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Compressibility and water availability in Albaqualf soils under different deployment times in no-tillage

机译:免耕条件下不同部署时间下阿尔巴夸尔夫土壤的可压缩性和水利用度

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The southern Brazilian lowlands have been historically used for flooded rice cultivation. Over time, heavy machinery and intensive tillage practices have resulted in soil structure disruption, soil compaction, higher production costs and lower agricultural profitability. This study aimed to evaluate the effect of different deployment times of no-tillage (NT). Soil properties including bulk density (BD), compression index (CI), preconsolidation pressure (σp), bulk density at preconsolidation pressure (BDσp), degree of compactness (DC), soil water retention curve (SWRC), plant available water (PAW) and total organic carbon (TOC) content were evaluated using a 30-yr non-cultivated field (NC), adjacent to the experimental plots as a control. The BD, σp, BDσp and DC decreased in response to NT adoption time while the soil water holding capacity increased, allowing for higher PAW. Results from this study demonstrated the positive effects of NT on the overall quality of soils.
机译:从历史上看,巴西南部的低地曾被用来种植水稻。随着时间的流逝,重型机械和密集的耕作做法导致土壤结构破坏,土壤压实,生产成本上升和农业盈利能力下降。这项研究旨在评估免耕(NT)的不同部署时间的影响。土壤特性包括堆积密度(BD),压缩指数(CI),预固结压力(σp),预固结压力下的堆积密度(BDσp),压实度(DC),土壤保水曲线(SWRC),植物有效水(PAW) )和总有机碳(TOC)含量是使用30年非耕地(NC)进行评估的,该区域邻近实验田地作为对照。 BD,σp,BDσp和DC响应于NT的吸收时间而降低,而土壤持水量增加,从而允许更高的PAW。这项研究的结果证明了NT对土壤整体质量的积极影响。

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