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首页> 外文期刊>Soil & Tillage Research >Controlled traffic farming increased crop yield, root growth, and nitrogen supply at two organic vegetable farms
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Controlled traffic farming increased crop yield, root growth, and nitrogen supply at two organic vegetable farms

机译:受控交通养殖在两个有机蔬菜农场增加作物产量,根本生长和氮气供应

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Increased farm machinery weight in agricultural production results in soil compaction. Controlled traffic farming (CTF) restricts traffic to permanent lanes, thereby creating traffic free beds for crop production. Field experiments were conducted at two organic vegetable farms in Denmark, on a sandy loam (2013-2016) and on coarse sand (2013-2015) to investigate CTF effects compared with random traffic farming (RTF) on vegetable yield, root growth, and soil mineral nitrogen (N). Root growth was measured using minirhizotrons. White cabbage, potato, and beetroot yield increased by 27%, 70% and 42%, respectively, in CTF compared with RTF in 2015 and winter squash indicated a yield increase of 43% on sandy loam in 2016. White cabbage (2015) and potato, beetroot and winter squash (2016) grew 2-25 times more roots and beetroot grew deeper roots under CTF compared with RTF on sandy loam in 2016. On coarse sandy soil, beetroot root frequency was 1.4 times greater under CTF than under RTF and beetroot roots grew deeper than 1.5 m under both treatments in 2015. Soil mineral N and potential net N mineralization were equal between treatments or higher in CTF by 2-41 kg ha(-1) and 11 mg kg(-1) 35 days(-1), respectively, indicating N supply was maintained or increased in this system. Despite the variability in crop and root growth responses to traffic between years and crops, the effects were always equal or positive for CTF following treatment implementation. Therefore, our results encourage the use of CTF for organic vegetable production under temperate conditions.
机译:农业生产中的农业机械重量增加导致土壤压实。受控交通农业(CTF)限制了永久车道的流量,从而为作物生产创建了交通自由床。在丹麦的两个有机蔬菜农场进行现场实验,在丹麦(2013-2016)和粗砂(2013-2015)上进行粗沙(2013-2015),以研究与蔬菜产量,根本生长的随机交通养殖(RTF)相比进行CTF效应土壤矿物氮(N)。使用Minirhizotrons测量根生长。白菜,土豆和甜菜根产量分别在2015年与RTF相比,CTF分别增加了27%,70%和42%,并在冬季南瓜显示了2016年沙质壤土的产量增加43%。白菜(2015年)和土豆,甜菜根和冬季南瓜(2016年)在2016年砂质壤土上的RTF比较下来2-25倍以上的根和甜菜根在CTF上增长更深。在粗砂土中,甜菜根根频率在CTF下比RTF低1.4倍。甜菜根根在2015年两种治疗中增长大于1.5米。土壤矿物质N和潜在净矿化在CTF的治疗或更高之间的矿物质和潜在的净矿化在2-41kg ha(-1)和11mg kg(-1)35天(分别在该系统中保持或增加了N供应的-1)。尽管农作物与作物之间的交通作物和根系生长反应变异,但在治疗实施之后,效果始终与CTF相等或阳性。因此,我们的结果鼓励在温带条件下使用CTF进行有机植物生产。

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