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Potential Application of Fluorescence Imaging for Assessing Fecal Contamination of Soil and Compost Maturity

Authors
Cho, HyunjeongLee, HoonsooKim, SungyounKim, DonghoLefcourt, Alan M.Chan, Diane E.Chung, Soo HyunKim, Moon S.
Issue Date
9월-2016
Publisher
MDPI
Keywords
fresh produce; pathogenic microorganism; compost; feces; hyperspectral fluorescence imaging
Citation
APPLIED SCIENCES-BASEL, v.6, no.9
Indexed
SCIE
SCOPUS
Journal Title
APPLIED SCIENCES-BASEL
Volume
6
Number
9
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/87751
DOI
10.3390/app6090243
ISSN
2076-3417
Abstract
Pathogenic microorganisms can lead to serious outbreaks of foodborne illnesses, particularly if fresh produce becomes contaminated and then happens to be inappropriately handled in a manner that can incubate pathogens. Pathogenic microbial contamination of produce can occur through a variety of pathways, such as from the excrement of domesticated and wild animals, biological soil amendment, agricultural water, worker health and hygiene, and field tools used during growth and harvest. The use of mature manure compost and preventative control of fecal contamination from wildlife and livestock are subject to safety standards to minimize the risk of foodborne illness associated with produce. However, in a field production environment, neither traces of animal feces nor the degree of maturity of manure compost can be identified by the naked eye. In this study, we investigated hyperspectral fluorescence imaging techniques to characterize fecal samples from bovine, swine, poultry, and sheep species, and to determine feasibilities for both detecting the presence of animal feces as well as identifying the species origin of the feces in mixtures of soil and feces. In addition, the imaging techniques were evaluated for assessing the maturity of manure compost. The animal feces exhibited dynamic and unique fluorescence emission features that allowed for the detection of the presence of feces and showed that identification of the species origin of fecal matter present in soil-feces mixtures is feasible. Furthermore, the results indicate that using simple single-band fluorescence imaging at the fluorescence emission maximum for animal feces, simpler than full-spectrum hyperspectral fluorescence imaging, can be used to assess the maturity of manure compost.
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