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Double effects of biochar in affecting the macropore system of paddy soils identified by high-resolution X-ray tomography

机译:生物炭对高分辨率X射线层析成像技术鉴定的水稻土大孔系统的双重影响

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Biochars are widely used to improve soil macropore structures. However, the size-dependent effects of biochars in affecting macropore structure still remain unclear. In this study, the modification of soil macropore structure following biochar addition was investigated by high-resolution X-ray tomography (CT) and advanced data analytical methods. Quantification of soil macropore structure (>52 μm) was based on the intact soil cores (5 cm in diameter and 7 cm in height) collected from biochar-amended paddy soil. The treatments were: (a) control (CK), (b) rice straw biochar (RSB), (c) corn straw biochar (CSB), and (d) bamboo biochar (BB). The application rate of biochar was 25 Mg ha~(-1) (w/w). Results revealed that the biochars affected the soil macropores through both "occupying effect" and "expansion effect". The "occupying effect" means that the biochar particles occupy the original pore space of the soil and reduce the soil porosity, while the "expansion effect" means that the biochar particles produce additional pore space in the soil matrix and increase the soil porosity. For all the biochar treatments in our study, the "occupying effect" was dominated. Therefore, the connected- and isolated porosity of biochar-treated soils were significantly lower than those of CK. The size-dependent effects of biochar in modifying soil macropores were observed. For RSB treatment, the "expansion effect" predominated at the size of <1200 μm and >1800 μm, while both the "occupying effect" and "expansion effect" were observed at the size of 1200-1800 μm. For CSB and BB treatments, the "expansion effect" predominate only at the size of 600-1200 μm; whereas both the "occupying effect" and "expansion effect" were observed at the size of <600 μm and >1800 μm. Our results indicated that the effects of biochar on soil macroporosity were dependent on the combined effects the "occupying effect" and "expansion effect". In conclusion, all the biochar types in this study have adverse effects in increasing the soil macroporosity.
机译:生物炭被广泛用于改善土壤大孔结构。然而,生物炭在影响大孔结构中的尺寸依赖性作用仍然不清楚。在这项研究中,通过高分辨率X射线断层扫描(CT)和先进的数据分析方法研究了添加生物炭后土壤大孔结构的变化。对土壤大孔结构(> 52μm)的定量是基于从生物炭改良过的水稻土中收集的完整土壤核(直径为5 cm,高度为7 cm)得出的。处理为:(a)对照(CK),(b)稻草生物炭(RSB),(c)玉米秸秆生物炭(CSB)和(d)竹生物炭(BB)。生物炭的施用量为25 Mg ha·(-1)(w / w)。结果表明,生物炭通过“占用效应”和“膨胀效应”影响土壤大孔。 “占据效应”是指生物炭颗粒占据了土壤的原始孔隙空间并降低了土壤孔隙度,而“膨胀效应”是指生物炭颗粒在土壤基质中产生了额外的孔隙空间并增加了土壤孔隙率。对于我们研究中的所有生物炭处理,“占用效应”是主要的。因此,生物炭处理过的土壤的连通和隔离孔隙率明显低于CK。观察到了生物炭在改变土壤大孔中的尺寸依赖性作用。对于RSB处理,在<1200μm和> 1800μm的尺寸下,“膨胀效应”占主导,而在1200-1800μm的尺寸上同时观察到“占据效应”和“膨胀效应”。对于CSB和BB处理,“膨胀效应”仅在600-1200μm时占优势;而在<600μm和> 1800μm的尺寸下都观察到“占据效应”和“膨胀效应”。我们的结果表明,生物炭对土壤大孔隙度的影响取决于“占用效应”和“膨胀效应”的综合效应。总之,本研究中的所有生物炭类型均对增加土壤大孔隙度有不利影响。

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