Welsch Daniel L, Cosby B Jack, Hornberger George M
Department of Geography, Frostburg State University, Frostburg, MD 21532, USA.
Sci Total Environ. 2006 Aug 31;367(2-3):800-10. doi: 10.1016/j.scitotenv.2006.01.019. Epub 2006 Apr 4.
Models of soil and stream water acidification have typically been applied under scenarios of changing acidic deposition, however, climate change is usually ignored. Soil air CO2 concentrations have potential to increase as climate warms and becomes wetter, thus affecting soil and stream water chemistry by initially increasing stream alkalinity at the expense of reducing base saturation levels on soil exchange sites. We simulate this change by applying a series of physically based coupled models capable of predicting soil air CO2 and stream water chemistry. We predict daily stream water alkalinity for a small catchment in the Virginia Blue Ridge for 60 years into the future given stochastically generated daily climate values. This is done for nine different combinations of climate and deposition. The scenarios for both climate and deposition include a static scenario, a scenario of gradual change, and a scenario of abrupt change. We find that stream water alkalinity continues to decline for all scenarios (average decrease of 14.4 microeq L-1) except where climate is gradually warming and becoming more moist (average increase of 13 microeq L-1). In all other scenarios, base cation removal from catchment soils is responsible for limited alkalinity increase resulting from climate change. This has implications given the extent that acidification models are used to establish policy and legislation concerning deposition and emissions.
土壤和溪水酸化模型通常是在酸性沉降变化的情景下应用的,然而,气候变化通常被忽视。随着气候变暖变湿,土壤空气中的二氧化碳浓度可能会增加,从而通过最初增加溪水碱度(以降低土壤交换位点上的碱饱和度为代价)来影响土壤和溪水化学性质。我们通过应用一系列能够预测土壤空气中二氧化碳和溪水化学性质的基于物理的耦合模型来模拟这种变化。给定随机生成的每日气候值,我们预测弗吉尼亚蓝岭一个小流域未来60年的每日溪水碱度。针对气候和沉降的九种不同组合进行了此项预测。气候和沉降的情景包括一个静态情景、一个渐变情景和一个突变情景。我们发现,除了气候逐渐变暖和变湿的情景(平均增加13微当量/升)外,所有情景下溪水碱度都持续下降(平均下降14.4微当量/升)。在所有其他情景中,集水区土壤中碱金属阳离子的去除导致气候变化引起的碱度增加有限。考虑到酸化模型在制定有关沉降和排放的政策及立法方面的应用程度,这具有重要意义。