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Research Article

Effects of hot air drying on drying kinetics, quality and flavor changes of Fructus aurantii

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Pages 560-573 | Received 30 Oct 2023, Accepted 21 Feb 2024, Published online: 17 Mar 2024

References

  • Wang, Y.K., Zhou, Z.M., Dai, M.Y., Ma, X.F., Xiao, X.R., Zhang, S.W., Liu, H.N., Li, F. (2021). Discovery and validation of quality markers of Fructus aurantii against acetylcholinesterase using metabolomics and bioactivity assays. Journal of Separation Science. 44: 2189-2205. doi: 10.1002/jssc.202001190
  • Wu, J., Huang, G., Li, Y., Li, X. (2020). Flavonoids from Fructus aurantii immaturus and Fructus aurantii: promising phytomedicines for the treatment of liver diseases. Chinese Medicine. 15: 89. doi: 10.1186/s13020-020-00371-5
  • Ying, Y., Wan, H., Zhao, X., Yu, L., He, Y., Jin, W. (2020). Pharmacokinetic-pharmacodynamic modeling of the antioxidant activity of quzhou Fructus aurantii decoction in a rat model of hyperlipidemia. Biomedicine & Pharmacotherapy. 131: 110646. doi: 10.1016/j.biopha.2020.110646
  • Zhou, D.Y., Xu, Q., Xue, X.Y., Zhang, F.F., Liang, X.M. (2006). Identification of o-diglycosyl flavanones in Fructus aurantii by liquid chromatography with electrospray ionization and collision-induced dissociation mass spectrometry. Journal of Pharmaceutical and Biomedical Analysis. 42: 441-448. doi: 10.1016/j.jpba.2006.05.015
  • Zhou, D.Y., Chen, D.L., Xu, Q., Xue, X.Y., Zhang, F.F., Liang, X.M. (2007). Characterization of polymethoxylated flavones in Fructus aurantii by liquid chromatography with atmospheric pressure chemical ionization combined with tandem mass spectrometry. Journal of Pharmaceutical and Biomedical Analysis. 43: 1692-1699. doi: 10.1016/j.jpba.2006.12.032
  • Li, P., Zeng, S.L., Duan, L., Ma, X.D., Dou, L.L., Wang, L.J., Li, P., Bi, Z.M., Liu, E.H. (2016). Comparison of aurantii fructus immaturus and aurantii fructus based on multiple chromatographic analysis and chemometrics methods. Journal of chromatography A. 1469: 96-107. doi: 10.1016/j.chroma.2016.09.061
  • Liu, C., Cheng, Y., Zhang, H., Deng, X., Chen, F., Xu, J. (2012). Volatile constituents of wild citrus Mangshanyegan (Citrus nobilis Lauriro) peel oil. Journal of Agricultural and Food Chemistry. 60: 2617-28. doi: 10.1021/jf2039197
  • Jiang, Y., Bai, X., Zhu, X., Li, J. (2014). The effects of Fructus aurantii extract on the 5-hydroxytryptamine and vasoactive intestinal peptide contents of the rat gastrointestinal tract. Pharmaceutical Biology. 52: 581-585. doi: 10.3109/13880209.2013.854396
  • Huang, Y.T., Wang, G.F., Chen, C.F., Chen, C.C., Hong, C.Y., Yang, M.C. (1995). Fructus aurantii reduced portal pressure in portal hypertensive rats. Life Sciences. 57: 2011-2020. doi: 10.1016/0024-3205(95)02195-O
  • Luo, X., Zheng, Y., Bao, Y.R., Wang, S., Li, T.J., Leng, J.P., Meng, X.S. (2022). Potential effects of Fructus aurantii ethanol extracts against colitis-associated carcinogenesis through coordination of notch/nf-κb/il-1 signaling pathways. Biomedicine & Pharmacotherapy. 152: 113278. doi: 10.1016/j.biopha.2022.113278
  • Lin, Z., Wang, H., Xu, Y., Dong, J., Hashi, Y., Chen, S. (2012). Identification of antioxidants in Fructus aurantii and its quality evaluation using a new on-line combination of analytical techniques. Food Chemistry. 134: 1181-1191. doi: 10.1016/j.foodchem.2012.02.161
  • Benavente-García, O., Castillo, J. (2008). Update on uses and properties of citrus flavonoids: new findings in anticancer, cardio-vascular, and anti-inflammatory activity. Journal of Agricultural and Food Chemistry. 56: 6185-6205. doi: 10.1021/jf8006568
  • Saha, R.K., Takahashi, T., Suzuki, T. (2009). Glucosyl hesperidin prevents influenza a virus replication in vitro by inhibition of viral sialidase. Biological & Pharmaceutical Bulletin. 32: 1188-1192. doi: 10.1248/bpb.32.1188
  • Xue, S., Setyabrata, D., Bonham, C.C., Kim, Y.H.B. (2021). Evaluation of functional and chemical properties of crust from dry-aged beef loins as a novel food ingredient. Meat Science. 173: 108403. doi: 10.1016/j.meatsci.2020.108403
