Вестник МГТУ, 2023, Т. 26, № 3.
Славянский А. А. и др. Свекловичный жом сахарного производства и перспективы его использования References Donchenko, L. V., Lastkov, D. O. 2023. On the relevance of deep processing o f sugar beet pulp in modern conditions. Sakhar , 2, pp. 40—45. DOI: 10.24412/2413-5518-2023-2-40-45 EDN: GCVDHH. (In Russ.) Ermolaev, V. A., Slavyansky, A. A., Mitroshina, D. P. et al. 2022. Thermophysical calculation o f sugar beet pulp drying. Sakhar, 4, pp. 20—24. DOI: 10.24412/2413-5518-2022-4-20-24. EDN: CHTBWB. (In Russ.) Zobova, S. N., Ostrikov, A. N., Frolova, L. N., Kopylov, M. V. et al. 2021. Influence of technological regimes on changes in the composition of sugar beet pulp during its processing at the Borinsky sugar factory. Proceedings o f the Voronezh State University o f Engineering Technologies, 83(1—87), pp. 71—77. DOI: https://doi.org/10.20914/2310-1202-2021-1-71-77. EDN: FGNCIK. (In Russ.) Lebedeva, N. N., Slavyansky, A. A., Mitroshina, D. P. 2021. Improving the process of sucrose crystallization. In coll. articles The development o f engineering education and its role in the technical modernization o f the agro-industrial complex. Izhevsk, pp. 135—140. EDN: TNEESM. (In Russ.) Nikolaeva, N. V., Mitroshina, D. P., Slavyansky, A. A. et al. 2021. Sucrose crystals as the basis of sugar- containing products. Sakhar , 8, pp. 34—39. DOI: 10.24412/2413-5518-2021-8-34-38. EDN: ONLDGW. (In Russ.) Riyanova, E. E., Kostryukova, N. V. 2017. Obtaining pectin from sugar beet pulp. International Research Journal, 4—1(58), pp. 98—101. DOI: 10.23670/IRJ.2017.58.114. EDN: YKMOPJ. (In Russ.) Sergeeva, I. Yu., Ryabokoneva, L. A., Chigina, T. S. 2021. Prospects for the use o f cavitation in the food industry . In coll. articles Problems and prospects o f modern scientific thought in Russia and abroad . Kemerovo, pp. 53—55. EDN: BRIMXE. (In Russ.) Slavyansky, A. A., Mitroshina, D. P., Gribkova, V. A., Ermolaev, V. A. et al. 2022. The main wastes of sugar production and their use. Sakhar, 12, pp. 30—37. EDN: DSHKOS. (In Russ.) Slavyansky, A. A., Moiseyak, M. B., Didenko, V. M., Petrova, L. S. et al. 2005. The use of food surfactants for the intensification of technological processes of the food department of a sugar factory. Moscow. EDN: YJCAPT. (In Russ.) Slavyansky, A. A., Sapronov, A. R., Lobanova, A. P., Pugachov, V. A. et al. 1984. Improving the working conditions o f the grocery department at the Chimshinsky sugar factory . Sakharnaya promyshlennost ', 10, pp. 22—25. EDN: EECHCT. (In Russ.) Slavyansky, A. A., Stolyarenko, P. A. 2018. Method of producing sugar solution, Russian Federation, Pat. 2644552 C1. (In Russ.) URL : https://www.fips.ru/registers-doc-view/fips_servlet. Tuzhilkin, V. I., Shterman, S. V. 2012. Sugar in the modern world. Sakhar, 9, pp. 44—51. EDN : PLLWJV. ( In Russ.) Ukolov, A. I., Rodionov, V. P., Ukolova, Yu. V. 2021. The use o f hydrodynamic cavitation at the main stages of food processes in the preparation of drinks . Collection o f abstracts o f reports o f participants in the pool o f scientific and practical conferences. Kerch, pp. 134—137. URL: https://kgmtu.ru/documents/nauka/2021/ Sbornik_Tezisov_Sochi_2021.pdf. EDN: PHVVEM. (In Russ.) Shterman, S. V., Tuzhilkin, V. I., Shterman, V. S. et al. 2015. Modern directions of industrial application of sucrose. Sakhar, 7, pp. 44—47. EDN: UGRGGT. (In Russ.) Dranca, F., Oroian, M. 2018. Extraction, purification and characterization of pectin from alternative sources with potential technological applications. Food Research International, 113, pp. 327—350. DOI: https://doi.org/ 10.1016/j.foodres.2018.06.065. Gavahian, M., Munekata, P. E. S., E§, I., Lorenzo, J. M. et al. 2019. Emerging techniques in bioethanol production: from distillation to waste valorization. Green Chemistry, 21(6), pp. 1171—1185. Iwuozor, K. O., Emenike, E. C., Ighalo, J. O., Eshiemogie, S. et al. 2022. Valorization of sugar industry’s by-products: A perspective. Sugar Technology, 24(4), pp. 1052—1078. DOI: https://doi.org/10.1007/s12355-022-01143-1. Jimenez-Islas, D., Perez-Romero, M. E., Ventura-Cruz, I., Flores-Romero, M. B. 2022. Sugar beet pulp and research efforts to diversify its use. In Sugar Beet Cultivation, Management and Processing. Eds.: V. Misra, S. Srivastava, A. K. Mall. Singapore, pp. 955—969. DOI: https://doi.org/10.1007/978-981-19-2730-0_47. Katakojwala, R., Kumar, N. A., Chakraborty, D., Mohan, V. S. 2019. Valorization o f sugarcane waste: Prospects of a biorefinery. Industrial and Municipal Sludge. Emerging Concerns and Scope fo r Resource. Butterworth- Heinemann, pp. 47—60. DOI: https://doi.org/10.1016/b978-0-12-815907-1.00003-9. Marzo, C., D^az, A. B., Caro, I., Blandino, A. 2019. Status and perspectives in bioethanol production from sugar beet. Bioethanol Production from Food Crops, pp. 61—79. DOI: https://doi.org/10.1016/b978-0-12-813766- 6.00004-7. Nair, R. B., Taherzadeh, M. J. 2016. Valorization of sugar-to-ethanol process waste vinasse: A novel biorefinery approach using edible ascomycetes filamentous fungi. Bioresource Technology, 221, pp. 469—476. DOI: https://doi.org/10.1016/j.biortech.2016.09.074. 302
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