POTENTIALS OF GRAPE POMACE FOR COMPOST PRODUCTION ON THE TERRITORY OF THE THREE MORAVA REGION: A CASE STUDY

Milica Ivanović, Gordana Stefanović, Dragiša Savić

DOI Number
https://doi.org/10.22190/FUWLEP2202085I
First page
085
Last page
099

Abstract


Stems, skins, seeds, and pulp are grape pomace (GP) components formed as by-products during wine production. The GP share represents about 25% of the total amount of processed grapes, which is a significant amount of organic waste (OW) that can be treated in the composting process. The purpose of the paper is to consider the possibility of their use by presenting the basic characteristics and potentials of GP and other available fractions of OW of agricultural origin. First, based on the representation of vineyards by regions on the territory of the Republic of Serbia and locally available substrates, and using a previously developed mathematical model, the quantities of observed fractions and composts were calculated. After applying the mathematical model to the cities belonging to the Three Morava Region, it was discovered that the optimal mixture contains 40% of GP when the co-substrates are wheat straw (WS) and swine manure (SM). Next, using the mean values of the percentage of co-substrates and GP, the model was applied to the territory of the Republic of Serbia. The results showed sufficient quantities of all substrates and the model criteria were satisfied.

Keywords

composting, potentials, agricultural waste, grape waste, closing the loop

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References


Statistical Report on World vitiviniculture, www.oiv.int/en/oiv-life/oiv- 2019-report-on-the-world-vitivinicultural-situation, 2019.

Ahmad, B., Yadav, V., Yadav, A., Rahman, M. U., Yuan, W. Z., Li, Z., & Wang, X.: Integrated biorefinery approach to valorize winery waste: A review from waste to energy perspectives, Science of the Total Environment, Vol. 719, 137315, 2020.

Beres, C., Costa, G. N., Cabezudo, I., da Silva, J., N. K., Teles, A. S., Cruz, A. P., Freitas, S. P.: Towards integral utilization of grape pomace from winemaking process: A review. Waste management, Vol. 68, pp. 581-594, 2017.

Paradelo, R., Moldes, A. B., & Barral, M. T.: Utilization of a factorial design to study the composting of hydrolyzed grape marc and vinification lees, Journal of agricultural and food chemistry, Vol.58, No5, pp. 3085-3092, 2010.

Bustamante, M. A., Pérez-Murcia, M. D., Paredes, C., Moral, R., Pérez-Espinosa, A., Moreno-Caselles, J.: Short-term carbon and nitrogen mineralisation in soil amended with winery and distillery organic wastes, Bioresource technology, Vol. 98(17), pp. 3269-3277, 2007.

Epstein, E.: The science of composting, CRC press, Boca Raton, Florida, US, 2017.

Diaz, L. F., De Bertoldi, M., Bidlingmaier, W. (Eds.),: Compost science and technology, Elsevier, 2011

Kumar, M., Ou, Y. L., Lin, J. G.: Co-composting of green waste and food waste at low C/N ratio,Waste management, Vol.30,No.4, pp. 602-609, 2011.

Proietti, P., Calisti, R., Gigliotti, G., Nasini, L., Regni, L., Marchini, A.: Composting optimization: Integrating cost analysis with the physical-chemical properties of materials to be composted, Journal of Cleaner Production, Vol.137, pp.1086-1099,2016.

Guo, R., Li, G., Jiang, T., Schuchardt, F., Chen, T., Zhao, Y., Shen, Y.: Effect of aeration rate, C/N ratio and moisture content on the stability and maturity of compost, Bioresource technology, Vol.112, pp.171-178, 2012.

Hungría, J., Gutiérrez, M. C., Siles, J. A.,Martín, M. A.:Advantages and drawbacks of OFMSW and winery waste co-composting at pilot scale. Journal of Cleaner Production, Vol.164, pp. 1050-1057, 2017.

Ferrari, V., Taffarel, S. R., Espinosa-Fuentes, E., Oliveira, M. L., Saikia, B. K., Oliveira, L. F,: Chemical evaluation of by-products of the grape industry as potential agricultural fertilizers, Journal of Cleaner Production, Vol. 208, pp. 297-306, 2019.

