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首页> 外文期刊>The Journal of Agricultural Science >Fertilizer value and greenhouse gas emissions from solid fraction pig slurry compost pellets
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Fertilizer value and greenhouse gas emissions from solid fraction pig slurry compost pellets

机译:固体级粒浆料堆肥颗粒的肥料价值和温室气体排放

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摘要

Conversion of pig slurry to pellets is a desirable fertilizer option for farmers who want to mitigate environmental pollution from slurry accumulation. The goals of the current investigation were to determine the fertilizer properties of pig slurry solid fraction (SF) pellets and to assess its potential to enhance soil properties in order to reduce ammonia (NH3) volatilization and greenhouse gas (GHG) emissions. Various parameters influence SF-based pellet fertilizer effectiveness: bulking agent use during composting, pellet diameter sizing and soil application type (superficially or incorporated into the soil). Two composts from the same pig slurry SF obtained from a screw press separator were prepared: pig SF compost without a bulking agent (SSFC) and pig SF compost with wood chips as the bulking agent (wood chip compost (WCC)). For each compost type, pellets of two different diameters (6 and 8 mm) were produced. A mesocosm experiment, conducted with maize plants, was used to test the fertilizer value of the considered pellets. In total, three compost fertilizers 鈥?SSFC, WCC and nitrogen: phosphorus: potassium mineral fertilizer 15 : 15 : 15, plus one unfertilized control treatment 鈥?were applied at the same N rate (equivalent to 200 kg/ha) using two different methods (surface and soil incorporation). After 65 days, above-ground biomass, roots and soil samples were collected and analysed. Subsequently, a second mesocosm study was undertaken to measure NH3 and GHG emissions released from pellet fertilization. Ammonia volatilization was determined immediately after pellet application, while carbon dioxide (CO2), methane (CH4) and nitrous oxide (N2O) emissions were monitored for 57 days. Study results indicated that both pellet types were effective slow-release fertilizers for maize. Additionally, three actions seemed to make the nutrients contained in pig SF compost pellets more available to plants: addition of a bulking agent before composting, use of small diameter pellets and soil incorporation of the fertilizer.
机译:猪浆料转化为颗粒是一种理想的肥料选择,用于减轻泥浆积累的环境污染。目前调查的目标是确定猪浆料固体级分(SF)颗粒的肥料特性,并评估其增强土壤性质的潜力,以减少氨(NH3)挥发和温室气体(GHG)排放。各种参数影响基于SF的颗粒肥料效果:在堆肥期间使用​​填充剂,颗粒直径施胶和土壤施用类型(表面上或掺入土壤中)。从螺旋压力机分离器获得的相同猪浆液SF的两个堆肥制备:猪SF堆肥,没有膨胀剂(SSFC)和猪SF堆肥,用木屑作为膨化剂(木屑堆肥(WCC))。对于每个堆肥类型,产生两种不同直径(6和8mm)的颗粒。用玉米植物进行的Mesocosm实验,用于测试所考虑的颗粒的肥料值。总共三种堆肥肥料鈥?SSFC,WCC和氮:磷:矿物肥料15:15:15,加上一个未受精的对照处理鈥?使用两种不同的N次(相当于200kg / ha)施用方法(表面和土壤掺入)。在65天后,收集并分析了地上生物质,根和土壤样品。随后,进行了第二个中核科学研究,以测量从颗粒施肥中释放的NH 3和温室气体排放。在颗粒施加后立即测定氨挥发,而在57天监测二氧化碳(CO 2),甲烷(CH 4)和氧化氮(N 2 O)排放。研究结果表明,两种颗粒类型都是玉米的有效缓释肥料。此外,三种动作似乎使猪SF堆肥颗粒中含有的营养物质更具可用于植物:在堆肥之前添加填充剂,使用小直径粒料和土壤掺入肥料。

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  • 来源
    《The Journal of Agricultural Science》 |2017年第10期|共13页
  • 作者单位

    Institute for Agricultural and Earth Moving Machines (IMAMOTER) Italian National Research Council (CNR) 鈥?Strada delle Cacce;

    Forestry and Food Sciences University of Turin;

    Forestry and Food Sciences University of Turin;

    Forestry and Food Sciences University of Turin;

    Forestry and Food Sciences University of Turin;

    Forestry and Food Sciences University of Turin;

    Institute for Agricultural and Earth Moving Machines (IMAMOTER) Italian National Research Council (CNR) 鈥?Strada delle Cacce;

    Centro de Edafologia y Biologia Aplicada del Segura;

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  • 中图分类 农业科学;
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