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首页> 外文期刊>Ciência e Agrotecnologia >Soil compaction caused by harvest and logging operations in eucalyptus forests in coarse-textured soils from northeastern Brazil
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Soil compaction caused by harvest and logging operations in eucalyptus forests in coarse-textured soils from northeastern Brazil

机译:巴西东北部粗纹理土壤中桉树林中收获和伐木作业造成的土壤压实

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Planted forests occupy more than 6.5 million ha in Brazil, where harvest and logging operations are performed with increasingly heavier machinery, increasing the risk of soil compaction. Soil compaction can be avoided if soil load bearing capacity is not exceeded, what makes it important to assess both the soil strength and the impact of different operations. The aim of this study was to evaluate the load bearing capacity of some coarse textured soils (two Hapludult and one Haplorthod) in two soil horizons (BA and B), from northeastern Brazil; and to assess the impact of harvest and logging operations performed with harvester and forwarder. Although the Haplorthod presented higher load bearing capacity in both the BA horizon (for the whole moisture range) and the B horizon (for higher water contents), it suffered the greatest soil compaction. Traffic with the harvester resulted in soil compaction in both the BA and the B horizons, but the increase in bulk density was higher on the later, reaching 18.7% in the Haplorthod. The forwarder traffic intensity and the presence of plant residue cover significantly affected the occurrence of soil compaction. In the BA horizon, the increase in soil bulk density for different forwarder traffic intensities was 3 passes ~ 6 passes < 12 passes ~ 16 passes. The increase in bulk density was higher in the Haplorthod, reaching 32% after 16 forwarder passes over bare soil. Significant linear regressions were obtained from the number of forwarder passes and the increase in bulk density.
机译:在巴西,人工林占地超过650万公顷,那里的采伐和伐木作业使用越来越重的机械进行,从而增加了土壤压实的风险。如果不超过土壤承载力,则可以避免土壤压实,因此评估土壤强度和不同操作的影响非常重要。本研究的目的是评估巴西东北部两个土壤层(BA和B)中一些粗糙的质地土壤(两个Hapludult和一个Haplorthod)的承载能力;并评估使用收割机和货运代理进行的收割和伐木作业的影响。尽管Haplorthod在BA视野(对于整个湿度范围)和B视野(对于更高的水分含量)中都表现出较高的承载能力,但其土壤压实度最大。收割机的运输导致BA和B层的土壤都被压实,但后期的堆积密度增加更高,在Haplorthod达到18.7%。货运代理的运输强度和植物残渣覆盖物的存在显着影响了土壤压实的发生。在BA范围内,不同货运量下的土壤容重增加为3遍〜6遍<12遍〜16遍。 Haplorthod的堆积密度增加更高,在16个集运机经过裸土后达到了32%。从货代数量和堆积密度的增加获得了显着的线性回归。

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