random behavior of NO_3~- and C1~- likely reflect agricultural inputs from high throughflow. Soil CO_2 in infiltrated water supports carbonate weathering, enabling D1C (dissolved inorganic carbon) and weathering products (e.g., Ca~(2+) and Mg~(2+)) to maintain chemostatic behavior. Biogenic DIC exhibited a stronger chemostatic response than carbonate sources and was the foremost control in DIC behavior. Carbon exchange between DIC and DOC (dissolved organic carbon) did not significantly influence DIC concentration and δ~(13)C due to very low DOC concentration. More DOC was exported by flushing from increasing discharge. Hysteretic analysis indicated that the transport processes were controlled by proximal sources mixing and diverse mobilization in various periods responding to rainstorms. NO_3~- and Cl~- presented different hysteresis behavior as sourced from agricultural activities. DOC increased on the hydrograph rising limb and was controlled by a transport- limited regime. However, the hysteresis behavior of most weathering products and DIC were regulated by a process-limited regime in the karstic critical zone. Overall, biogeochemical processes, hydrogeological properties, storm intensity/magnitude and the timing of storms (antecedent conditions) are main factors influencing the response of hydrochemical variables and dissolved carbon to storm events.
机译:水化学行为和溶解的碳动力学对季风影响的水文变化具有高度敏感的季风性临界区,其具有高化学风化速率和经历强烈的人为撞击。中国西南部喀斯特集水区春季出口的连续高频监测透露,大多数水化学变量响应水文变化而变化,其受不同来源和杂种生物地球化学过程的混合影响。 Na〜+,K〜+且SO4“随水文而显着变化,显示通过稀释控制的化疗行为弱。NO_3〜 - 和C1的冲洗效果和随机行为 - 可能反映了高通流量的农业投入。渗透水中的土壤CO_2支持碳酸盐风化,使D1C(溶解无机碳)和风化产品(例如,Ca〜(2+)和Mg〜(2+))能够维持化学行为。生物学DIC表现出比碳酸盐源更强的化学响应,是最重要的在DIC行为中控制。DIC和DOC(溶解有机碳)之间的碳交换由于非常低的DOC浓度而没有显着影响DIC浓度和δ〜(13)C.通过越来越多的放电冲洗出口更多DOC。滞后分析表明了运输过程由近端源混合和各种时期的各种动员控制,响应暴雨。NO_3〜 - 和CL〜 - 呈现不同的滞后行为来自农业活动。 DOC在水文编程上升的肢体上增加,并由运输限制的制度控制。然而,大多数风化产品和DIC的滞后行为受到奇特临界区中的过程限制的调节。总体而言,生物地球化学过程,水文地质性质,风暴强度/幅度和风暴的时序(前一种条件)是影响水化学变量和溶解碳对风暴事件的响应的主要因素。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第20期|136833.1-136833.12|共12页
  • 作者单位

    Institute of Surface-Earth System Science Tianjin University Tianjin 300072 China;

    Institute of Surface-Earth System Science Tianjin University Tianjin 300072 China State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550081 China Puding Karst Ecosystem Observation and Research Station Chinese Academy of Sciences Puding 562100 China;

    School of Geographical and Earth Sciences University of Glasgow Glasgow G12 8QQ United Kingdom Institute of Surface-Earth System Science Tianjin University Tianjin 300072 China;

    Institute of Surface-Earth System Science Tianjin University Tianjin 300072 China School of Geographical and Earth Sciences University of Glasgow Glasgow G12 8QQ United Kingdom;

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550081 China;

    Institute of Surface-Earth System Science Tianjin University Tianjin 300072 China;

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550081 China School of Geographical and Earth Sciences University of Glasgow Glasgow G12 8QQ United Kingdom;

    Institute of Surface-Earth System Science Tianjin University Tianjin 300072 China State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550081 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water chemistry; Carbon dynamics; Chemical weathering; High-frequency monitoring; Chemostatic and hysteretic behavior; Karstic critical zone;

    机译:水化学;碳动力学;化学风化;高频监控;化疗和滞后行为;凯斯特临界区;

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