Repository logo
Log In(current)
  1. Home
  2. Works by Faculty
  3. Faculty Scholarship and Open Access Collection
  4. Detrital Inputs Regulate Condensed Aromatic Carbon Persistence in Forest Soils
Details

Detrital Inputs Regulate Condensed Aromatic Carbon Persistence in Forest Soils

Persistent URL
https://dspace.allegheny.edu/handle/10456/62837
Author(s)
Shen, Xinyue
Yin, Gege
Cao, Yi-Wen
Zhang, Zongxiao
Lu, Huiyuan
Wang, Ying-Hui
Bowden, Richard D.
Allegheny College
Wrightson, Isla
Simpson, Myrna J.
Lajtha, Kate
Wang, Junjian
Date Issued
August 3, 2026
Abstract
Condensed aromatic carbon (ConAC) is widely recognized as a chemically recalcitrant component of soil organic matter. However, its stock and potential transformation into dissolved condensed aromatic carbon (dConAC) in forest soils may be altered in response to environmental changes that alter forest litter production. Using three decades of detrital input and removal treatments in a temperate forest, we investigated bulk ConAC and dConAC in soil profiles with the benzene polycarboxylic acid method. Doubling litter inputs (Double Litter) did not increase ConAC content or stocks, but instead promoted ConAC oxidation to dConAC in surface soils (0–10 cm), evidenced by the higher benzene hexacarboxylic acid-to-benzene pentacarboxylic acid ratio and increased dConAC proportions in both ConAC and dissolved organic carbon pools. Litter removal (No Litter) and its combination with root exclusion (No Inputs) reduced surface-soil ConAC, consistent with decreased ConAC-carrying aboveground litter inputs; No Inputs lowered ConAC stocks throughout the 0–50 cm profile, likely due to intensified microbial utilization of ConAC under substrate limitation. Overall, forest soil ConAC stocks appear relatively resistant to detrital input changes, but enhanced ConAC-to-dConAC conversion highlights a pathway for increased terrestrial–aquatic ConAC fluxes with implications for ConAC cycling under future climate and land-use change.
Journal
Environmental Science &
Technology
Citation
Xinyue Shen, Gege Yin, Yi-Wen Cao, Zongxiao Zhang, Huiyuan Lu, Ying-Hui Wang, Richard D. Bowden, Isla Wrightson, Myrna J. Simpson, Kate Lajtha, Junjian Wang; Detrital Inputs Regulate Condensed Aromatic Carbon Persistence in Forest Soils. Environ. Sci. Technol. 2026; https://doi.org/10.1021/acs.est.6c05973
Publisher
American Chemical Society (ACS)
Version of Article
Version of Record
DOI
10.1021/acs.est.6c05973
ISSN
0013-936X
1520-5851
Rights
© 2026 American Chemical Society
Type of Publication
Journal Article
Subjects

Polycyclic aromatics

Benzene polycarboxyli...

Detrital input and re...

Forest ecosystems

Microbial communit

File(s)
Thumbnail Image
Name

2026_Bowden_Detrital.pdf

Size

2.51 MB

Format

Adobe PDF

Checksum (MD5)

340dbbafb833e0a1785265a08b0e1eea

Allegheny Logo

814-332-4312

dspace-help@allegheny.edu

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Accessibility settings
  • Privacy policy
  • End User Agreement
  • Send Feedback
Repository logo COAR Notify