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Reducing soil compaction of Tennessee Valley soils in conservation tillage systems

机译:减少田纳西州谷土壤的土壤压实在保护耕作系统中

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Inadequate rooting systems from excessive soil compaction have prevented farmers in the Tennessee Valley Region of North Alabama from adopting conservation tillage systems. Cotton (Gossypium hirsutum L.) yields declined on many farms when conventional tillage systems were not used and strict no-till systems were adopted. Experiments were initiated in 1994 to develop conservation tillage systems that incorporated in-row tillage and rye (Secale cereale L.) cover crops as methods of maintaining surface cover and alleviating extreme soil compaction conditions. Depth of in-row tillage (7" or 13") and timing of tillage (fall or spring) were factors also investigated for this experiment. Core index measurements taken in the spring and fall of 1997 prior to tillage and bulk density measurements taken in fall of 1998 immediately after harvest were used to examine changes in soil condition resulting from several years of experimentation. The results showed reduced cone index and bulk density from either shallow or deep in-row tillage performed in the spring or fall of the year. Although fall measurements in no-till plots showed no effect of cover crops, spring measurements of cone index were found to be reduced substantially by the use of cover crops, most likely due to increased soil moisture. Therefore, reduced soil compaction beneath the row to depths adequate to sustain proper root growth was achieved by either shallow in-row tillage and/or cover crops.
机译:来自过度土壤压实的生根系统不足,防止了北阿拉巴马州田纳西州谷地区的农民采用保护耕作系统。棉花(Gossypium hirsutum L.)产量在未使用常规耕作系统时,许多农场下降,并采用严格的耕作系统。实验于1994年开始,以开发掺入连续耕作和黑麦(Secale Cereale L.)覆盖作物作为维持表面覆盖和减轻极端土壤压实条件的方法的保护耕作系统。行成行耕作(7“或13”)和耕作的时间(秋季或弹簧)是该实验也研究的因素。 1997年春季和秋季在1998年秋季和散装密度测量开始于1998年秋季的核心指数测量,在收获后立即进行了几年的实验所产生的土壤状况的变化。结果表明,在年春季或秋季在春季或秋季进行的浅或深层耕作中,锥形指数和散装密度降低。虽然在无直的图中的秋季测量显示覆盖作物的影响,但是发现锥形指数的弹簧测量结果基本上通过使用覆盖作物而减少,最可能是由于土壤水分增加。因此,通过浅线耕作和/或覆盖作物实现了排行以深度以维持适当的根生长的深度降低。

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