Evacuated tube collector based solar drying of pre-treated okra (Abelmoschus esculentus): Analysis of thermal performance, bioactive compounds, antioxidant activity, and functional properties

IF 6 2区 工程技术 Q2 ENERGY & FUELS
Dhiraj Kumar Yadav, Vinkel Kumar Arora, Anupama Singh, Santanu Malakar, T. Manonmani
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引用次数: 1

Abstract

Okra (Abelmoschus esculentus) is a good source of micronutrients and a highly perishable vegetable crop. The okra pods were dried in an evacuated tube collector-based novel solar drying system, i.e. an evacuated tube solar dryer with heat pipe (ETSD_HP), and evacuated tube solar dryer without heat pipe (ETSD_WHP) and sun drying. The okra was pre-treated at different temperatures prior to drying, and the thermal profiling, moisture diffusivity, and retention of quality attributes were investigated and compared. The highest moisture diffusivity was found in the sample pre-treated at 80 °C and dried in ETSD_HP. The results show that Total Phenolic Content (TPC), 2,2-diphenylpicrylhydrazyl (DPPH), and 2,2′-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) content increased across all drying techniques, while the Total Flavonoid Content (TFC) and Ferric Reducing Antioxidant Power (FRAP) content were decreased. The bioactive compounds, namely TPC and TFC retention, were maximum for okra dried in ETSD_HP. The maximum retention of chlorophyll content (76.70 to 93.20%), vitamin C (73.84 to 93.73%), and minimum color changes (7.70 to 13.48) were observed for the all the sample dried in ETSD_WHP. The pre-treatment temperature of 80 °C was found to be appropriate for the maximum retention of quality attributes of okra. FTIR analysis identified functional groups of active compounds in dried okra for all the drying methods. Therefore, both the ETSD_HP and ETSD_WHP techniques are appropriate to retain the bioactive compounds and functional properties of okra as compared to Sun drying. ETSD_HP is recommended for increased moisture diffusion with maximum retention of bioactive compounds.

Abstract Image

基于真空管集热器的预处理秋葵太阳能干燥:热性能、生物活性化合物、抗氧化活性和功能特性分析
秋葵(Abelmoschus esculentus)是微量营养素的良好来源,也是一种高度易腐的蔬菜作物。采用基于真空管集热器的新型太阳干燥系统,即带热管的真空管太阳干燥机(ETSD_HP)和无热管的真空管太阳干燥机(ETSD_WHP)对秋葵荚进行干燥。在干燥前对秋葵进行不同温度的预处理,研究并比较了秋葵的热分布、水分扩散率和品质属性的保持情况。经80℃预处理并在ETSD_HP中干燥的样品水分扩散率最高。结果表明:在不同干燥工艺条件下,总酚含量(TPC)、2,2-二苯基吡啶酰肼(DPPH)和2,2 ' -氮基-双(3-乙基苯并噻唑啉-6-磺酸)含量(ABTS)均有所增加,总黄酮含量(TFC)和铁还原抗氧化力(FRAP)含量均有所降低。在ETSD_HP干燥的秋葵中,TPC和TFC保留量最大。在ETSD_WHP中,所有样品的叶绿素含量最高(76.70 ~ 93.20%),维生素C含量最高(73.84 ~ 93.73%),颜色变化最小(7.70 ~ 13.48)。发现80℃的预处理温度对秋葵品质属性的最大保留是适宜的。FTIR分析鉴定了不同干燥方法下秋葵中活性化合物的官能团。因此,与日光干燥相比,ETSD_HP和ETSD_WHP技术都适合保留秋葵的生物活性化合物和功能特性。ETSD_HP推荐用于增加水分扩散,最大限度地保留生物活性化合物。
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来源期刊
Solar Energy
Solar Energy 工程技术-能源与燃料
CiteScore
13.90
自引率
9.00%
发文量
0
审稿时长
47 days
期刊介绍: Solar Energy welcomes manuscripts presenting information not previously published in journals on any aspect of solar energy research, development, application, measurement or policy. The term "solar energy" in this context includes the indirect uses such as wind energy and biomass
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