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Carbon Footprint of Electrostatic Sprayer in Comparison with Air Compression Sprayer and Mistblower

机译:静电喷雾器碳脚印与空气压缩喷雾器和不计时器相比

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This study aimed at finding out the efficacy of electrostatic sprayer on pest control in comparison with mist blower and air compression sprayer. Six pests were selected based on specific characteristics viz. integumental, movement and ecological niche. Energy use efficiency in production and application of pesticides used by different sprayers for the control of selected pests were quantified based on application efficiency, pre and post pest count and reoccurrence of pest infestation after spray. The greenhouse gas emission for the total energy usage for the corresponding quantity of pesticide were computed for all the selected sprayers. The energy use efficiency of electrostatic sprayer was found to be 1.5 times more than that of mist blower and 2 times more than that of air compression sprayers. The chemical usage by electrostatic sprayer was reduced by 65%, and that of knapsack mist blower was 35% with air compression sprayers. The corresponding greenhouse gas emission was only 20% for electrostatic sprayer and 65% for powered mist blower than that of air compression sprayers. The post pest count was almost nil in all the categories of pest while applying with electrostatic sprayer and the reoccurrence of the pest to the threshold level was minimum. This contributes a significant reduction in emission of CO_(2) when considered globally, and ultimately contribute to mitigation of global warming.
机译:本研究旨在找出静电喷雾器对雾气鼓风机和空气压缩喷雾器的害虫防治的功效。基于特定特征viz来选择六种害虫。整数,运动和生态利基。在喷雾后的应用效率,预先和害虫后计数和害虫侵染的再发布,量化不同喷雾器用于控制所选害虫的不同喷雾器的生产和应用的能量利用效率。为所有选定的喷雾器计算了相应数量的农药总能量使用的温室气体排放。静电喷雾器的能量使用效率被发现比雾气鼓风机的1.5倍,并且比空气压缩喷雾器的2倍多。静电喷雾器的化学用途减少了65%,随着空气压缩喷雾器,背包雾气鼓风机的使用量为35%。相应的温室气体排放仅为静电喷雾器的20%,而动力雾气鼓风机的电动喷雾器仅为65%,而不是空气压缩喷雾器。在佩斯施用静电喷雾器的同时,在所有类别中,害虫差价几乎是零数值,并且害虫的再吞并到阈值水平最小。这有助于在全球化的情况下减少CO_(2)的减少,并最终有助于减轻全球变暖。

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