首页> 外文期刊>The Indian Journal of Agricultural Sciences >Design and development of seed priming prototype for hydropriming of okra (Abelmoschus esculentus) and pea (Pisum sativum) seeds
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Design and development of seed priming prototype for hydropriming of okra (Abelmoschus esculentus) and pea (Pisum sativum) seeds

机译:秋葵(Abelmoschus Esculentus)和豌豆(Pisum Sativum)种子水泥种子灌注原型的设计与开发

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Seed priming is being manually performed to enhance the germination related quality attributes. The objective of this study was to develop an effective mechanical priming system capable of improving the germination associated properties of okra (Abelmoschus esculentus) and pea (Pisum sativum L.) seeds. Based on the recommended design and prior optimization of operational parameters for hydropriming of both seed lots, a functional prototype was developed. Controlled conditions of selected process parameters, viz. soaking duration, process temperature, rotation speed and air flow rate were maintained during the experimental run. Three different levels each of germination percentage (80, 65, 50) for okra and (80, 70, 60) for pea, soaking duration (4, 5, 6 h) for okra and (45, 60, 75 min) for pea, process temperature (20, 25, 30 degrees C), rotation speed (320, 340, 360 rpm), air flow rate (2.192, 2.740, 3.288 m(3)/min) for okra and (0.411, 0.548, 0.685 m(3)/min) for pea seeds were the operational parameters. Developed prototype was evaluated for its performance for hydropriming based on process responses, viz. moisture content after hydropriming (MC), final germination percentage (FGP), seedling length (SL), seedling dry weight (SDW), vigour indices (VI-I and VI-II) and electrical conductivity (EC). It was found to be effective in recuperating the quality attributes of both the seeds. Overall results supported the hypothesis that mechanical hydropriming using the developed prototype was observed to be effective as well as economical for okra and pea seeds.
机译:正在手动进行种子引发以增强萌发相关质量属性。本研究的目的是开发一种有效的机械引发系统,能够改善秋葵(Abelmoschus Esculentus)和豌豆(Pisum Sativum L.)种子的发芽相关性质。基于推荐的设计和先前优化用于加水力的种子批次,开发了一种功能原型。所选过程参数的受控条件,viz。在实验运行期间保持浸泡持续时间,过程温度,转速和空气流速。对于秋葵的秋葵和(80,70,60)的豌豆,豌豆(4,5,6小时)的三种不同水平(80,65,50),对秋葵的浸泡持续时间(4,5,6小时)(45,60,75分钟) ,工艺温度(20,25,30℃),转速(320,340,360rpm),空气流速(2.192,2.740,3.288m(3)/ min)用于秋葵和(0.411,0.548,0.685米(3)/ min)对于豌豆种子是操作参数。基于过程响应,VIZ的加氢调查评估了开发的原型。水解后的水分含量(MC),最终发芽百分比(FGP),幼苗长度(SL),幼苗干重(SDW),活力指数(VI-I和VI-II)和电导率(EC)。发现它有效地恢复了种子的质量属性。总体结果支持使用开发的原型的机械加水解的假设是有效的以及秋葵和豌豆种子的经济学。

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