Middelburg Jack J, Soetaert Karline, Hagens Mathilde
Department of Earth Sciences, Geosciences Utrecht University Utrecht The Netherlands.
Department of Estuarine and Delta Systems Royal Netherlands Institute for Sea Research (NIOZ Yerseke) and Utrecht University Yerseke The Netherlands.
Rev Geophys. 2020 Sep;58(3):e2019RG000681. doi: 10.1029/2019RG000681.
Alkalinity, the excess of proton acceptors over donors, plays a major role in ocean chemistry, in buffering and in calcium carbonate precipitation and dissolution. Understanding alkalinity dynamics is pivotal to quantify ocean carbon dioxide uptake during times of global change. Here we review ocean alkalinity and its role in ocean buffering as well as the biogeochemical processes governing alkalinity and pH in the ocean. We show that it is important to distinguish between measurable titration alkalinity and charge balance alkalinity that is used to quantify calcification and carbonate dissolution and needed to understand the impact of biogeochemical processes on components of the carbon dioxide system. A general treatment of ocean buffering and quantification via sensitivity factors is presented and used to link existing buffer and sensitivity factors. The impact of individual biogeochemical processes on ocean alkalinity and pH is discussed and quantified using these sensitivity factors. Processes governing ocean alkalinity on longer time scales such as carbonate compensation, (reversed) silicate weathering, and anaerobic mineralization are discussed and used to derive a close-to-balance ocean alkalinity budget for the modern ocean.
碱度,即质子受体超过供体的量,在海洋化学、缓冲作用以及碳酸钙的沉淀和溶解过程中起着重要作用。了解碱度动态对于量化全球变化时期海洋对二氧化碳的吸收至关重要。在此,我们综述了海洋碱度及其在海洋缓冲中的作用,以及控制海洋碱度和pH值的生物地球化学过程。我们表明,区分可测量的滴定碱度和用于量化钙化和碳酸盐溶解以及理解生物地球化学过程对二氧化碳系统各组分影响所需的电荷平衡碱度非常重要。本文给出了通过灵敏度因子对海洋缓冲和量化的一般处理方法,并用于关联现有的缓冲因子和灵敏度因子。利用这些灵敏度因子讨论并量化了各个生物地球化学过程对海洋碱度和pH值的影响。还讨论了在较长时间尺度上控制海洋碱度的过程,如碳酸盐补偿、(反向)硅酸盐风化和厌氧矿化,并据此得出了现代海洋接近平衡的海洋碱度收支情况。