Exploring environmental nanobiogeochemistry with field-flow fractionation and ICP-MS-based tools: Progress and frontiers

Abstract

Recent application of sophisticated instrumentation and novel experimental techniques to environmental systems has driven the study of natural nanoparticles and nanoparticle systems towards new horizons. Moving beyond the detection of engineered nanoparticles in natural systems, these technologies create new knowledge about the composition, behaviour, and functions of natural nanoparticles both as individual entities and particle systems. In this second part of a two-part Perspective article, we describe progress and frontiers in this research area using case studies drawn from a range of published and unpublished data cutting across environmental systems. The companion paper, Exploring environmental nanobiogeochemistry with field-flow fractionation and ICP-MS-based tools: Background and fundamentals, defines the emerging field of environmental nanobiogeochemistry and describes the fundamentals, optimization, and advantages/disadvantages of field-flow fractionation and ICP-MS-based techniques for advancing our understanding of natural nanoscale particles and particle systems. By combining necessary background with the most recent findings and key challenges, these contributions provide key knowledge for new and established researchers entering this exciting field, and lay the groundwork for future research.

Supplementary files

Article information

Article type
Perspective
Submitted
24 Jan 2025
Accepted
03 Jul 2025
First published
04 Jul 2025
This article is Open Access
Creative Commons BY-NC license

Environ. Sci.: Nano, 2025, Accepted Manuscript

Exploring environmental nanobiogeochemistry with field-flow fractionation and ICP-MS-based tools: Progress and frontiers

I. A. M. Worms, M. Tharaud, R. Gasco, M. D. Montaño, A. Goodman, V. I. Slaveykova, M. Benedetti, C. M. Churchill, S. Fernando, E. Alasonati, C. Moens and C. W. Cuss, Environ. Sci.: Nano, 2025, Accepted Manuscript , DOI: 10.1039/D5EN00096C

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