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Impact of ocean acidification on the carbonate sediment budget of a temperate mixed beach

机译:海洋酸化对温带混合海滩碳酸泥土沉积物预算的影响

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The production of sediments by carbonate-producing ecosystems is an important input for beach sediment budgets in coastal areas where no terrigenous input occurs. Calcifying organisms are a major source of bioclastic carbonate sediment for coastal systems. Increased levels of CO2 in the atmosphere are leading to an increase in the partial pressure of CO2 on ocean seawater, causing ocean acidification (OA), with direct consequences for the pH of ocean waters. Most studies of OA focus on its impact on marine ecosystems. The impact of OA on carbonate-producing ecosystems could be to reduce the amount of sediments supplied to temperate coastal systems. The aim of this study was to quantify the effect of the predicted OA on the long-term sediment budget of a temperate Mediterranean mixed carbonate beach and dune system. Based on projections of OA we estimated a fall of about 31% in the present bioclastic carbonate sediment deposition rate, with the biggest decreases seen in the dunes (- 46%). OA is also expected to affect the carbonate sediment reservoirs, increasing the dissolution of CaCO(3)and causing net sediment loss from the system ( 50,000t century(-1)). In the long-term, OA could also play a primary role in the response of these systems to sea-level rise. Indeed, the reduction in the quantity of carbonate sediments provided to the system may affect the speed with which the system is able to adapt to sea-level rise, by increasing wave run-up, and may promote erosion of dunes and subaerial beaches.
机译:产生碳酸盐生态系统的沉积物的生产是沿海地区海滩沉积物预算的重要意见,即没有充实的投入。钙化生物是沿海系统的生物碳酸盐碳酸盐泥土的主要来源。大气中的二氧化碳水平增加导致海洋海水上二氧化碳的分压增加,导致海洋酸化(OA),对海水的pH有直接后果。大多数对OA的研究专注于其对海洋生态系统的影响。 OA对产生碳酸盐生态系统的影响可能是减少提供给温带沿海系统的沉积物量。本研究的目的是量化预测OA对温带地中海混合碳酸酯海滩和沙丘系统的长期泥沙预算的影响。基于OA的预测,我们估计在目前的生物型碳酸盐沉积物沉积速率下降约31%,在沙丘中最大的降低( - 46%)。 OA也有望影响碳酸盐泥土储层,增加CaCO(3)的溶解并导致系统净沉积物损失(50,000千世纪(-1))。在长期,OA还可以在这些系统对海平面上升的响应中发挥主要作用。实际上,通过增加波浪升起,提供给系统提供给系统的碳酸盐沉积物量的减少可能影响系统能够适应海平面上升的速度,并且可以促进沙丘和丘脑海滩的侵蚀。

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