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Fate of pathogens in a simulated bioreduction system for livestock carcasses
Journal article   Peer reviewed

Fate of pathogens in a simulated bioreduction system for livestock carcasses

Ceri L. Gwyther, David L. Jones, Peter N. Golyshin, Gareth Edwards-Jones and A. Prysor Williams
Waste management (Elmsford), Vol.32(5), pp.933-938
2012
PMID: 22119516

Abstract

Agriculture Animal slaughterhouse waste Fallen stock Meat waste Zoonoses
The EU Animal By-Products Regulations generated the need for novel methods of storage and disposal of dead livestock. Bioreduction prior to rendering or incineration has been proposed as a practical and potentially cost-effective method; however, its biosecurity characteristics need to be elucidated. To address this, Salmonella enterica (serovars Senftenberg and Poona), Enterococcus faecalis, Campylobacter jejuni, Campylobacter coli and a lux-marked strain of Escherichia coli O157 were inoculated into laboratory-scale bioreduction vessels containing sheep carcass constituents. Numbers of all pathogens and the metabolic activity of E. coli O157 decreased significantly within the liquor waste over time, and only E. faecalis remained detectable after 3months. Only very low numbers of Salmonella spp. and E. faecalis were detected in bioaerosols, and only at initial stages of the trial. These results further indicate that bioreduction represents a suitable method of storing and reducing the volume of livestock carcasses prior to ultimate disposal.

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UN Sustainable Development Goals (SDGs)

This output has contributed to the advancement of the following goals:

#2 Zero Hunger
#12 Responsible Consumption & Production

Source: InCites

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InCites Highlights

These are selected metrics from InCites Benchmarking & Analytics tool, related to this output

Citation topics
3 Agriculture, Environment & Ecology
3.45 Soil Science
3.45.1441 Composting Innovations
Web Of Science research areas
Engineering, Environmental
Environmental Sciences
ESI research areas
Engineering
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