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Evaluation of Pine Cone Syrups and Changes in Physical Parameters during Storage


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Ayaria, M, Romdhanea, R. (2020). Chemical constituents of the pine extracts and their activities: a review. AJMAP, 6(3), 37-56. DOI: https://doi.org/10.48347/IMIST.PRSM/ajmapv6i3.23652Search in Google Scholar

Bamise, C. T., Esan, T. A., Oziegbe, E. O., Alo, I. F. (2014). PH and titratable acidity of different cough syrups in Nigeria. TDJ, 18(2). Retrieved from https://www.ajol.info/index.php/tdj/article/view/111576Search in Google Scholar

Barna, O., Octavian, B. (2018). The rheological behaviour analysis of green syrups produced at raw cane sugar refining. JAPS, 28, 1194-1198.Search in Google Scholar

Bell, T., Alamzad, R., & Graf, B. (2016). Effect of pH on the chemical stability of carotenoids in juice. PNS, 75(OCE3), E94. DOI:10.1017/S0029665116001099Search in Google Scholar

Bojović, S., Jurc, M., Ristić, M., Popović, Z., Matić, R., Vidaković, V., Stefanović, M., & Jurc, D. (2016). Essential-oil variability in natural populations of pinus mugo turra from the julian alps. Chem.Biodivers., 13(2), 181–187. https://doi.org/10.1002/cbdv.201500029Search in Google Scholar

Buck, R.P., Rondinini, S., Covington, A.K., Baucke, F.G.K., Brett, C.M.A., Camões, Milton, M.J.T., Mussini, T., Naumann, R., Pratt, K.W., Spitzer, R., Wilson, G.S. (2002). Measurement of pH. definition, standards, and procedures, pure and applied chemistry, 74, 2169-2200.Search in Google Scholar

Brandão, T. M., do Carmo, E. L., Elias, H. E. S., de Carvalho, E. E. N., Borges, S. V., & Martins, G. A. S. (2018). Physicochemical and microbiological quality of dietetic functional mixed cerrado fruit jam during storage. Sci. World J., 2878215. https://doi.org/10.1155/2018/2878215Search in Google Scholar

Chetana, R., Krishnamurthy, S., & Yella Reddy, S. R. (2004). Rheological behavior of syrups containing sugar substitutes. Eur. Food Res. Technol., 218(4), 345-348. DOI:10.1007/s00217-004-0876-7Search in Google Scholar

Cinkmanis, I., Augspole, I., Vucane, S., & Dimins, F. (2019). Analysis of organic acids in herbal and fruit syrups by liquid chromatography. In FoodBalt FoodBalt 2019: 13th Baltic conference on food science and technology “Food. Nutrition. Well-Being”: Conference proceedings, May 2-3, Jelgava, Latvia, pp. 193–197.Search in Google Scholar

Da Silva, M., Borges, L., Fiuza, T., Tresvenzol, L., Conceição, E., Batista, C., Matos, C., Veiga, V., Mourão, R., Ferri, P., Paula, J. (2017). Viscosity of the oil-resins and chemical composition of the essential oils from oils-resins of copaifera multijuga hayne growing in the national forest saracá-taquera brazil. J. Essent. Oil-Bear. Plants., 20, 1226-1234. https://doi.org/10.1080/0972060X.2017.1358673.Search in Google Scholar

Durrant, T., de Rigo, D., Caudullo, G. (2016). Pinus sylvestris in europe: distribution, habitat, usage and threats. Retrieved November 21, 2022, from ResearchGate. https://www.researchgate.net/publication/299470777Search in Google Scholar

Geffert, A., Geffertova, J., Dudiak, M. (2019). Direct method of measuring the pH value of wood. Forests, 10, 852. DOI:10.3390/f10100852Search in Google Scholar

Ibrahim, I.O., Saad, O.M., Ahmed, O.M. (2019). Determination of physicochemical properties of main product (sugar) from sugarcane at new Halfa sugar factory Sudan. J. Agri Life Sci., 2(11). DOI: 10.36349/easjals.2019.v02i11.006Search in Google Scholar

Ikram, A., Ambreen, S., Tahir, A., Bashir, N., Hussain, M., Ijaz Shafiq, M., Khalid, W., Babar Bin Zahid, M., Arshad, W., Tufail, T. (2020). Effect of citric acid on the storage stability of sugarcane juice at different temperatures. Int. J. Biosci. https://doi.org/10.12692/ijb/17.5.152-161.Search in Google Scholar

Llewellyn, G.C., Dashek, W.V., O’Rear, C.E. (1994). Chemical composition and fungitoxic activities of pine cone extractives, In: Biodeterioration research 4: Mycotoxins, wood decay, plant stress, biocorrosion, and general biodeterioration: Proceedings of 4th meeting of the Pan American Biodeterioration Society; New York: Plenum Press: 317-332.Search in Google Scholar

Kartal, E., Ozturk, S. (2016). Pine cone as an alternative dietary fiber source and its effect on cake and cookie quality. GIDA, 41 (5), 291-297. DOI: 10.15237/gida.GD16016Search in Google Scholar

Kilima, B., Remberg, S. F., Chove, B. E., & Wicklund, T. (2014). Influence of storage temperature and time on the physicochemical and bioactive properties of roselle-fruit juice blends in plastic bottle. Food Sci. Nutr., 2(2), 181–191. https://doi.org/10.1002/fsn3.97Search in Google Scholar

