首页> 外文期刊>Journal of the North American Benthological Society >The biogeochemical influences of NO3-, dissolved O-2, and dissolved organic C on stream NO3- uptake
【24h】

The biogeochemical influences of NO3-, dissolved O-2, and dissolved organic C on stream NO3- uptake

机译:NO3-,溶解的O-2和溶解的有机碳对物流NO3-吸收的生物地球化学影响

获取原文
获取原文并翻译 | 示例
       

摘要

Streams are potential hotspots for retention and removal of NO3-, and understanding the mechanisms that enhance NO3- reactivity in stream systems is critical for predicting and preventing eutrophication. Both dissolved organic C (DOC) and dissolved O-2 (DO) influence NO3- removal processes. Assessing the individual impacts of NO3-, DO, and DOC concentrations on stream NO3- removal is difficult because these factors covary and are coupled through the C and N cycles. We used an experimental approach to quantify the influences of NO3-, DOC, and DO on NO3- transport in headwater streams of the Ipswich and Parker River watersheds (Massachusetts, USA) with contrasting levels of DOC and DO. In a 1(st) set of experiments, we added NO3- to address how uptake kinetics differed between a low-DO/high-DOC stream (Cedar Swamp Creek) and a high-DO/low-DOC stream (Cart Creek). In a 2(nd) set of experiments, we manipulated, for the first time at the reach scale, both DO and DOC in a factorial experiment. DO was added to the low-DO stream by injecting O-2 and was removed from the high-DO stream by adding sodium sulfite. DOC was added both alone and in combination with the DO manipulations. NO3- concentration was an important control of NO3- uptake velocity in our study streams, consistent with previous findings. The results of the DOC and DO manipulations suggested that DO determines whether a stream has net NO3- uptake or production and that the presence of DOC magnifies the DO response processes. Addition of DOC by itself did not lead to increased NO3- uptake. In addition, we observed organic matter priming effects, wherein the addition of labile organic matter resulted in accelerated metabolism of naturally occurring DOC in the water column. Priming effects have not been reported previously in stream systems. Results from our experiments suggest that NO3- uptake in streams might arise from complex interactions among DOC, DO, and NO3-, and ultimately, from the influence of DO on dominant stream processes.
机译:溪流是保留和去除NO3-的潜在热点,而了解增强溪流系统中NO3-反应性的机制对于预测和防止富营养化至关重要。溶解的有机碳(DOC)和溶解的O-2(DO)都会影响NO3-的去除过程。评估NO3-,DO和DOC浓度对物流NO3-去除的单独影响是困难的,因为这些因素共存并且通过C和N循环耦合。我们使用一种实验方法量化了NO3-,DOC和DO对伊普斯维奇河和帕克河流域(美国麻萨诸塞州)的上游水流中NO3-的影响,而DOC和DO的含量却是相反的。在第一组实验中,我们添加了NO3-以解决低DO /高DOC流(Cedar Swamp Creek)和高DO /低DOC流(Cart Creek)之间的吸收动力学差异。在第二组实验中,我们在阶乘实验中首次在触及范围内同时处理了DO和DOC。通过注入O-2将DO添加到低DO物流中,并通过添加亚硫酸钠将其从高DO物流中除去。 DOC既可以单独添加,也可以与DO操作结合使用。与以前的研究结果一致,NO3-浓度是我们研究流中NO3-吸收速度的重要控制因素。 DOC和DO操纵的结果表明,DO可以确定物流是否具有净NO3-吸收或生产,并且DOC的存在会放大DO的响应过程。单独添加DOC不会导致NO3-吸收增加。此外,我们观察到了有机物引发作用,其中添加不稳定的有机物导致水柱中天然存在的DOC加速代谢。在流系统中以前没有报道过引发作用。我们的实验结果表明,溪流中NO3的吸收可能来自DOC,DO和NO3-之间复杂的相互作用,最终归因于DO对主要溪流过程的影响。

著录项

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