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Comparison of Raw Dairy Manure Slurry and Anaerobically Digested Slurry as N Sources for Grass Forage Production

机译:生乳制粪浆料与厌氧消化浆料的比较作为草牧草生产的态度

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摘要

We conducted a 3-year field study to determine how raw dairy slurry and anaerobically digested slurry (dairy slurry and food waste) applied via broadcast and subsurface deposition to reed canarygrass (Phalaris arundinacea) affected forage biomass, N uptake, apparent nitrogen recovery (ANR), and soil nitrate concentrations relative to urea. Annual N applications ranged from 600 kg N ha−1 in 2009 to 300 g N ha−1 in 2011. Forage yield and N uptake were similar across slurry treatments. Soil nitrate concentrations were greatest at the beginning of the fall leaching season, and did not differ among slurry treatments or application methods. Urea-fertilized plots had the highest soil nitrate concentrations but did not consistently have greatest forage biomass. ANR for the slurry treatments ranged from 35 to 70% when calculations were based on ammonium-N concentration, compared with 31 to 65% for urea. Slurry ANR calculated on a total N basis was lower (15 to 40%) due to lower availability of the organic N in the slurries. No consistent differences in soil microbial biomass or other biological indicators were observed. Anaerobically digested slurry supported equal forage production and similar N use efficiency when compared to raw dairy slurry.
机译:我们进行了一项三年的实地研究,以确定Reed Canarygrass(Phalaris Arundinacea)受影响的腐殖生物量,N吸收,表观氮气恢复(ANR的饲料)乳制品浆料和厌氧消化浆料(乳制品浆料和食物废物)。 )和土壤硝酸盐浓度相对于尿素。 2009年的每年N型应用范围从2009年的600公斤,2011年300 g N-1。浆料治疗中的饲料产量和N吸收相似。在秋季浸出季节开始,土壤硝酸盐浓度最大,并且在淤浆处理或施用方法之间没有差异。尿素受精地块具有最高的土壤硝酸盐浓度,但并未始终如一地具有最大的饲料生物质。当计算基于氨基浓度的计算时,浆料处理的ANR为35%至70%,而尿素的31至65%。由于浆料中有机氮的可用性降低,总N基础计算的浆液ANR较低(15至40%)。观察到土壤微生物量或其他生物指标中没有一致的差异。与原料乳制品浆料相比,厌氧消化浆料支持相等的腐败生产和类似的N使用效率。

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