Salgado, M. M. M., Blu, R. O., Janssens, M., Fincheira, P.: Grape pomace compost as a source of organic matter: Evolution of quality parameters to evaluate maturity and stability, Journal of Cleaner Production, Vol. 216, pp. 56-63, 2019.

Bertran, E., Sort, X., Soliva, M.,Trillas, I.: Composting winery waste: sludges and grape stalks, Bioresource technology, Vol. 95, No.2, pp. 203-208, 2004.

M. Ivanović, G. Stefanović, P. Rajković, B. Milutionović.: Optimization of the composting process of the mixture of different fractions of organic waste, XIV International Conference on Systems, Automatic Control and Measurements, SAUM, Niš, Serbia, pp. 179 – 182, 2018.

Sirohi, R., Tarafdar, A., Singh, S., Negi, T., Gaur, V. K., Gnansounou, E. Bhartiraja, B.:Green processing and biotechnological potential of grape pomace: Current trends and opportunities for sustainable biorefinery, Bioresource Technology, Vol.123771, 2020.

Galanakis, C. M. (Ed.).: Handbook of grape processing by-products: sustainable solutions, Academic Press, 2017.

Zhang, N., Hoadley, A., Patel, J., Lim, S., Li, C. E.:Sustainable options for the utilization of solid residues from wine production, Waste Management, Vol.60, pp.173-183, 2017.

G. Toscano, G. Riva, D. Duca, E. Foppa Pedretti, F. Corinaldesi, G. Rossini,: Analysis of the characteristics of the residues of the wine production chain finalized to their industrial and energy recovery, Biomass and Bioenergy, Vol. 55, pp. 260-267, 2013.

Abdrabba, S., & Hussein, S.: Chemical composition of pulp, seed and peel of red grape from Libya; Global Journal of Scientific Researches, Vol. 3(2), pp. 6-11, 2015.

El Achkar, J. H., Lendormi, T., Hobaika, Z., Salameh, D., Louka, N., Maroun, R. G.,Lanoisellé, J. L.: Anaerobic digestion of grape pomace: Biochemical characterization of the fractions and methane production in batch and continuous digesters, Waste Management, Vol.50, pp. 275-282, 2016.

Bertran, E., Sort, X., Soliva, M., Trillas, I.: Composting winery waste: sludges and grape stalks, Bioresource technology, Vol.95, No.2, pp. 203-208, 2004.

Xu, R., Ferrante, L., Briens, C., Berruti, F.: Flash pyrolysis of grape residues into biofuel in a bubbling fluid bed, Journal of Analytical and Applied Pyrolysis, Vol.86, No.1, pp. 58-65, 2009.

Ozdemir, I., Şahin, M., Orhan, R., Erdem, M.: Preparation and characterization of activated carbon from grape stalk by zinc chloride activation, Fuel processing technology, Vol. 125, pp. 200-206, 2014.

Sanahuja-Parejo, O., Veses, A., Navarro, M. V., López, J. M., Murillo, R., Callén, M. S.,García, T.: Catalytic co-pyrolysis of grape seeds and waste tyres for the production of drop-in biofuels, Energy Conversion and Management, Vol. 171, pp. 1202-1212, 2018.

Sólyom, K., Kraus, S., Mato, R. B., Gaukel, V., Schuchmann, H. P.,Cocero, M. J.: Dielectric properties of grape marc: Effect of temperature, moisture content and sample preparation method, Journal of Food Engineering, Vol.119, No.1, pp. 33-39, 2013.

Portinho, R., Zanella, O., & Féris, L. A: Grape stalk application for caffeine removal through adsorption, Journal of environmental management, Vol. 202, pp.178-187, 2017.

Abdrabba, S.,Hussein, S.: Chemical composition of pulp, seed and peel of red grape from Libya, Global Journal of Scientific Researches, Vol. 3, No.2, pp. 6-11, 2015.

