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Real‐time CO2 monitoring for early detection of grain spoilage and mycotoxin contamination

dc.contributor.authorKiaitsi, Elisavet
dc.contributor.authorZanardi, Sandro
dc.contributor.authorSulyok, Michael
dc.contributor.authorMedina, Angel
dc.contributor.authorIngram, Ben
dc.contributor.authorSuman, Michele
dc.contributor.authorGarcia‐Cela, Esther
dc.date.accessioned2025-09-22T11:49:18Z
dc.date.available2025-09-22T11:49:18Z
dc.date.freetoread2025-09-22
dc.date.issued2025-12
dc.date.pubOnline2025-08-28
dc.description.abstractBACKGROUND This study aimed to compare the use of real‐time CO2, temperature (T) and relative humidity (RH) sensors as indicators of stored grain quality management, specifically for early detection of mould activity and mycotoxin contamination. Initial experiments were conducted using mini‐silos containing naturally contaminated wheat grain (1.5 kg) stored at different moisture contents of 15–30% (water activity, aw = 0.78 to 0.98), to evaluate their effects on grain respiration. RESULTS Respiration rates and dry matter losses increased with grain moisture content. A larger‐scale, nine‐month study was then conducted using two pilot‐scale silos (2.5 t; 1400 cm diameter; 2050 cm height) equipped with ATEX‐compliant CO2/RH/T sensors. A ‘wet pocket’ was simulated by introducing water to a localised area to mimic a water ingress event. This led to a rapid rise in CO2 levels while T remained relatively stable. Mycotoxin analyses of the affected and unaffected regions showed a clear increase in the concentration and diversity of mycotoxins, particularly aflatoxin B1, aflatoxin B2, deoxynivalenol, deoxynivaenol‐3‐glucoside and moniliformin, in the wet pocket area. CONCLUSION Real‐time CO2 monitoring provided a faster and more sensitive indication of spoilage and mycotoxin risk compared to T and RH measurements. This highlights the potential for developing early‐warning systems for stored grain management based predominantly on continuous CO2 monitoring.
dc.description.journalNameJournal of the Science of Food and Agriculture
dc.description.sponsorshipThis research was funded by European Union's Horizon 2020 research and innovation pro-gramme under grant agreement no. 678012-Mytoolbox project.
dc.format.extent8985-8993
dc.format.mediumPrint-Electronic
dc.identifier.citationKiaitsi E, Zanardi S, Sulyok M, et al., (2025) Real‐time CO2 monitoring for early detection of grain spoilage and mycotoxin contamination. Journal of the Science of Food and Agriculture, Volume 105, Issue 15, December 2025, pp. 8985-8993en_UK
dc.identifier.eissn1097-0010
dc.identifier.elementsID863050
dc.identifier.issn0022-5142
dc.identifier.issueNo15
dc.identifier.urihttps://doi.org/10.1002/jsfa.70151
dc.identifier.urihttps://dspace.lib.cranfield.ac.uk/handle/1826/24457
dc.identifier.volumeNo105
dc.languageEnglish
dc.language.isoen
dc.publisherWileyen_UK
dc.publisher.urihttps://scijournals.onlinelibrary.wiley.com/doi/10.1002/jsfa.70151
dc.rightsAttribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectwheaten_UK
dc.subjectsiloen_UK
dc.subjectfungien_UK
dc.subjectrelative humidityen_UK
dc.subjectcerealsen_UK
dc.subjectfood wasteen_UK
dc.subject3004 Crop and Pasture Productionen_UK
dc.subjectFood Scienceen_UK
dc.subject30 Agricultural, veterinary and food sciencesen_UK
dc.subject40 Engineeringen_UK
dc.titleReal‐time CO2 monitoring for early detection of grain spoilage and mycotoxin contaminationen_UK
dc.typeArticle
dc.type.subtypeJournal Article
dcterms.dateAccepted2025-08-09

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