Organic Alkalinity as an Important Constituent of Total Alkalinity and the Buffering System in River‐To‐Coast Transition Zones

Author:

Song Shuzhen1ORCID,Bellerby Richard Garth James123ORCID,Wang Zhaohui Aleck4ORCID,Wurgaft Eyal5ORCID,Li Daoji1ORCID

Affiliation:

1. State Key Laboratory of Estuarine and Coastal Research East China Normal University Shanghai China

2. Norwegian Institute for Water Research Bergen Norway

3. Faculty of Applied Sciences UCSI University Kuala Lumpur Malaysia

4. Department of Marine Chemistry and Geochemistry Woods Hole Oceanographic Institution Woods Hole MA USA

5. The Avinoam Adam Department of Natural Sciences The Israeli Open University Ra'anana Israel

Abstract

AbstractOrganic acid‐base species in the dissolved organic carbon pool have been shown to make an important contribution (i.e., organic alkalinity; OrgAlk) to the total alkalinity (TA) in many coastal systems. This study documents an intensive investigation of OrgAlk characteristics in the river‐to‐coast transition zones of six southeast Chinese rivers. OrgAlk, mainly originating from river input, accounted for an important proportion of TA (0.3%–12%) in six estuaries. Carboxylic acid groups were commonly present in all estuaries. Notable differences in the TA values (1–18 μmol kg−1) determined by several established TA measurement approaches were identified in estuaries where organic acids with pKa <5.2 were abundant. The most widely used open‐cell titration method, in comparison with closed‐cell titration and single‐step titration, is the best approach to incorporate OrgAlk in titrated TA when the pKa values of organic acids were >5 in the study estuaries. Across our study sites, OrgAlk might modify H+ concentrations by 3%–69% (i.e., pH by 0.01–0.78) and aragonite saturation states by 1%–72%, indicating that OrgAlk can play a significant role in the coastal carbonate buffering system. It is essential to improve current TA measurement approaches to more accurately represent OrgAlk in the coastal system and assess impacts of OrgAlk on coastal carbonate chemistry.

Funder

National Natural Science Foundation of China

Postdoctoral Research Foundation of China

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,General Environmental Science

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