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Root induced changes of effective 1D hydraulic properties in a soil

机译:根引起土壤中有效一维水力特性的变化

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摘要

Roots are essential drivers of soil structure and pore formation. This study aimed at quantifying root induced changes of the pore size distribution (PSD). The focus was on the extent of clogging vs. formation of pores during active root growth. Parameters of Kosugi's lognormal PSD model were determined by inverse estimation in a column experiment with two cover crops (mustard, rye) and an unplanted control. Pore dynamics were described using a convection-dispersion like pore evolution model. Rooted treatments showed a wider range of pore radii with increasing volumes of large macropores > 500 mu m and micropores < 2.5 mu m, while fine macropores, mesopores and larger micropores decreased. The non-rooted control showed narrowing of the PSD and reduced porosity over all radius classes. The pore evolution model accurately described root induced changes, while structure degradation in the non-rooted control was not captured properly. Our study demonstrated significant short term root effects with heterogenization of the pore system as dominant process of root induced structure formation. Pore clogging is suggested as a partial cause for reduced pore volume. The important change in micro- and large macropores however indicates that multiple mechanic and biochemical processes are involved in root-pore interactions
机译:根是土壤结构和孔隙形成的重要驱动力。这项研究旨在量化根引起的孔径分布(PSD)的变化。重点是在活跃的根部生长过程中堵塞与毛孔形成的程度。 Kosugi的对数正态PSD模型的参数是通过在两个有盖作物(芥菜,黑麦)和未种植对照的列实验中通过逆估计来确定的。使用像对流扩散一样的孔隙演化模型描述了孔隙动力学。根处理表明,较大的> 500微米的大孔和<2.5微米的微孔的体积增加,孔半径范围更广,而细大孔,中孔和较大的微孔减少。无根对照在所有半径类别上均显示出PSD变窄和孔隙率降低。毛孔演化模型准确地描述了根引起的变化,而未生根对照中的结构退化未得到正确捕获。我们的研究表明,孔隙系统的异质化是根系诱导结构形成的主要过程,具有显着的短期根系效应。建议孔堵塞是导致孔体积减少的部分原因。微孔和大孔的重要变化表明,根孔相互作用涉及多种机械和生化过程

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