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Water retention properties of maize stem residue as affected by particle size and decomposition in soil

机译:玉米干渣的水保留性能受粒径和土壤分解的影响

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The aim of this study was to investigate the effects of crop residue particle size and decomposition on water retention properties. Two pieces of 0.5 and 5 cm length of intact maize stem were chosen as experimental model. Maize particles were incubated in soil during 49 days at 24°C to alter the characteristics of stem particles by decomposition. Maximum water retention and residual humidity of particles were established by immersing the particles at three decomposition stages (undecomposed, decomposed after 14 days and after 49 days) for different duration of time until stable weight. We observed that 0.5 cm particles absorbed the same amount of water per g of residue as 5 cm particles. Decomposed particles absorbed more water than undecomposed ones for both particle sizes. Similar trends were obtained for residual water. We hypothesized that higher maximum water absorption and lower residual water retention in decomposed particles were due to an increase in residue porosity during decomposition.Particle size affected C mineralization with significant higher mineralization for 0.5 cm particles (29% of added C) than for 5 cm particles (21% of added C). The consequences of water retention properties on residue mulches are discussed in the contextof conservation agriculture.
机译:本研究的目的是探讨作物残留粒度和分解对水保留性能的影响。选择两块0.5和5cm的完整玉米茎作为实验模型。在24℃下在49天内在土壤中孵育玉米颗粒以通过分解改变茎颗粒的特征。通过将颗粒浸入三个分解阶段(未分解,在49天后和49天后,在49天后和在49天后进行分解)来建立最大水保持和残留湿度。我们观察到0.5cm颗粒每克残留物吸收与5cm颗粒相同的水量。分解颗粒吸收比两种颗粒尺寸的不确定的颗粒。获得类似的趋势用于残留水。我们假设较高的最大吸水性和较低的残留水保留在分解的颗粒中是由于分解过程中残余孔隙率的增加。分子尺寸影响C矿化,矿化显着较高的矿化0.5cm颗粒(添加C的29%)比5cm为5厘米颗粒(21%加入C)。在保护农业上讨论了水保留性质对残留物覆盖物的后果。

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