  • Yang, H.L., Chen, S.C., Senthil, K.J., Yu, K.N., Lee, P.D., Tsai, S.Y., Hou, Y.C., Hseu, Y.C. (2021). Antioxidant and anti-inflammatory potential of hesperetin metabolites obtained from hesperetin-administered rat serum: an ex vivo approach. Journal of Agricultural and Food Chemistry. 60: 522-532. doi: 10.1021/jf2040675
  • Speranza, G., Lo, S.R., Morelli, C.F., Rabuffetti, M., Bianchi, G. (2019). Influence of drying techniques and growing location on the chemical composition of sweet pepper (Capsicum annuum l., var. senise). Journal of Food Biochemistry. 43: e13031.
  • Vohra, Z.A., Zode, S.S., Bansal, A.K. (2019). Effect of primary drying temperature on process efficiency and product performance of lyophilized Ertapenam sodium. Drug Development and Industrial Pharmacy. 45: 1940-1948. doi: 10.1080/03639045.2019.1683024
  • Guo, H.L., Chen, Y., Xu, W., Xu, M.T., Sun, Y., Wang, X.C., Wang, X.Y., Luo, J.N., Zhang, H., Xiong, Y.K. (2022). Assessment of drying kinetics, textural and aroma attributes of Mentha haplocalyx leaves during the hot air thin-layer drying process. Foods. 11: 784. doi: 10.3390/foods11060784
  • Rathi, A., Pande, N., Radke, U., Deshpande, S., Chandak, A. (2019). Comparative evaluation of diametral tensile strength of phosphate-bonded investment (ringless) material by using air-drying method, conventional hot air oven, microwave oven, and combination of microwave and conventional oven: An in vitro study. Journal of Indian Prosthodontic Society. 19: 248-254. doi: 10.4103/jips.jips_45_19
  • Midilli, A., Kucuk, H., Yapar, Z. (2002). A new model for single-layer drying. Dry Technology. 20(7): 1503-1513. doi: 10.1081/DRT-120005864
  • Agrawal, Y.C., Singh, R.D. (1977). Thin layer drying studies for short graib rice. ASAE Paper, No. 77-3531.
  • Barrozo, M.A.S., Sartori, D.J.M., Freire, J.T. (2004). A study of the statistical discrimination of the drying kinetics equations. Food and Bioproducts Processing. 82(C3): 219-225. doi: 10.1205/fbio.82.3.219.44176
  • Silva, W.P.D., Silva, C.E.S., Gama, F.J.A., Gomes, J.P. (2014). Mathematical models to describe thin-layer drying and to determine drying rate of whole bananas. Journal of the Saudi Society of Agricultural Sciences. 13(1): 67-74. doi: 10.1016/j.jssas.2013.01.003
  • Guo, H.L., Chen, Y., Xu, W., Xu, M.T., Sun, Y., Wang, X.C., Wang, X.Y., Luo, J.N., Zhang, H., Xiong, Y.K. (2022). Assessment of drying kinetics, textural and aroma attributes of mentha haplocalyx leaves during the hot air thin-layer drying process. Foods. 11: 784. doi: 10.3390/foods11060784
  • Madamba, P.S., Driscoll, R.H., Buckle, K.A. (1996). The thin-layer drying characteristics of garlic slices. Journal of Food Engineering. 29(1): 75-97. doi: 10.1016/0260-8774(95)00062-3
  • Ayensu, A. (1997). Dehydration of food crops using a solar dryer with convective heat flow. Solar Energy. 59(4-6): 121-126. doi: 10.1016/S0038-092X(96)00130-2
  • Hlushkou, D., Tallarek, U. (2018). Analysis of microstructure-effective diffusivity relation-ships for the interparticle pore space in physically reconstructed packed beds. Journal of Chromatography A. 1581-1582: 173-179.
  • Arumuganathan, T., Manikantan, M.R., Rai, R.D., Anandakumar, S., Khare, V. (2009). Mathematical modeling of drying kinetics of milky mushroom in a fluidized bed dryer. International Agrophysics. 23: 1-7.
  • Torki-Harchegani, M., Ghanbarian, D., Sadeghi, M. (2015). Estimation of whole lemon mass transfer parameters during hot air drying using different modelling methods. Heat Mass Transfer. 51: 1121-1129. doi: 10.1007/s00231-014-1483-1
  • Chinese Pharmacopoeia Commission. (2020). Pharmacopoeia of the people’s republic of china. 2020 edition. BeiJing: China Medical Science Press. 198-200.
  • Zheng, D.J., Cheng, Y.Q., Liu, H.J., Li, L.T. (2011). Investigation of ehd-enhanced water evaporation and a novel empirical model. International Journal of Food Engineering. 7: 1-13.
  • Torki-Harchegani, M., Ghasemi-Varnamkhasti, M., Ghanbarian, S. Morteza, D., Mojtaba, T. (2016). Dehydration characteristics and mathematical modelling of lemon slices drying undergoing oven treatment. Heat Mass Transfer. 5: 281-289. doi: 10.1007/s00231-015-1546-y
