Deep-sea mining discharge can disrupt midwater food webs

M Michael H. Dowd (Department of Oceanography, University of Hawaii at Mānoa) V Victoria E. Assad A Alexus E. Cazares-Nuesser J Jeffrey C. Drazen E Erica Goetze A Angelicque E. White (Department of Oceanography, University of Hawai’i at Mānoa) B Brian N. Popp

Abstract

Abstract The Clarion-Clipperton Zone contains extensive beds of polymetallic nodules on the abyssal seafloor, with vast areas (~1.5 million km 2 ) under license for deep-sea mining. Mining companies have proposed discharging excess waste generated during nodule extraction in the lower mesopelagic and upper bathypelagic zones, which are home to a unique faunal community including zooplankton and micronekton. Here, using compound-specific isotope analysis of amino acids, we find that natural background particles larger than 6 µm form the base of the food web, but will be diluted by the same sized, nutritionally deficient mining-associated particles. Given that 53% of zooplankton taxa are particle feeders and 60% of micronekton taxa are zooplanktivores at proposed discharge depths, there is significant potential for food-web disruption. Therefore, we show that a midwater mining plume could trigger bottom-up ecosystem impacts with potentially severe consequences for the faunal community, extending beyond zooplankton and micronekton to nekton, including large marine predators.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 06, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

M

Michael H. Dowd

Department of Oceanography, University of Hawaii at Mānoa

V

Victoria E. Assad

A

Alexus E. Cazares-Nuesser

J

Jeffrey C. Drazen

E

Erica Goetze

A

Angelicque E. White

Department of Oceanography, University of Hawai’i at Mānoa

B

Brian N. Popp