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Effect of combined water and salinity stress factors on evapotranspiration of Sedum kamtschaticum Fischer in relation to green roof irrigation

机译:水分和盐分胁迫联合因子对绿叶景天灌溉与蒸腾作用的影响

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摘要

In dryland areas, secondarily treated municipal wastewater could be used in extensive green roof systems. In this study, the effects of water and salt stress on a crassulacean acid metabolism (CAM) plant, Sedum kamtschaticum Fischer, was evaluated under intermittent saline irrigation. The salinity of irrigation water varied from 6.0 to l8.0dSm~1. A reduction in soil water content and an increase in soil water electrical conductivity (EC) were observed during the irrigation interval (5-17d) as a result of evapotranspiration (ET). The effect of soil water potential (SWP) on reduction of the ET ratio (ETr) was successfully described with an equation that could be applicable to a wide range of soil salinities and water contents, to estimate ET. In thisstudy, the stress factor was defined as the integration of solute potential, and matric potential less soil water content for optimum growth (less than -0.1 MPa) with elapsed time. The stress factor rapidly reduced total ET in CAM plants but effectivelyincreased water-use efficiency (WUE). Thus, by using CAM plants for green roofs under intermittent saline irrigation, the need for irrigation water is reduced without a considerable loss of plant biomass.
机译:在干旱地区,经过二次处理的市政废水可用于广泛的屋顶绿化系统。在这项研究中,水和盐胁迫对间歇性盐水灌溉下的景天草酸代谢(CAM)植物Sedum kamtschaticum Fischer的影响进行了评估。灌溉水的盐度从6.0到18.0dSm〜1。由于蒸发蒸腾(ET),在灌溉间隔(5-17d)期间土壤水含量减少,土壤水电导率(EC)增加。成功地利用方程式成功地描述了土壤水势(SWP)对ET比(ETr)降低的影响,该方程式可适用于广泛的土壤盐分和水分含量,以估算ET。在本研究中,应力因子定义为溶质势的积分,矩阵势减去随着时间的推移最佳生长(小于-0.1 MPa)的土壤水分。胁迫因子迅速降低了CAM植物的总ET,但有效提高了水分利用效率(WUE)。因此,通过在间歇性盐水灌溉下将CAM植物用于屋顶绿化,减少了灌溉用水的需求,而不会大量损失植物生物量。

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