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Effects of Different Techniques of Green Manure on N Balance of the Rotation Tomato-Melon

机译:绿肥不同技术对轮作番茄甜瓜氮平衡的影响

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摘要

Alternative strategies for satisfy N requirements of crops are crucial for organic farming. This aim could be successfully reached by green manure tough it presents several uncertainties due to the need of coincidence of the biomass N mineralization and crop N uptake (Korsaeth, 2002). Besides, this microbially driven process is influenced by chemical composition of manure and pedoclimatic factors (Breland, 1994) that shows high variability among sites and years, thus increasing the uncertainties about N balance (Korsaeth, 2002). Changing times of green manure burying may regulate their chemical composition (Kankanen et al., 1998) and mineralization rate too (Yadvinder-Singh et al., 1992). Legume biomasses are quickly mineralized in Mediterranean area if buried at early stages, while burying at late stages or burying mixed crops (legume crops+cereals) may reduce mineralization rates, because of higher C/N ratio and lignin content. In this trial, different techniques of green manuring were compared with the aim to evaluate the effects on yield and N balance of an extensive horticultural cropping system.
机译:满足农作物氮需求的替代策略对于有机农业至关重要。绿肥可以成功地实现这一目标,因为由于需要生物质氮矿化和作物吸收氮的巧合而存在一些不确定性(Korsaeth,2002)。此外,这种微生物驱动的过程还受到肥料的化学成分和土壤气候因素的影响(Breland,1994),这些化学成分在地点和年份之间存在很大的变异性,因此增加了氮平衡的不确定性(Korsaeth,2002)。改变绿肥埋藏时间可能会调节其化学成分(Kankanen等,1998)和矿化速率(Yadvinder-Singh等,1992)。如果在早期埋葬,豆类生物量就会在地中海地区迅速矿化,而在后期埋葬或埋葬混合作物(豆类作物+谷物)则可能降低矿化速率,因为其C / N比和木质素含量较高。在该试验中,比较了不同的绿色耕作技术,以评估其对广泛的园艺作物种植系统的产量和氮平衡的影响。

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