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海洋硅藻的固碳效应及人工增汇前景

朱华玺 禤锟 周玲玲 曾志宏 葛晨东 胡镕

高校地质学报2025,Vol.31Issue(2):152-164,13.
高校地质学报2025,Vol.31Issue(2):152-164,13.DOI:10.16108/j.issn1006-7493.2024008

海洋硅藻的固碳效应及人工增汇前景

Carbon Sequestration Effect and Prospects for Artificial Sinking Enhancement of Marine Diatoms

朱华玺 1禤锟 2周玲玲 1曾志宏 1葛晨东 3胡镕1

作者信息

  • 1. 南京大学地理与海洋科学学院,南京 210023
  • 2. 南京大学 生命科学学院,南京 210023
  • 3. 南京大学地理与海洋科学学院,南京 210023||南京大学 海岸与海岛开发教育部重点实验室,南京 210023
  • 折叠

摘要

Abstract

The ocean,as the largest active carbon reservoir in the Earth surface system,presents a huge potential for carbon sequestration.Owing to their unique physiological structure,widespread distribution,efficient carbon sequestration mechanisms,and strong proliferative capacity,diatoms contribute about 40%of ocean primary productivity and 40%of particulate organic carbon export,playing an important role in the marine biological carbon pump.These organisms exhibit robust carbon sequestration efficiency and exceptional adaptability through powerful CO2 concentrating mechanisms(CCMs)and efficient biophysical and biochemical carbon fixation processes.They also offer opportunities for Carbon Capture,Utilization,and Storage(CCUS),presenting innovative avenues for biological carbon sequestration technology.Identifying and cultivating fast-growing diatom species,optimizing growth conditions,and enhancing photosynthesis efficiency are critical aspects.Current research has employed indoor physiological experiments to decipher factors influencing their physiological activities and carbon sequestration efficiency and further assessed the response of diatoms to global change from the perspective of global biogeochemical cycling.This provides an important theoretical basis for evaluating diatom-mediated natural carbon sequestration and their artificial augmentation prospects.Envisioned as a"microbial carbon sequestration factory",diatoms hold promise in maximizing carbon sequestration capabilities while generating commercially valuable products.If the cost of carbon sequestration can be effectively reduced,diatom-driven carbon sequestration will be a technologically sustainable solution to support the"Dual Carbon Plan"in the future.

关键词

硅藻/双碳计划/固碳增汇/全球变化

Key words

diatoms/"Dual Carbon Plan"/carbon sequestration and sinking enhancement/global change

分类

海洋学

引用本文复制引用

朱华玺,禤锟,周玲玲,曾志宏,葛晨东,胡镕..海洋硅藻的固碳效应及人工增汇前景[J].高校地质学报,2025,31(2):152-164,13.

基金项目

南京大学"千"层次优质课程建设项目资助 ()

高校地质学报

OA北大核心

1006-7493

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