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首页> 外文期刊>Scientia horticulturae >Effects of urea formaldehyde foam soil amendment on growth and response to transient water deficit stress of potted Flindersia schottiana saplings.
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Effects of urea formaldehyde foam soil amendment on growth and response to transient water deficit stress of potted Flindersia schottiana saplings.

机译:尿素甲醛泡沫土壤改良剂对盆栽茶树幼树生长和对短暂水分亏缺胁迫的响应。

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摘要

HydrocellTM is a urea formaldehyde resin foam (UFRF) product used as a soil amendment. It is proposed to improve the physicochemical properties (viz. water relations and aeration) of the plant root zone. Flindersia schottiana is a tree species used in the ornamental horticulture industry. This study investigated the potential of HydrocellTM [0-50% (v/v) incorporation rates] to promote growth of F. schottiana saplings during containerized nursery production in composted pine bark medium. The growth response of the potted saplings to transient water stress was also assessed. In addition, growth of F. schottiana saplings potted into three different soil types (sand, loam, clay) was assessed in the presence and absence of 30% (v/v) HydrocellTM. Under well-watered conditions in composted pine bark, HydrocellTM treatments enhanced sapling leaflet numbers, with 30% (v/v) being the most beneficial treatment. However, no consistent significant differential effects of incorporation rate on either plant height or stem diameter were recorded. Extended time to wilting upon withholding irrigation was achieved, with the optimum HydrocellTM rate being 10% (v/v). Among the three soil types compared, use of 30% (v/v) HydrocellTM resulted in improved growth of potted F. schottiana saplings in the sand and loam soils, but not in the clay soil. These findings suggest that the UFRF, HydrocellTM, holds limited promise as a soil amendment for trees in the nursery phase. Optimum incorporation rates (v/v) would need to be determined for individual media types, specific irrigation regimes and individual taxa.
机译:HydrocellTM是用作土壤改良剂的脲醛树脂泡沫(UFRF)产品。提出改善植物根区的理化特性(即水的关系和通气性)。 Flindersia schottiana是一种用于观赏园艺业的树种。这项研究调查了HydrocellTM [0-50%(v / v)的掺入率]在堆肥松树皮培养基中在容器化苗圃生产过程中促进Schottiana幼树生长的潜力。还评估了盆栽树苗对瞬时水分胁迫的生长响应。此外,在存在和不存在30%(v / v)HydrocellTM的情况下,评估了盆栽到三种不同土壤类型(沙,壤土,粘土)中的schottiana幼树的生长情况。在堆肥的松树皮中水分充足的条件下,HydrocellTM处理可提高幼树单张的数量,其中30%(v / v)是最有益的处理方法。但是,没有记录到掺入率对株高或茎直径的一致的显着差异影响。在不灌溉的情况下延长了枯萎的时间,最佳的HydrocellTM比例为10%(v / v)。在比较的三种土壤类型中,使用30%(v / v)的HydrocellTM可以改善沙质和壤土土壤中盆栽的schottiana幼树的生长,但在粘土土壤中则不然。这些发现表明,UFRF HydrocellTM作为苗圃期树木的土壤改良剂前景广阔。需要针对单个介质类型,特定灌溉制度和单个分类单元确定最佳掺入率(v / v)。

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