  • Chayjan, R.A., Salarik, K., Barikloo, H. (2012). Modelling moisture diffusivity of pomegranate seed cultivars under fixed, semi fluidized and fluidized bed using mathematical and neural network methods. Acta Scientiarum Polonorum-Technologia Alimentaria. 11: 131-148.
  • Chayjan, R.A., Salarik, K., Barikloo, H. (2010). Modelling of air drying of fresh and blanched sweet potato slices. International Journal of Food Science and Technology. 45: 278-288. doi: 10.1111/j.1365-2621.2009.02133.x
  • Fernando, A.J., Amaratunga, S. (2022). Appli-cation of far-infrared radiation for sun-dried chili pepper (Capsicum annum L.): drying characteristics and color during roasting. Journal of Agriculture and Food Sciences. 102: 3781-3787. doi: 10.1002/jsfa.11726
  • Van Bockstal, P.J., Corver, J., Mortier, S.T.F.C., De Meyer, L., Nopens, I., Gernaey, K.V., De Beer, T. (2018). Developing a framework to model the primary drying step of a continuous freeze-drying process based on infrared radiation. European Journal of Pharmaceutics and Biopharmaceutics. 127: 159-170. doi: 10.1016/j.ejpb.2018.02.025
  • Lim, M.Y., Huang, J., He, F.R., Zhao, B.X., Zou, H.Q., Yan, Y.H., Hu, H., Qiu, D.S., Xie, J.J. (2020). Quality grade classification of china commercial moxa floss using electronic nose: a supervised learning approach. Medicine(Baltimore). 99: e21556.
  • Wang, D., Lu, F., Ai, L., Wu, C.J., Liu, Z., Zhang, M., Zhong, C. (2022). Discovery of active ingredients in traditional chinese medicine based on odor and flavor compounds analysis. Current Pharmaceutical Design. 28: 2771-2784. doi: 10.2174/1381612828666220526124239
  • Zhou, S., Lin, H., Meng, J. (2022). Discrimination and chemical composition quantitative model of raw moutan cortex and moutan cortex carbon based on electronic nose and machine learning. Mathematical Biosciences and Engineering. 19: 9079-9097. doi: 10.3934/mbe.2022422
  • Zhou, H., Luo, D., GholamHosseini, H., Li, Z., He, J. (2017). Identification of chinese herbal medicines with electronic nose technology: applications and challenges. Sensors (Basel, Switzerland). 17: E1073. doi: 10.3390/s17051073
  • Li, S.Z., Zeng, S.L., Wu, Y., Zheng, G.D., Chu, C., Yin, Q., Chen, B.Z., Li, P., Lu, X., Liu, E.H. (2019). Cultivar differentiation of citri reticulatae pericarpium by a combination of hierarchical three-step filtering metabolomics analysis, dna barcoding and electronic nose. Analytica Chimica Acta. 1056: 62-69. doi: 10.1016/j.aca.2019.01.004
  • Li, S., Li, X.R., Wang, G.L., Nie, L.X., Yang, Y.J., Wu, H.Z., Wei, F., Zhang, J., Tian, J.G., Lin, R.C. (2012). Rapid discrimination of chinese red ginseng and korean ginseng using an electronic nose coupled with chemometrics. Journal of Pharmaceutical and Biomedical Analysis. 70: 605-608. doi: 10.1016/j.jpba.2012.06.009
  • Liu, J., Wang, W., Yang, Y., Yan, Y., Wang, W., Wu, H., Ren, Z. (2014). A rapid discrimination of authentic and unauthentic radix angelicae sinensis growth regions by electronic nose coupled with multivariate statistical analyses. Sensors (Basel, Switzerland). 14: 20134-20148. doi: 10.3390/s141120134
  • Wang, S., Zhao, F., Wu, W., Wang, P., Ye, N. (2020). Comparison of volatiles in different jasmine tea grade samples using electronic nose and automatic thermal desorption-gas chromatography-mass spectrometry followed by multivariate statistical analysis. Molecules. 25: E380. doi: 10.3390/molecules25020380
  • Li, C., Xu, F., Cao, C., Shang, M.Y., Zhang, C.Y., Yu, J., Liu, G.X., Wang, X., Cai, S.Q. (2013). Comparative analysis of two species of asari radix et rhizoma by electronic nose, headspace GC-MS and chemometrics. Journal of Pharmaceutical and Biomedical Analysis. 85: 231-238. doi: 10.1016/j.jpba.2013.07.034
  • Long, Q., Li, Z., Han, B., Gholam, H.H., Zhou, H., Wang, S., Luo, D. (2019). Discrimination of two cultivars of Alpinia officinarum hance using an electronic nose and gas chromatography-mass spectrometry coupled with chemometrics. Sensors (Basel, Switzerland). 19: E572. doi: 10.3390/s19030572
  • Guo, H.L., Xu, M.T., Wu, Z.F., Feng, C.H., Chen, Y., Luo, J.N., Zhang, W.Q., Xiong, Y.K. (2022). Kinetics and variation of volatile components of atractylodis macrocephalae rhizoma during hot-air drying. China Journal of Chinese Materia Medica. 47: 922-930.

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