A century of change in the California Current: upwelling system amplifies acidification

M Mary Margaret V. Stoll C Curtis A. Deutsch H Hana Jurikova J James W. B. Rae H Hartmut Frenzel A Anne M. Gothmann S Simone R. Alin A Alexander C. Gagnon

Abstract

Abstract Predicting the pace of acidification in the California Current System (CCS), a productive upwelling system that borders the west coast of North America, is complex because the anthropogenic contribution is intertwined with other natural sources. A central question is whether acidification in the CCS will follow the pace of increasing atmospheric CO 2 , or if climate effects and other biogeochemical processes will either amplify or attenuate acidification. Here, we apply the boron isotope pH proxy to cold-water orange cup corals to establish a historic level of acidification in the CCS and the Salish Sea, an associated marginal sea. Through a combination of complementary modeling and geochemical approaches, we show that the CCS and Salish Sea have experienced amplified acidification over the industrial era, driven by the interaction between anthropogenic CO 2 and a thermodynamic buffering effect. From this foundation, we project future acidification in the CCS under elevated CO 2 emissions. The projected change in p CO 2 over the 21 st century will continue to outpace atmospheric CO 2 , posing challenges to marine ecosystems of biological, cultural, and economic importance.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 13, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

M

Mary Margaret V. Stoll

C

Curtis A. Deutsch

H

Hana Jurikova

J

James W. B. Rae

H

Hartmut Frenzel

A

Anne M. Gothmann

S

Simone R. Alin

A

Alexander C. Gagnon