4.7 Article

Effects of electrostatic spray drying on the sensory qualities, aroma profile and microstructural features of instant Pu-erh tea

期刊

FOOD CHEMISTRY
卷 373, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.foodchem.2021.131546

关键词

Instant Pu-erh tea; Electrostatic spray drying; Sensory quality; Odor-active compounds; Microstructural features

资金

  1. National Natural Science Foundation of China [3210161463]
  2. China Agriculture Research System of MOF
  3. Construction of World Big-leaf Tea Technology Innovation Center and Industrialization of Achievements [202102AE090038]
  4. Scientific and Technological Talents and Platform Plan (Academician Expert Workstation) [202104AC100001-B01]

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The sensory qualities, aroma profile, and microstructural features of instant Pu-erh teas produced by electrostatic spray drying (ESD) were evaluated and compared with other drying methods. Results showed that ESD produced teas with better sensory qualities and higher concentrations of odor-active compounds, making it a potential method for instant Pu-erh tea production.
The sensory qualities, aroma profile, and microstructural features of instant Pu-erh teas (IPTs) produced by electrostatic spray drying (ESD) were evaluated by sensory and instrumental analyses and compared with those produced by other drying methods (freeze-drying [FD], vacuum drying [VD], and conventional spray drying [CSD]). The sensory qualities of ESDIPT were similar to those of FDIPT, and better than those of VDIPT and CSDIPT. Eighty-eight volatiles were detected in all IPTs, and 45 odor-active compounds were captured. Most of their OAVs were higher in ESDIPT than in VDIPT and CSDIPT but were lower than those in FDIPT. Dihydro beta-ionone had the highest OAV. Aroma recombination experiments were performed to verify the identification results. ESDIPT was present in the shape of microspheres with many regular concave surfaces, which was different from those treated by other drying methods. In terms of sensory quality and productivity, ESD would be a potential method for IPT production.

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