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Linking pulses of atmospheric deposition to DOC release in an upland peat-covered catchment

机译:将大气沉积脉冲与高地泥炭覆盖的集水区中的DOC释放联系起来

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Changes in atmospheric deposition have been proposed as one possible explanation of the widespread increase in DOC concentration observed in many Northern Hemisphere catchments. This study uses detailed, long-term, monthly monitoring records of pH, conductivity SO4, and DOC in precipitation, soil water, and runoff chemistry from an upland peat-covered catchment in northern England. By deriving impulse transfer functions this study explores whether changes in deposition lead to significant changes in the occurrence of each component in the soil and runoff water; especially significant changes in DOC. The study shows that (1) impulses in the deposition of acidity have no significant effect upon pH or DOC in soil water or runoff. (2) DOC in soil water and runoff is responsive to impulses in SO4 and conductivity, but only when those impulses are changes in soil water chemistry and not when they are in atmospheric deposition. (3) The effects of changes in SO4 and/or conductivity can easily be overemphasized if memory effects are not accounted for, and their effect is limited to only 1 or 2 months after a severe drought. This study can support the view that changes in ionic strength can result in changes in DOC concentration in soil water or runoff, but the system studied is unresponsive to changes in atmospheric deposition. Impulses in soil water SO4 do not lead to increases in DOC concentrations, and so this mechanism does not provide an explanation for DOC increases.
机译:已经提出了大气沉积的变化,作为对在北半球许多流域中观测到的DOC浓度普遍增加的一种可能的解释。这项研究使用了英格兰北部一个由高地泥炭覆盖的集水区的降水,土壤水和径流化学中的pH,电导率SO4和DOC的详细,长期,每月监测记录。通过推导脉冲传递函数,本研究探讨了沉积物的变化是否导致土壤和径流水中各组分的发生发生重大变化。特别是DOC的重大更改。研究表明:(1)酸度沉积的冲动对土壤水或径流中的pH或DOC无明显影响。 (2)土壤水和径流中的DOC对SO4和电导率的脉冲有响应,但仅当这些脉冲是土壤水化学的变化时才起作用,而不是在大气沉积中。 (3)如果不考虑记忆效应,很容易过分强调SO4和/或电导率变化的影响,其影响仅限于严重干旱后1或2个月。这项研究可以支持这样一种观点,即离子强度的变化会导致土壤水或径流中DOC浓度的变化,但所研究的系统对大气沉积的变化无响应。冲刷土壤水中的SO4不会导致DOC浓度增加,因此该机制无法为DOC的增加提供解释。

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