沙电作用可能影响沙漠化土地植物生理

Li Xingcai
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引用次数: 0

摘要

目前,研究人员主要关注沙土掩埋、沙土流动、土壤水分和养分流失造成的植被退化,而未考虑沙粒移动引起的强环境电场对植物生理过程的影响。本章简要介绍了风沙起电的研究进展,并提出了一种解释流沙接触起电现象的耦合预测模型。最后,在刚性管道模型和根系吸水模型的基础上,讨论了最大值可达200 kV/m的风沙电场对植物液流速度、根系水势和细胞膜透性的影响。数值模拟结果表明,风沙电场直接加速了植物根系液流速率,间接降低了植物根系水势,最终影响了植物的生理过程。这些结果可以解释为什么风沙对植物的影响比清洁风明显。通过这些讨论,我们有效地阐明了风沙对沙漠化土地植物生理的影响机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sand Electrification Possibly Affects the Plant Physiology in Desertification Land
At present, the researchers mainly focused on the degradation of vegetation caused by the sand burial, the sand flowing, and the loss of soil moisture and nutrients but never considered the impact of strong environmental electric field, which caused by the moving sand particles, on the physiological process of plants. In this chapter, we briefly intro-duced the research progress of wind-blown sand electrification and proposed a coupling prediction model to explain the contact electrification phenomenon of moving sand. At last, based on the rigid conduit model and the root-water-uptake model, we discussed the effect of wind-blown sand electric field, which maximum value can reach to 200 kV/m, on the speed of plant sap flow, the water potential of root, and the cell membrane permeabil- ity, respectively. The numerical simulation results showed that the wind-blown sand electric field directly accelerates the sap flow rate and indirectly decreased the water potential of plant root, which finally affects the plant physiological processes. These results can explain why the effect of wind-blown sand on the plant is obvious than that of the clean wind. From these discussions, we effectively illustrate the impact mechanism of wind-blown sand on the plant physiology in the desertification land.
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