Temperature and pH dynamics during carcass decomposition and implications for disease management

J Janine Rietz B Burkhard Beudert (Department of Conservation and Research, Bavarian Forest National Park) N Nicolas Ferry L Lukas Böcker F Franz J. Conraths C Carolina Probst A Andreas Zedrosser (Faculty of Technology, Natural Sciences and Maritime Sciences, Department of Natural Sciences and Environmental Health, University of South-Eastern Norway, Bø, Norway.) H Helmut Küchenhoff M Martin Hais J Jens Schlüter T Tomas Lackner C Christian von Hoermann J Jörg Müller M Marco Heurich (Faculty of Environment and Natural Resources, University of Freiburg, Freiburg im Breisgau, Germany.)

Abstract

Abstract Infectious diseases in wildlife threaten not only those species but also domestic animals and human health, necessitating strategies to prevent pathogen spread. The natural decomposition of carcasses may lead to pathogen inactivation due to associated increases in temperature and changes in the pH of the carcass and in the surrounding soil. In this study, the internal temperatures of 64 decomposing wild boar carcasses, the pH in the topsoil beneath 74 carcasses, and the pH of muscle and rectal tissue from 12 carcasses were monitored throughout the decomposition process. Carcass temperatures increased during decomposition, frequently exceeding 30 °C during aerobic decomposition in summer (maximum 58 °C). The pH in the carcasses increased until skeletonization, ranging from pH 4 to above pH 8. Soil pH also continuously increased during the decomposition, reaching a pH above 9 and remaining stable for at least 30 days post-skeletonization. The information on natural carcass decomposition processes provided by our study can serve as a basis for future studies to assess if elevated carcass temperatures and pH changes are sufficient for pathogen inactivation. However, our results suggest that, in most cases, neither the increase in carcass temperatures nor the changes in pH exceed the thresholds required to inactivate African swine fever virus.

Article Details

Volume / Issue Vol. 15, Issue 1
Published July 16, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (14)

J

Janine Rietz

B

Burkhard Beudert

Department of Conservation and Research, Bavarian Forest National Park

N

Nicolas Ferry

L

Lukas Böcker

F

Franz J. Conraths

C

Carolina Probst

A

Andreas Zedrosser

Faculty of Technology, Natural Sciences and Maritime Sciences, Department of Natural Sciences and Environmental Health, University of South-Eastern Norway, Bø, Norway.

H

Helmut Küchenhoff

M

Martin Hais

J

Jens Schlüter

T

Tomas Lackner

C

Christian von Hoermann

J

Jörg Müller

M

Marco Heurich

Faculty of Environment and Natural Resources, University of Freiburg, Freiburg im Breisgau, Germany.