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The effect of acid rain on the growth and nutrient content of two species of hardwood tree seedlings, and on the pH, microflora and nutrient content of the soil

机译:酸雨对两种硬木树苗生长和养分含量以及土壤pH,微生物区系和养分含量的影响

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摘要

The increasing acidity of precipitation may cause foliage damage, decrease plant growth and leach essential nutrients from the soil. The purpose of this study was to determine the sensitivity of two hardwood tree species and three soils to simulated acid rain. The value of infecting tree seedlings with mycorrhizal fungi before transplanting into acid-leached soils was also examined;Dundas silt loam, Hayden loam and Luther loam supporting coleus and sorghum were leached three times each week for 20 weeks with a mixture of H(,2)SO(,4) and HNO(,3) adjusted by dilution to pH 5.5, 4.0 or 2.5. Ninety seedlings each of green ash (Fraxinus pennsylvanica Marsh.) and silver maple (Acer saccharinum L.) were transplanted into the soils and were misted twice weekly with the acid solutions;Ash seedlings misted with the pH 2.5 solution were shorter, had a smaller total leaf area and produced less leaf and stem material than ash seedlings misted with pH 5.5 solution. In contrast, the growth and weight of the maple seedlings increased in response to the pH 2.5 treatments. Leaves of the ash exposed to the pH 2.5 treatment were covered with numerous small lesions, and the cuticular wax was partially worn away. No lesions were observed on the leaves of the maple. Nitrogen concentrations in the leaves, stems and roots of both species increased with increasing acidity, while phosphorus concentration in the leaves decreased. Potassium and calcium levels were unaffected by the acidity of the rain. Soil type and preinfection with mycorrhizal fungi had little effect on plant growth or nutrient content;Soils became increasingly acidic as the acid treatments continued. Numbers of fungi and bacteria in the soil decreased in the pH 2.5 treatment after 20 weeks, but were not significantly different from the pH 5.5 treatment after 52 weeks. Nitrogen and iron concentrations in soils treated with pH 2.5 solutions increased, while potassium concentrations decreased. Phosphorus and calcium levels were unaffected by the solution acidity;The growth of the maple seedlings increased in response to the fertilizing effect of nitrogen in the acid solutions. The extensive foliage damage which occurred on the ash seedlings very likely reduced the photosynthesizing ability of the plants. The resulting decrease in carbohydrates masked the beneficial effect of increased nitrogen availability.
机译:沉淀酸度的增加可能会导致树叶受损,植物生长减慢并从土壤中浸出必需养分。这项研究的目的是确定两种硬木树种和三种土壤对模拟酸雨的敏感性。还检查了菌根真菌在移植到酸浸土壤前用菌根真菌感染树苗的价值;将Dundas淤泥壤土,Hayden壤土和Luther壤土支撑的锦紫苏和高粱分别用H(,2混合)浸3次,共20周。 SO(,4)和HNO(,3)通过稀释至pH 5.5、4.0或2.5进行调节。将绿灰(Fraxinus pennsylvanica Marsh。)和银枫(Acer saccharinum L.)的90株幼苗分别移植到土壤中,每周用酸溶液雾化两次;用pH 2.5溶液雾化的Ash幼苗较短,体积较小。总叶面积和产生的叶和茎材料少于用pH 5.5溶液雾化的灰苗。相反,响应pH 2.5处理,枫树幼苗的生长和重量增加。暴露于pH 2.5处理的灰烬的叶子上覆盖了许多小损伤,并且表皮蜡被部分磨损。在枫叶上未观察到损伤。两种物种的叶,茎和根中的氮含量随酸度的增加而增加,而叶中的磷浓度则下降。钾和钙的水平不受雨水酸度的影响。土壤类型和菌根真菌预感染对植物生长或营养成分的影响很小;随着酸处理的持续,土壤变得越来越酸性。在pH值2.5处理20周后,土壤中的真菌和细菌数量减少,但在52周后与pH 5.5处理无明显差异。 pH 2.5溶液处理过的土壤中的氮和铁浓度增加,而钾浓度下降。溶液中的酸度对磷和钙的含量没有影响;在酸性溶液中氮素的施肥作用下,枫树幼苗的生长增加。灰苗上发生的大面积叶子破坏很可能会降低植物的光合作用能力。导致的碳水化合物减少掩盖了氮利用率提高的有益效果。

著录项

  • 作者

    Patten, Doris Kathleen;

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  • 年度 1983
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  • 原文格式 PDF
  • 正文语种 en
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