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The Use of Vegetable- and Bio- Waste Composts: Effects on Forage Maize Production and Soil Properties

机译:使用蔬菜和生物废物堆肥:对饲料玉米生产和土壤性质的影响

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Biodegradable municipal and farm waste compost application to agricultural land is increasing following the implementation of regulations which restrict the disposal of organic rich materials in landfills. Compost application, however, needs to ensuresustainable agricultural development A field study was conducted on sandy loam soil to assess the agronomic benefit and the environmental risk from nitrate leaching following biowaste (containing kitchen, garden, paper and cardboard waste) and vegetablewaste compost use in agriculture. The two composts were applied to forage maize production at three rates, ranging on average from 90 to 325 kg total N ha'1 yf1. Mineral N fertilizer and non-amended soil was used for comparison. Forage maize response tocompost application and mineral fertilization was limited in both years of application, as the soil itself met the N requirements of the crop, through the mineralization of soil inherent N. The monitoring of soil mineral N suggested that vegetable wastecompost (C: N of 10.5) resulted in similar amounts of plant available N with mineral fertilizer N. Biowaste compost with C: N of 20 resulted in limited mineralization of compost N. In soils with high N mineralization potential applying biowaste compostresulted in lower risk of nitrate leaching. This study provided evidence to suggest that biowaste and vegetable waste compost use in agriculture can allow for the partial substitution of mineral fertilizer Nand K. Following the repeated compost application in high rates, however, potential salinity or sodicity problems may rise.
机译:在实施条例的规定下,可生物降解的市政和农场废物堆肥申请在垃圾填埋场处理有机丰富材料处置的规定之后正在增加。然而,堆肥申请需要予以消除农业发展,在桑迪壤土土壤中进行了田间研究,以评估生物空间(含厨房,花园,纸板废物)和蔬菜废物堆肥在农业中的硝酸盐浸出的农艺效益和环境风险。两种堆肥以三次速率饲养玉米产量,平均范围为90至325公斤,总N HA'1 YF1。矿物N肥料和未修改的土壤用于比较。饲料玉米反应的兴趣申请和矿物施肥在两年内有限,因为土壤本身达到了作物的N要求,通过土壤的矿化固有的N。土壤矿物质的监测建议蔬菜废除(C:N.为10.5)导致类似的植物植物含量N. Biowasty堆肥,C:n为20,导致堆肥N的有限的矿化在具有高N矿化潜力的土壤中,施加Biowasty Compostresulted较低的硝酸盐浸出的风险。本研究提供了证据表明,农业中的Biowasty和蔬菜废物堆肥可以允许矿物肥料NAND K的部分取代。然而,在高速率的重复堆肥施用之后,潜在的盐度或善良性问题可能会上升。

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