ELABORATION OF NEW METHOD OF DEEP PROCESSING OF CARO-TENE-CONTAINING RAW MATERIALS INTO NANOADDITIVES WITH THE USE OF CRYOGENIC FREEZING AND FINE-DISPERSED GRINDING

Viktoriya Pogarska, Raisa Pavlyuk, Nadiya Timofeyeva, Leonida Bilenko, Tetyana Stukonozhenko

Abstract


The aim of the work is elaboration of principally new cryogenic method of deep processing of carotene-containing vegetable raw material (CCVRM) such as carrot, pumpkin, sweet Bulgarian pepper, tomato, sea buckthorn, apricot using cryogenic freezing and fine-dispersed grinding.

The new method of deep processing leads to more full extracting and removal of β-carotene from the state, bound with biopolymers into free and hydrophilic form. The mechanism of these processes was presented. It was established, that mass share of β-carotene in cryopuree, received by the new method, exceeds its content in initial (fresh) CCVRM in 3,0…3,5 times.

The regularities of growth and transformation of carotenoids separately at freezing with different high speeds and low-temperature grinding of CCYRM were established. It was demonstrated, that at cryogenic freezing take place quantitative increase of mass share of carotenoids in 2,0…2,5 times comparing with initial (fresh) raw material depending on freezing speed and type of CCVRM. That is it was demonstrated, that frozen carotene-containing vegetable raw material contains 2,0…2,5 times more β-carotene than fresh one. Mechanism of these processes was presented.

It was demonstrated, that cryopuree of CCVRM, received using new methods of deep processing, exceeds the initial (fresh) raw material by the content not only β-carotene but also other low-molecular bioactive substances: L-ascorbic acid – in 2,0…2,2 times, phenol compounds  – in 1,7…1,8 times, tanning substances – in 1,5…1,7 times). That is they have principally new chemical composition, because practically all bioactive substances (BAS) in cryopuree are in nanosize form and easily assimilated by human organism.

Keywords


deep processing; cryogenic freezing; fine-dispersed grinding; carotene-containing raw material; vegetable additives

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References


Tutel'ian, V. A., Vialkov, A. I., Razumov, A. N., Mihailov, V. I., Moskalenko, K. A., Odinets, A. G., Sbezhneva, V. G., Sergeev, V. N. (2010). Nauchnye osnovy zdorovogo pitaniia. Moscow: Panorama, 816.

Pavlyuk, R., Pogarskaya, V., Pavlyuk, V., Radchenko, L., Yur’eva, O., Maksimova, N. (2015). Cryo- and Mechanochemistry in the food technology. Kharkiv: Fact, 255.

Pavlyuk, R., Pogarska, V., Balabai, K., Pavlyuk, V., Kotuyk, Т. (2016). The effect of cryomechanodestruction on activation of heteropolysaccaride-protein nanocomplexes when developing nanotechnologies of plant supplements. Eastern-European Journal of Enterprise Technologies, 4 (11 (82)), 20−28. doi: 10.15587/1729-4061.2016.76107

Pavlyuk, R., Pogarska, V., Pavlyuk, V., Balabai, K., Loseva, S. (2016). The development of cryogenic method of deep treatment of inulin-containing vegetables (topinambour) and obtaining of prebiotics in the nanopowders form. Eureka: Life Sciences, 3, 36–43. doi: 10.21303/2504-5695.2016.00145

Pavlyuk, R., Pogarska, V., Radchenko, L., Roman, D. T., Timofeyeva, N., Kotuyk, Т. (2016). The new method of processing of carotene-containing vegetables for the production of nanoproducts using combi-steamers and fine-dispersed comminution. Eureka: Life Sciences, 3, 44–49. doi: 10.21303/2504-5695.2016.00146

DSTU 4305:2004. Fruit, vegetables and products of their processing. Method of determination of carotin (2005). Kyiv: DP «UkrNDNC», 18.

GOST 24556-89. Mezhgosudarstvennyy standard. Products of processing of fruit and vegetables. Method of determination of vitamin C (2003). Moscow: IPK publishing house of standards, 12.

GOST 24027.2-80. Raw medicinal plant. Methods for determination of moisture, ash, extractives and tannins, essential oil (1980). Moscow: Publishing House of Standards, 24.

Pavlyuk, R., Pogarska, V., Radchenko, L., Tauber, R. D., Timofeyeva, N. (2016). Deep processing of carotene-containing vegetables and obtaining nanofood with the use of equipment of new generation. Eastern-European Journal of Enterprise Technologies, 4 (11 (82)), 36−43. doi: 10.15587/1729-4061.2016.76232

Pogarskaia, V. V., Pavlyuk, R. Iu., Cherevko, A. I., Pavlyuk, V. A., Maksimova, N. F. (2013). Aktivatsiia gidrofil'nyh svoistv karotinoidov rastitel'nogo syr'ia. Kharkiv, 345.




DOI: http://dx.doi.org/10.21303/2504-5695.2016.00251

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ISSN 2504-5695 (Online), ISSN 2504-5687 (Print)