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首页> 外文期刊>Forests >Stem Biomass Production of Paulownia elongata × P. fortunei under Low Irrigation in a Semi-Arid Environment
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Stem Biomass Production of Paulownia elongata × P. fortunei under Low Irrigation in a Semi-Arid Environment

机译:半干旱环境下低灌条件下长泡桐×福寿螺的茎生物量生产

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In semi-arid regions, afforestation with fast-growing species cultured with low irrigation can be an effective approach for environmental protection. An experiment was conducted to evaluate the stem biomass production of Paulownia in a semi-arid climate and clay soils under contrasting low-irrigation and fertilization treatments. The stem biomass at the stand level was estimated by applying allometric equations fitted in sample resprouts and inventory data. The results show that biomass production improved when either irrigation or fertilizer was added, but the combination of a higher dose of irrigation and fertilization did not lead to the highest biomass production; thus water availability was the main factor controlling biomass production. Under the higher dose of irrigation, the absence of a fertilizer effect would be due in part to the fertile soil, which could supply sufficient nutrients for Paulownia growth at the higher level of soil moisture. The stem biomass estimated ranged from 2.14 to 4.50 t·ha−1 (lower irrigation dose without fertilization, and higher irrigation with fertilization). The greater production was similar to other studies in the Mediterranean area receiving more irrigation. Thus, this study permitted us to understand the potential of Paulownia to provide biomass in semi-arid environments with low irrigation due to water use restrictions.
机译:在半干旱地区,以快速灌溉的低树种养殖造林可以成为保护环境的有效方法。在低灌溉和施肥处理的对比下,进行了一项实验,以评估半干旱气候下泡桐和粘土土壤中茎生物量的产生。林分水平的茎生物量是通过应用适合样品新芽和库存数据的异速方程估算的。结果表明,无论是灌溉还是施肥,生物量产量均得到提高,但高剂量灌溉和施肥的结合并没有导致最高的生物量产量。因此,水的可用性是控制生物质生产的主要因素。在较高的灌溉剂量下,肥料的缺乏将部分归因于肥沃的土壤,这可以为较高的土壤湿度下的泡桐生长提供足够的养分。茎生物量估计为2.14至4.50 t·ha -1 (不施肥降低灌溉剂量,施肥增加灌溉)。产量增加与地中海地区接受更多灌溉的其他研究相似。因此,这项研究使我们了解了泡桐在半干旱环境中由于用水限制而在低干旱环境中提供生物质的潜力。

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