Fernández, F. J., Sánchez-Arias, V., Villaseñor, J.,Rodríguez, L.: Evaluation of carbon degradation during co-composting of exhausted grape marc with different biowastes, Chemosphere, Vol.73, No.5, pp.670-677, 2008.

Díaz, M. J., Madejon, E., Cabrera, F., Jimenez, L.,De Bertoldi, M.: Using a second-order polynomial model to determine the optimum vinasse/grape marc ratio for in-vessel composting, Compost science & utilization, Vol.12, No.3,pp. 273-279, 2004.

Bustamante, M. A., Paredes, C., Marhuenda-Egea, F. C., Pérez-Espinosa, A., Bernal, M. P., Moral, R.: Co-composting of distillery wastes with animal manures: Carbon and nitrogen transformations in the evaluation of compost stability, Chemosphere, Vol.72, No.4, pp. 551-557, 2008.

Fernández, F. J., Sánchez-Arias, V., Villaseñor, J., Rodríguez, L.: Evaluation of carbon degradation during co-composting of exhausted grape marc with different biowastes, Chemosphere, Vol. 73, No.5, pp. 670-677, 2008.

Ivanišević, D., Jakšić, D., Korać, N,: Vinogradski atlas, census of agriculture 2012, Published and printed by: Statistical Office of the Republic of Serbia, Belgrade, 2015.

Pereović, J. , Optimizacija procesa hidrotermalne karbonizacije komine grožđa i primena dobijene hidročađi, Doktorska disertacija,[ Optimization of hydrothermal carbonization process of grape pomace and application of obtained hydrochar], Faculty of technology and metallurgy, Belgrade, 2017.

Popović, R., Stočarsvo u Republici Srbiji, census of agriculture 2012 Published and printed by: Statistical Office of the Republic of Serbia, Belgrade, 2019.

Ćurkčković, A, Jovanović, Lj., Supić, D., Raspoloživi potencijali žetvenih ostataka za proizvodnju biomase na teritoriji opštine Bečej, Srbobran, Kula i Vrbas, Ministarsvo poljoprivrede, šumarstva i vodoprivrede, PSS Vrbas, Univrzitet Edukons Sremska Kamenica, 2021.

Stepanov, J. Model za evaluaciju sistema upravljanja komunalnim čvrstim otpadom primenom metode ocenjivanja životnog ciklusa [Model for Evaluating Municipal Waste Management System Applying the Method of Life Cycle Assessment] Doktorska disertacija, Faculty of Technical Sciences, Novi Sad, 2018.

https://www.ctahr.hawaii.edu/oc/freepubs/pdf/GHGS-02.

M. Ivanović, G. Stefanović, P. Rajković, Multicriteria Optimization of AD Process Using Different Fractions of Organic Waste, 3rd Sout East Conference on Sustainable Development of Energy, Water and Environment Systems – SDEWES, 30.06 - 04.07.2018, Novi Sad, Srbija.

Chen, Z., Bao, H., Wen, Q., Wu, Y., Fu, Q.: Effects of H3PO4 modified biochar on heavy metal mobility and resistance genes removal during swine manure composting, Bioresource Technology, Vol. 346, 126632, 2022.

Gómez-Brandón, M., Lazcano, C., & Domínguez, J.: The evaluation of stability and maturity during the composting of cattle manure, Chemosphere, Vol.70, No.3, pp. 436-444, 2008.

Karak, T., Sonar, I., Paul, R. K., Das, S., Boruah, R. K., Dutta, A. K.,Das, D. K.: Composting of cow dung and crop residues using termite mounds as bulking agent, Bioresource technology, Vol. 169, pp.731-741, 2014.

Petric, I., Avdihodžić, E.,Ibrić, N.: Numerical simulation of composting process for mixture of organic fraction of municipal solid waste and poultry manure, Ecological engineering, Vol.75, pp. 242-249, 2015.

Petric, I., Šestan, A.,Šestan, I.: Influence of wheat straw addition on composting of poultry manure. Process Safety and Environmental Protection, Vol.87, No.3, pp. 206-212, 2009.




DOI: https://doi.org/10.22190/FUWLEP2202085I

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