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Study of soil aggregate breakdown dynamics under low dispersive ultrasonic energies with sedimentation and X-ray attenuation

机译:低分散超声能量下含沉降和X射线衰减的土壤团聚体破坏动力学研究

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It has been increasingly recognized that soil organic matter stabilization is strongly controlled by physical binding within soil aggregates. It is therefore essential to measure soil aggregate stability reliably over a wide range of disruptive energies and different aggregate sizes. To this end, we tested high-accuracy ultrasonic dispersion in combination with subsequent sedimentation and X-ray attenuation. Three arable topsoils (notillage) from Central Europe were subjected to ultrasound at four different specific energy levels: 0.5, 6.7, 100 and 500 J cm(-3), and the resulting suspensions were analyzed for aggregate size distribution by wet sieving (2 000-63 mu m) and sedimentation/X-ray attenuation (63-2 mu m). The combination of wet sieving and sedimentation technique allowed for a continuous analysis, at high resolution, of soil aggregate breakdown dynamics after defined energy inputs. Our results show that aggregate size distribution strongly varied with sonication energy input and soil type. The strongest effects were observed in the range of low specific energies ( 10 J cm(-3)), which previous studies have largely neglected. This shows that low ultrasonic energies are required to capture the full range of aggregate stability and release of soil organic matter upon aggregate breakdown.
机译:人们日益认识到,土壤有机质的稳定受到土壤团聚体中物理结合的强烈控制。因此,必须在各种破坏性能量和不同骨料尺寸下可靠地测量土壤骨料的稳定性。为此,我们测试了高精度的超声分散以及随后的沉积和X射线衰减。对三种来自中欧的耕作表土(耕作)分别在四种不同的比能水平下进行了超声处理:0.5、6.7、100和500 J cm(-3),并通过湿筛分分析了所得悬浮液的骨料粒径分布(2000 -63微米)和沉降/ X射线衰减(63-2微米)。湿法筛分和沉降技术相结合,可以在确定的能量输入之后,以高分辨率对土壤团聚体的破坏动力学进行连续分析。我们的结果表明,骨料粒度分布随超声能量输入和土壤类型的变化而变化很大。在低比能范围(<10 J cm(-3))中观察到最强的作用,以前的研究在很大程度上忽略了这一点。这表明需要低超声能量来捕获整个范围的团聚体稳定性,并在团聚体分解时释放土壤有机质。

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