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Neutralization of acid droplets on plant leaf surfaces

机译:植物叶片表面上的酸液滴中和

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Sulfuric acid mist exposure of bush bean leaves at a low rate of precipitation suggested that acid on the leaf surface was neutralized by rations leached from leaf tissues and that Ca-S compounds were accumulated on the leaf surface (Kohno, 1994). This report summarizes visual observations of the neutralization process of acid on leaf surfaces as determined by a pH-imaging microscope. Small droplets of sulfuric acid were placed on the adaxial leaf surface and allowed to air dry under laboratory conditions. Droplets (0.1μl) of sulfuric acid took about 7-8 minutes to dry. leaf samples were cut at various times after the acid droplets dried. The adaxial leaf surface was placed 6n the pH-adjusted agar film layer on the pH-imaging sensor of the microscope. Hydrogen ions dispersed into the film layer and resulting pH distributions were visualized as pH distribution patterns. The size of the acidic area generated became smaller with time after the acid was added and allowed to dry. Results indicate that leaves could neutralize the surface acid probably by ion exchange with rations from their surface tissues and could recover from strong temporary acid stress imposed by acid rain or acid fog in a relatively short period of time. Our findings indicate that acidic precipitation at current acidity levels does not pose a direct threat to plants.
机译:硫酸雾暴露于灌木叶片以低沉淀速率提出,叶片表面上的酸被从叶组织浸出的口粮中和,并且Ca-S化合物积聚在叶片表面上(Kohno,1994)。本报告总结了由pH-成像显微镜确定的叶片表面上和酸中和过程的视觉观察。将小滴硫酸置于对叶片表面上,并在实验室条件下空气干燥。液滴(0.1μL)硫酸花约7-8分钟干燥。在酸液滴干燥后,在不同时间切割叶样品。在显微镜的pH-成像传感器上置于pH调节的琼脂膜层上的对叶片表面。分散到薄膜层中的氢离子和得到的pH分布被视为pH分布图案。加入酸后,产生的酸性区域的尺寸随时间变小,并使其干燥。结果表明,叶片可能通过离子交换与来自其表面组织的口粮中的离子交换中和表面酸,并且可以在相对较短的时间内从酸雨或酸雾施加的强临时酸应激中恢复。我们的研究结果表明,当前酸度水平的酸性沉淀不会对植物产生直接威胁。

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