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Harnessing the microbial carbon pump: prospects and challenges for coastal carbon sequestration

Jinzi Hao; Yue Sun; Xiaodi Shang; Boyuan Wang; Hailong Huang; Anran Wang; Xiaohan Yang; Lei Jia; Jinhui Sun
Frontiers in Marine Science · Vol. 13 · 2026

Abstract

The Marine Microbial Carbon Pump (MCP) theory proposes a novel mechanism for long-term carbon sequestration in the ocean, wherein microbial processes convert labile dissolved organic carbon (LDOC) into recalcitrant dissolved organic carbon (RDOC). This review synthesizes recent advancements in technologies aimed at enhancing carbon sinks based on the MCP, with a specific emphasis on coastal ecosystems. Through a structured literature review, this paper evaluates the mechanisms of action, key environmental regulatory factors, and negative emissions technologies associated with utilizing the MCP to bolster the ocean carbon sink. Research indicates that the MCP significantly contributes to the global ocean carbon reservoir, with coastal systems accounting for 40–60% of RDOC production. However, this contribution is constrained by nutrient availability, temperature, light, and anthropogenic pollutants that suppress microbial activity. Current strategies for enhancing carbon sinks encompass nutrient addition, microbial community engineering, and integrated ecological engineering approaches, such as artificial upwelling and macroalgae cultivation. Major challenges remain—particularly low RDOC conversion efficiency (<5%), inadequate monitoring methods, and ecological risks such as harmful algal blooms—that must be addressed before MCP technologies can be deployed at scale. The MCP framework offers a novel and useful perspective for understanding the ocean carbon cycle and presents a potential pathway that requires further validation for achieving negative emissions. Among the strategies reviewed, integrated artificial upwelling with macroalgae cultivation appears most immediately actionable, with pilot studies demonstrating 15–25% increases in sediment carbon storage, though verification at environmentally relevant scales is still required.

Bibliographic Information

JournalFrontiers in Marine Science
PublisherFrontiers
Publication Date2026-07-23
Publication Year2026
Volume13
Document TypeJournal Article
eISSN2296-7745
DOI10.3389/fmars.2026.1897665
SubjectMarine science; fisheries; aquaculture; pollution; ocean observation; policy

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.frontiersin.org/journals/marine-science
Publisher PageOpen Publisher Page
This article is openly available from the publisher.