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Chemical and Physical Properties of Soil Amended with Pecan Wood Chips.

机译:山核桃木屑改良土壤的化学和物理性质。

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The pruning wood of pecan [Carya illinoinensis (Wangenh.) K. Koch] is often burned. Chipping and soil incorporation of pruning wood is becoming more popular as a result of environmental constraints on burning. The objective of our research was to determine how pecan wood incorporation into soil affects the soil chemical and physical properties. Pecan wood chips were incorporated into a silty clay soil at rates of 0, 4484, 8968, 13,452, and 17,936 kgp"ha-1 in Summer 2002, 2003, and 2004. Some plots received nitrogen at a rate of 0, 15.2, 30.5, 45.7, and 61.0 kgp"ha-1 to adjust the C : N ratio of trimmings to 30 : 1. Ammonium sulfate, as a nitrogen source to balance the C : N ratio of pecan wood chips, reduced soil pH. However, the wood chip amendments alone did not reduce soil pH. Soil salinity (as determined by electrical conductivity) and bulk density were unaffected by wood chip incorporation regardless of application rate or number of applications. Incorporation of pecan chips had little effect on soil moisture content, but the soil had an inherently high waterholding capacity. Pecan wood chip incorporation significantly increased soil organic matter content and aggregate stability, particularly at the higher application rates and with repeated amendment. The incorporation of pecan pruning wood into the soil appears to improve soil tilth and aggregation while providing growers with an environmentally acceptable means of disposal.
机译:山核桃[Carly illinoinensis(Wangenh。)K. Koch]的修剪木材经常被燃烧。由于燃烧的环境限制,修整木材的碎屑和土壤掺入变得越来越普遍。我们研究的目的是确定山核桃木掺入土壤如何影响土壤的化学和物理性质。在2002、2003和2004年夏季,山核桃木屑以0、4484、8968、13452和17936 kgp·ha-1的速率掺入粉质粘土中。一些地块以0、15.2、30.5的速率接受氮,45.7和61.0 kgp“ ha-1的比例将修整料的C:N比例调整为30:1。硫酸铵作为氮源,可平衡山核桃木片的C:N比例,降低土壤pH值。但是,仅木片的改良剂并不能降低土壤的pH值。土壤盐分(由电导率确定)和堆积密度不受木屑掺入的影响,无论施用量或施用次数如何。山核桃碎片的掺入对土壤含水量影响很小,但土壤本身具有较高的保水能力。山核桃木屑的掺入显着增加了土壤有机质含量和团聚体的稳定性,特别是在较高的施用量和反复改良下。将山核桃修剪的木材掺入土壤似乎可以改善土壤的倾倒性和聚集性,同时为种植者提供环境可接受的处置方法。

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