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首页> 外文期刊>Soil Science >Freeze-thaw cycles increase near-surface aggregate stability.
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Freeze-thaw cycles increase near-surface aggregate stability.

机译:冻融循环提高了近地表骨料的稳定性。

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There is evidence that one to three freeze-thaw cycles (FTCs) increased soil aggregate stability when measured by wet sieving field-moist aggregates. The stability of aggregates vapour-wetted to field capacity from the Ap horizons of four soils (loam, silty clay, silty clay loam, and silt loam) was measured after undergoing either zero, one, two, or four FTCs, and the number of FTCs at which aggregate stability would be greatest for each soil was determined. Moist soil was packed to a dry bulk density of 1.15 t/m3 by tapping it into 28-mm-diameter, 50-mm-tall brass cylinders. Each cylinder was then sealed in a polyethylene bag and inserted into a polystyrene foam tray. The soil in each cylinder was frozen convectively at -5 鳦 for 48 h and then thawed at +6 鳦 for 48 h for each FTC. Aggregate stability increased with the first one to two FTCs but changed little thereafter. Trend analysis showed that aggregate stability would be greatest after two or three FTCs. When averaged across the four soils, FTCs stabilized aggregates more at 0 to 15 mm than at 15 to 30 mm. Near the surface of wet soils, two or three FTCs may be beneficial rather than detrimental to soil structure.
机译:有证据表明,通过湿筛分现场潮湿的骨料进行测量时,一到三个冻融循环(FTC)可以提高土壤骨料的稳定性。在经历了零,一,二或四次FTC之后,测量了四种土壤(壤土,粉质粘土,粉质粘土壤土和粉质壤土)的Ap水平上被湿润的聚集体对田间持水量的稳定性。确定了每种土壤的总稳定性最大的FTC。将潮湿的土壤拍入直径为28毫米,高为50毫米的黄铜圆筒中,使其堆积成的干堆积密度为1.15吨/立方米。然后将每个圆筒密封在聚乙烯袋中,并插入聚苯乙烯泡沫托盘中。将每个圆筒中的土壤在-5℃对流冷冻48小时,然后将每个FTC在+6℃解冻48小时。总体稳定性随着第一个到两个FTC的增加而增加,但此后变化不大。趋势分析显示,经过两个或三个FTC,总体稳定性最大。当在四种土壤中平均时,FTC稳定的聚集体在0到15 mm处比在15到30 mm处稳定。在潮湿土壤表面附近,两个或三个FTC可能是有益的,而不是不利于土壤结构。

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