首页> 外文期刊>Ecological indicators >The sensitivity of water chemistry to climate in a forested, nitrogen-saturated catchment recovering from acidification
【24h】

The sensitivity of water chemistry to climate in a forested, nitrogen-saturated catchment recovering from acidification

机译:从酸化中恢复森林的氮饱和集水区中水化学对气候的敏感性

获取原文
获取原文并翻译 | 示例
       

摘要

Fluxes of major ions and nutrients were measured in the N-saturated mountain forest catchment-lake system of Certovo Lake (Czech Republic) from 1998 to 2014. The lake has been rapidly recovering from atmospheric acidification due to a 90% decrease in sulphate (SO42-) deposition since the late 1980s and nitrate (NO3-) contribution to the pool of strong acid anion and leaching of dissolved organic carbon (DOC) have increased. Present concentrations of base cations, phosphorus (P), total organic N (TON), and ionic (Al-i) and organically bound (Al-o) aluminium in tributaries are thus predominantly governed by NO3- and DOC leaching. Despite a continuing recovery lasting 25 years, the Certovo catchment is still a net source of protons (H+), producing 44 mmol m(-2) yr(-1) H+ on a catchment-area basis (corresponding to 35 mu mol L-1 on a concentration basis). Retention of the deposited inorganic N in the catchment averages 20%, and ammonium consumption (51 mmol m(-2) yr(-1)) and net NO3- production (28 mol m(-2) yr(-1)) are together the dominant terrestrial H+ generating processes. In contrast, the importance of SO42- release from the soils on terrestrial H+ production is continuously decreasing, with an average of 47 mmol m(-2) yr(-1) during the study. The in-lake biogeochemical processes reduce the incoming acidity by similar to 40%, neutralizing 23 mu mol L-1 H+ (i.e., 225 mmol m(-2) yr(-1) on a lake-area basis). Denitrification and photochemical and microbial decomposition of DOC are the most important in-lake H+ consuming processes (50 and 39%, respectively), while hydrolysis of Al-i (from tributaries and photochemically liberated from Al-o) is the dominant in-lake H+ generating process. Because the trends in water chemistry and H+ balance in the catchment-lake system are increasingly related to variability in NO3- and DOC leaching, they have become sensitive to climate-related factors (drought, elevated runoff) and forest damage that significantly modify the leaching of these anions. During the study period, increased exports of NO3- (accompanied by Al-i and base cations) from the Certovo catchment occurred after a dry and hot summer, after forest damage, and during elevated winter runoff. Increasing DOC export due to decreasing acid deposition was further elevated during years with higher runoff (and especially during events with lateral flow), and was accompanied by P, TON, and Al-o leaching. The climate-related processes, which originally "only" confounded chemical trends in waters recovering from acidification, may soon become the dominant variables controlling water composition in N-saturated catchments. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在1998年至2014年之间,对Certovo湖(捷克共和国)的N饱和山区森林集水湖系统进行了主要离子和养分通量的测量。由于硫酸盐含量降低了90%(SO42, -)自1980年代后期以来的沉积和硝酸盐(NO3-)对强酸阴离子池的贡献以及溶解性有机碳(DOC)的浸出均增加了。因此,支流中碱金属阳离子,磷(P),总有机氮(TON)和离子(Al-i)以及有机结合的(Al-o)铝的当前浓度主要受NO3-和DOC淋洗的支配。尽管持续了25年的持续恢复,但切尔托沃流域仍是质子(H +)的净来源,在流域面积上产生了44 mmol m(-2)yr(-1)H +(相当于35μmol L- 1(基于浓度)。流域中沉积的无机氮的平均保留率为20%,铵消耗量(51 mmol m(-2)yr(-1))和净NO3-产生量(28 mol m(-2)yr(-1))为一起是主要的陆地H +生成过程。相反,从土壤中释放SO42-对陆地H +产生的重要性正在不断降低,在研究期间平均为47 mmol m(-2)yr(-1)。湖内生物地球化学过程使进入的酸度降低了约40%,中和了23μmol L-1 H +(即在湖区中为225 mmol m(-2)yr(-1))。 DOC的反硝化以及光化学和微生物分解是最重要的湖内H +消耗过程(分别为50%和39%),而Al-i(从支流和从Al-o光化学释放)的水解是主要的湖内H +生成过程。由于集水-湖泊系统中水化学和H +平衡的趋势越来越多地与NO3-和DOC淋失的变化相关,因此它们已对与气候相关的因素(干旱,径流升高)和森林破坏敏感,这些因素极大地改变了淋溶这些阴离子。在研究期间,干燥,炎热的夏季,森林破坏后以及冬季径流增加后,切尔托沃流域的NO3-(伴随Al-i和碱金属阳离子)出口增加。在增加径流量的年份(尤其是在发生侧向流的情况下),由于酸沉积减少而导致的DOC出口量进一步增加,并伴有P,TON和Al-o浸出。与气候有关的过程最初“仅”混淆了从酸化中恢复的水的化学趋势,但可能很快成为控制N饱和流域水组成的主要变量。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Ecological indicators》 |2016年第4期|196-208|共13页
  • 作者单位

    Inst Hydrobiol, Biol Ctr CAS, Na Sadkach 7, CZ-37005 Ceske Budejovice, Czech Republic;

    Inst Hydrobiol, Biol Ctr CAS, Na Sadkach 7, CZ-37005 Ceske Budejovice, Czech Republic;

    Inst Hydrobiol, Biol Ctr CAS, Na Sadkach 7, CZ-37005 Ceske Budejovice, Czech Republic;

    Inst Hydrobiol, Biol Ctr CAS, Na Sadkach 7, CZ-37005 Ceske Budejovice, Czech Republic;

    Inst Hydrobiol, Biol Ctr CAS, Na Sadkach 7, CZ-37005 Ceske Budejovice, Czech Republic;

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

    Nitrogen; Sulphur; Organic carbon; Aluminium; Base cations; Phosphorus; pH;

    机译:氮;硫;有机碳;铝;碱性阳离子;磷;pH;
  • 入库时间 2022-08-18 03:45:20

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号