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A simple approach to estimate daily loads of total, refractory, and labile organic carbon from their seasonal loads in a watershed

机译:一种简单的方法来估计来自流域的季节性负荷的总,耐火材料和不稳定的有机碳的每日负荷

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摘要

Loads of naturally occurring total organic carbons (TOC), refractory organic carbon (ROC), and labile organic carbon (LOC) in streams control the availability of nutrients and the solubility and toxicity of contaminants and affect biological activities through absorption of light and complex metals with production of carcinogenic compounds. Although computer models have become increasingly popular in understanding and management of TOC, ROC, and LOC loads in streams, the usefulness of these models hinges on the availability of daily data for model calibration and validation. Unfortunately, these daily data are usually insufficient and/or unavailable for most watersheds due to a variety of reasons, such as budget and time constraints. A simple approach was developed here to calculate daily loads of TOC, ROC, and LOC in streams based on their seasonal loads. We concluded that the predictions from our approach adequately match field measurements based on statistical comparisons between model calculations and field measurements. Our approach demonstrates that an increase in stream discharge results in increased stream TOC, ROC, and LOC concentrations and loads, although high peak discharge did not necessarily result in high peaks of TOC, ROC, and LOC concentrations and loads. The approach developed herein is a useful tool to convert seasonal loads of TOC, ROC, and LOC into daily loads in the absence of measured daily load data.
机译:在物流中荷载天然存在的总有机碳(TOC),耐火有机碳(ROC)和不稳定的有机碳(LOC)控制营养素的可用性和污染物的溶解度和毒性,并通过吸收光和复杂金属来影响生物活性用生产致癌化合物。虽然计算机模型在流动中的理解和管理中越来越受欢迎,但这些模型对模型校准和验证的日常数据的可用性铰接的有用性。遗憾的是,由于各种原因,例如预算和时间限制,这些日常数据通常不足,而且对于大多数流域而言通常不足和/或不可用。此处开发了一种简单的方法,以根据其季节性负载计算流量的每日加载到流量,ROC和LOC。我们得出结论,从我们的方法中的预测是基于模型计算和现场测量之间的统计比较来充分匹配现场测量。我们的方法表明,流放电的增加导致流量增加,ROC和LOC浓度和负载增加,尽管高峰放电不一定导致TOC,ROC和LOC浓度和负载的高峰。本文开发的方法是在没有测量的日常负载数据的情况下将季节性载荷,ROC和LOC转换为日常载荷的有用工具。

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