Mabaso, N., Naidoo, B., Ofomaja, A., & Chiririwa, H. (2018). Synthesis, structural and morphological studies of pine cone powder by fenton oxidation and grafting with acrylic acid using ammonium ceric nitrate as initiator. Nat. Prod. Ind. J., 14(1), 116.Search in Google Scholar

Masyita, A., Sari,R.M., Astuti, A.D., Yasir,B., Rumata, N.R., Emran, T.B., Nainu, F., Simal-Gandara, J. (2022). Terpenes and terpenoids as main bioactive compounds of essential oils, their roles in human health and potential application as natural food preservatives, Food Chem., X(13), https://doi.org/10.1016/j.fochx.2022.100217.Search in Google Scholar

Ministru kabineta 2015. gada 15. decembra noteikumi Nr. 735 “Dažādu veidu cukura kvalitātes, klasifikācijas un papildu marķējuma prasības”. Latvijas Vēstnesis, 254, 30.12.2015. https://likumi.lv/ta/id/278902Search in Google Scholar

Ngadi, M., Yu, L. (2004). Rheological properties of Canadian maple syrup. Can. Biosyst. Eng., 46.Search in Google Scholar

Purewal, S.S., Kamboj, R., Sandhu, K.S., Kaur,P., Sharma,K., Kaur,M., Kumar Salar,R., Punia, S., Siroha,A.K. (2022). Unraveling the effect of storage duration on antioxidant properties, physicochemical and sensorial parameters of ready to serve kinnow-amla beverages, Appl. Food Res., 2(1). https://doi.org/10.1016/j.afres.2022.100057.Search in Google Scholar

Popescu, D.I.; Lengyel, E.; Apostolescu, F.G.; Soare, L.C.; Botoran, O.R.; Șuțan, N.A. (2022). Volatile compounds and antioxidant and antifungal activity of bud and needle extracts from three populations of pinus mugo turra growing in romania. J. Hortic., 8, 952. https://doi.org/10.3390/horticulturae8100952Search in Google Scholar

Razavi, S. M.A., Najafi, M. B.H., & Alaee, Z. (2007). The time independent rheological properties of low fat sesame paste/date syrup blends as a function of fat substitutes and temperature. Food Hydrocol., 21(2), 198-202. https://doi.org/10.1016/j.foodhyd.2006.03.008Search in Google Scholar

Rehman, M.A., Khan, M.R., Sharif, M., Ahmad, S., Shah, F. (2014). Study on the storage stability of fruit juice concentrates. Pak. J. Food Sci., 24, 101-107.Search in Google Scholar

Sahin, H. T., & Yalcin, O. U. (2017). Conifer cones: an alternative raw material for industry. Br. J. Pharm. Res., 17(2). Retrieved from https://core.ac.uk/download/pdf/144791781.pdfSearch in Google Scholar

Semeniuc, C. A., Rotar, A., Stan, L., Pop, C. R., Socaci, S., Mireşan, V., Muste, S. (2016). Characterization of pine bud syrup and its effect on physicochemical and sensory properties of kefir. Journal of Food, 14(2), 213-218. DOI: 10.1080/19476337.2015.1085905Search in Google Scholar

Silici, S. (2011). Determination of volatile compounds of pine honeys. Turk J Biol 35, 641-645. doi:10.3906/biy-1009-112Search in Google Scholar

Shyu, Y.-S., Hsiao, H.-I., Fang, J.-Y., & Sung, W.-C. (2019). Effects of dark brown sugar replacing sucrose and calcium carbonate, chitosan, and chitooligosaccharide addition on acrylamide and 5-hydroxymethylfurfural mitigation in brown sugar cookies. Processes, 7, (360). doi:10.3390/pr7060360Search in Google Scholar

Tananaki, C.; Liolios, V.; Kanelis, D.; Rodopoulou, M.A. (2022). Investigation of volatile compounds in combination with multivariate analysis for the characterization of monofloral honeys. Appl. Sci., 12, 264. https://doi.org/10.3390/app12010264Search in Google Scholar

Vicentini-Polette, C.M., Belé, J.S.A.H.S., Borges, M.T.M.R., Spoto, M.H.F., Verruma-Bernardi, M.R. (2019). Physicochemical and sensorial characterization of commercial sugarcane syrups. Revista de Ciências Agrárias, 42(3), 808-816. DOI: https://doi.org/10.19084/rca.17279Search in Google Scholar

Zhu, K., Aykas, D.P., Rodriguez-Saona, L.E. (2022). Pattern recognition approach for the screening of potential adulteration of traditional and bourbon barrel-aged maple syrups by spectral fingerprinting and classical methods. Foods, 11, 2211. https://doi.org/10.3390/foods11152211Search in Google Scholar

Xu, R.-B., Yang, X., Wang, J., Zhao, H.-T., Lu, W.-H., Cui, J., Cheng, C.-L., Zou, P., Huang, W.-W., Wang, P., Li, W.-J., & Hu, X.-L. (2012). Chemical composition and antioxidant activities of three polysaccharide fractions from pine cones. Int. J. Mol. Sci., 13, 14262-14277. DOI:10.3390/ijms131114262Search in Google Scholar

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