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Standardization of X-Ray Radiography Methodology for the Detection of Hidden Infestation In Pulses

机译:用于检测脉冲中隐患的X射线照相术方法学的标准化

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Investigation were carried out on standardization of X-ray radiography methodology for the detection of hidden insect infestation in pulses. Studies revealed that the controllable input electrical parameters of the x-ray machine viz., voltage, currentand exposure period required for the detection of hidden insect infestation varied widely for different pulse seed materials. High voltage and current were required for dense seed materials to ensure adequate penetration of radiation compared to light seed materials. The best combinations of input value selected for the detection of hidden infestation of pulse beetle, Callosobruchus chinensis were 20 KV, 10 mA, 25 seconds for urdbean and mungbean; 20 KV, 12 mA for 25 seconds for cowpea; 25 KV, 10 mA, 25 seconds for soybean; 15 KV, 12 mA, 25 seconds for lentil; and 25 KV, 8 mA, 25 seconds for Dolichos. Similarly, the germination percentage of pulses that were subjected to investigation varied from 80-100% for urdbean, mungbean, cowpea, soybean, lentil,french bean and 90-100% for Dolichos exhibited that these soft X-rays did not affect the viability of seeds.
机译:对X射线放射线照相方法的标准化进行了研究,以检测脉冲中隐藏的昆虫侵扰。研究表明,对于不同的脉冲种子材料,X射线机的可控输入电参数,即检测隐藏昆虫侵扰所需的电压,电流和暴露时间,差异很大。与轻种子材料相比,致密种子材料需要高电压和高电流,以确保辐射能够充分穿透。选择用于检测脉冲甲虫隐孢子虫的最佳输入值组合是:20 KV,10 mA,25秒(对于乌豆和绿豆); cow豆20 KV,12 mA,持续25秒;大豆25 KV,10 mA,25秒; 15 KV,12 mA,扁豆25秒; Dolichos则为25 KV,8 mA,25秒。同样,接受调查的豆类种子的发芽率从80-100%(对于Udbean,绿豆,cow豆,大豆,小扁豆,法国豆)和90-100%(对于Dolichos)而言,都表明这些软X射线不会影响生存力。种子。

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