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Changes in Rainwater pH associated with Increasing Atmospheric Carbon Dioxide after the Industrial Revolution

机译:工业革命后雨水pH值的变化与大气二氧化碳的增加相关

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This paper examines the historical change in the pH of natural rainwater due to increased atmospheric CO2 from 1800 until 2007, giving predicted change in 2100. During 1800–2007, the rainwater pH at 25°C and 1 atm is calculated to decrease by 0.06 units, from 5.68 to 5.62. In 2100, the predicted rainwater pH is calculated at 5.49 using the projected pCO2 (700 ppmv; IS92a) at 25°C and 1 atm. Equilibrium calculations were made in an attempt to elucidate the calcium carbonate (calcite) dissolution by rainwater. From 1800 to 2007, the dissolution of calcite with pCO2 of those time at 25°C and 1 atm increase the dissolved calcium concentration from 466 to 516 μmol kg−1. This value is calculated to reach 633 μmol kg−1 in the year 2100. Rainwater is found to become more acidic with decreasing temperature. In the year 2007 (pCO2 = 384 ppmv), a total difference of 0.08 units in rainwater pH is calculated between areas at 0°C and 30°C. The equilibrium pH with respect to calcite was found to increase with decreasing temperature. At lower temperatures, rainwater pH is found to decrease, whilst CaCO3 dissolution increases. Limestone landmarks and buildings might be affected through the dissolution of calcium carbonate by rainwater acidification. The effects of rainwater acidification on overall chemical weathering may result in influences on agriculture, forestry, landslides and flooding.
机译:本文研究了从1800年到2007年由于大气CO 2 增加而引起的天然雨水pH值的历史变化,给出了2100年的预测变化。在1800-2007年期间,雨水pH值在25°C和1计算得出atm从5.68减少到5.62减少了0.06个单位。在2100年,使用25°C和1个大气压下的预测pCO 2 (700 ppmv; IS92a)计算得出的预测雨水pH值为5.49。为了阐明碳酸钙(方解石)在雨水中的溶解,进行了平衡计算。从1800年到2007年,在25°C和1个大气压下,当时的pCO 2 溶解了方解石,使溶解钙的浓度从466μmolkg -1 增加到516μmolkg -1 。计算出的值在2100年达到633μmolkg -1 。随着温度的降低,发现雨水的酸性更高。在2007年(pCO 2 = 384 ppmv),计算出0°C和30°C区域之间雨水pH的总差异为0.08个单位。发现相对于方解石的平衡pH随温度降低而增加。在较低的温度下,发现雨水的pH值降低,而CaCO 3 的溶解度增加。雨水酸化会溶解碳酸钙,从而影响石灰岩地标和建筑物。雨水酸化对整体化学风化的影响可能会影响农业,林业,滑坡和洪水。

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