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Vol 1, Issue 1, 2021
Pages: 295 - 306
Review article
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Received: >> Accepted: >> Published: 01.12.2019. Review article

Modelling relationships between raw milk quality parameters and climatic conditions - the case study of a 3-years survey in Serbia

By
Ilija Djekic Orcid logo ,
Ilija Djekic

University of Belgrade, Faculty of Agriculture

Jelena Miočionović ,
Jelena Miočionović
Marija Bojčevski ,
Marija Bojčevski
Nada Šmigić ,
Nada Šmigić
Igor Tomašević
Igor Tomašević
Abstract

This work examined the relationships between quality characteristics of raw milk and climatic conditions. Over a period of three years, a total of 5,065 samples were collected encompassing two types of farms. The quality characteristics analysed were titratable acidity (TA), total plate count (TPC) and somatic cells count (SCC). Climatic conditions were evaluated in respect to the outdoor air temperature, pressure, humidity and precipitation. Big farms showed a stronger correlation between TA and climatic conditions as opposed to SCC and climatic conditions. TPC was out of limit in big farms when the outdoor air temperature was higher than 19.8 °C (p<0.05) and during periods with accumulated precipitation over 4.2 mm (p>0.05). Small farms showed a stronger correlation between SCC and climatic conditions as opposed to TA. In these farms, occurrence of acidity out of limit was detected in less than 7.2% of samples. Samples with TA out of limit were observed when air temperature was higher than 18.4 °C (p<0.05) and accumulated precipitation was below 3.1 mm (p>0.05). These results can be used to improve good agricultural practices in respect to climatic conditions and size of farms. 

References

Azoubel, P., & Murr, F. (2003). Transport phenomena in food processing. In Chap. Effect of pretreatment on the drying kinetics of cherry tomato (Lycopersicon esculent var. cerasiforme (pp. 137–151).
Barta, J. (2006). Handbook of fruit and fruit processing. In Chap. Fruit Drying Principles.
Becker, H. (1959). A study of diffusion in solids of arbitrary shape, with application to the drying of the wheat kernel. Journal of Applied Polymer Science, 1(2), 212–226.
Chai, L., Wang, Y., Wang, X., Ma, L., Cheng, Z., & Su, L. (2021). Pollution Characteristics, Spatial Distributions, and Source Apportionment of Heavy Metals in Cultivated Soil in Lanzhou, China. Ecol. Indic, 125, 107507.
Jokela, D., & Nair, A. (2016). Effects of Reduced Tillage and Fertilizer Application Method on Plant Growth, Yield, and Soil Health in Organic Bell Pepper Production. Soil Tillage Res, 163, 243–254.
Karak, T., Bora, K., Paul, R. K., Das, S., Khare, P., Dutta, A. K., & Boruah, R. K. (2017). Paradigm Shift of Contamination Risk of Six Heavy Metals in Tea (Camellia sinensis L.) Growing Soil: A New Approach Influenced by Inorganic and Organic Amendments. J. Hazard. Mater, 338, 250–264.
Lorenz, K., & Lal, R. (2016). Environmental Impact of Organic Agriculture. In Advances in Agronomy (Vol. 139, pp. 99–152).

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