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首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Modeled dosage-response relationship on the net photosynthetic rate for the sensitivity to acid rain of 21 plant species.
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Modeled dosage-response relationship on the net photosynthetic rate for the sensitivity to acid rain of 21 plant species.

机译:在21种植物对酸雨敏感性的净光合速率上模拟的剂量反应关系。

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摘要

This study investigated the sensitivity of plant species to acid rain based on the modeled dosage-response relationship on the net photosynthetic rate (PN) of 21 types of plant species, subjected to the exposure of simulated acid rain (SAR) for 5 times during a period of 50 days. Variable responses of PN to SAR occurred depending on the type of plant. A majority (13 species) of the dosage-response relationship could be described by an S-shaped curve and be fitted with the Boltzmann model. Model fitting allowed quantitative evaluation of the dosage-response relationship and an accurate estimation of the EC10, termed as the pH of the acid rain resulting in a PN 10% lower than the reference value. The top 9 species (Camellia sasanqua, Cinnamomum camphora, etc. EC10<=3.0) are highly endurable to very acid rain. The rare, relict plant Metasequoia glyptostroboides was the most sensitive species (EC10=5.1) recommended for protection.
机译:本研究基于对21种植物物种的净光合速率( P N )建模的剂量反应关系,研究了植物对酸雨的敏感性,在50天内暴露5次模拟酸雨(SAR)。 P N 对SAR的可变响应取决于植物类型。剂量-反应关系的大部分(13种)可以通过S形曲线描述,并与Boltzmann模型拟合。通过模型拟合,可以定量评估剂量反应关系,并准确估算EC 10 ,称为酸雨的pH值,导致 P N 比参考值低10%。前9种(茶树,樟子松等)EC 10 <= 3.0)高度耐酸雨。建议将稀有的遗迹植物 Metasequoia glyptostroboides 作为最敏感的物种(EC 10 = 5.1)进行保护。

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