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Dynamics of nitric oxide level in liquids treated with microwave plasma-generated gas and their effects on spinach development

机译:微波等离子体产生的气体处理过的液体中一氧化氮水平的变化及其对菠菜生长的影响

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摘要

In this study, we generated water and phosphate buffer treated with microwave plasma-generated gas in which the major component was nitric oxide (PGNO), and investigated the efficiency of the treated water and buffer in fertilization and sanitation. Real time NO level monitored by an electrode sensor was linearly increased over PGNO injection time, and removal of O2 from liquid before PGNO injection accelerated NO assimilation into liquids. Residual NO was still present 16 h after PGNO injection was stopped. H2O2, NO2, and NO3 were also detected in PGNO-treated liquids. Spinach plants applied with 10 and 30 times diluted PGNO-treated water and 0.5 mM phosphate buffer showed slightly higher height and dry weight than control after 5 weeks. Plants grown with 10 and 30 times diluted PGNO-treated water exhibited the increased tolerance to water deficiency. Significant anti-microbial activity within 1 h was observed in un-diluted and in half-diluted PGNO-treated water and 0.5 mM phosphate buffer. Our results suggest that water or phosphate buffer containing NO, H2O2, NO2, and NO3 can be produced by PGNO treatment, and that PGNO-treated water or buffer can be used as a potential fertilizer enhancing plant vitality with sanitation effect.
机译:在这项研究中,我们生成了微波等离子体产生的气体(主要成分为一氧化氮(PGNO))处理过的水和磷酸盐缓冲液,并研究了处理后的水和缓冲液在施肥和卫生方面的效率。在PGNO注入时间内,由电极传感器监测的实时NO水平呈线性增加,并且在PGNO注入之前从液体中去除O2加速了NO吸收到液体中。 PGNO注射停止后16小时仍残留NO。在PGNO处理过的液体中也检测到H2O2,NO2 -和NO3 -。菠菜植株在10周和30倍的PGNO稀释水和0.5μmM磷酸盐缓冲液的作用下,在5周后的高度和干重比对照略高。用10倍和30倍稀释的PGNO处理过的水生长的植物对缺水的耐受性增强。在未稀释和半稀释的PGNO处理过的水和0.5µmM磷酸盐缓冲液中,在1µh内观察到了显着的抗菌活性。我们的结果表明,通过NO处理可以生产出含有NO,H2O2,NO2 -和NO3 -的水或磷酸盐缓冲液,而经过PGNO处理的水或缓冲液可以通过PGNO处理得到。用作潜在的肥料,可增强植物的活力并具有卫生效果。

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