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Characterization of ammonium sorption by beef cattle feedyard manure.

机译:肉牛饲养场粪肥对铵的吸附特性。

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Ammonia (NH3) emissions from beef cattle feedyards represent a loss of agronomically important N and can potentially affect the environment. Sorption of ammonium (NH4+) and NH3 by mineral and organic solids decreases the proportion of free, aqueous ammoniacal N, which reduces volatilization potential. In the U.S., the High Plains region of Texas is subject to arid conditions with widely fluctuating temperatures. Furthermore, feedyard manure contains little soil and has high dry matter (DM) content; therefore, it is unclear if sorption parameters determined for soils or liquid manure systems are valid for feedyards. Our objectives were to use batch equilibration experiments to characterize NH4+ sorption by two feedyard manures. Kinetic and isotherm studies with (NH4)2SO4/0.01 M CaCl2 solutions revealed that feedyard manures could sorb up to 227 cmol kg-1 NH4+-N and that sorption was rapid and linearly related to NH4+ concentration. The Freundlich partitioning coefficient (Kp) for NH4+ sorption averaged 13.3 L kg-1. From 58% to 96% of the sorbed NH4+ was readily desorbable with 0.01 M CaCl2, and up to 81% was volatilized as NH3 when manures were air-dried. Temperature influenced sorption, with 112% more NH4+ sorption at 4 degrees C than at 22 degrees C. These results indicate that NH4+ sorption by manure on feedyard surfaces may temporarily reduce NH3 volatilization, particularly during winter.
机译:肉牛饲养场排放的氨(NH 3 )代表了农业上重要的N的流失,并可能影响环境。矿物和有机固体对铵(NH 4 + )和NH 3 的吸附降低了游离氨水N的比例,从而减少了挥发潜在。在美国,得克萨斯州的高平原地区处于干旱条件下,温度波动很大。此外,饲草粪便中的土壤很少,且干物质含量高。因此,尚不清楚为土壤或液体肥料系统确定的吸附参数是否对饲料场有效。我们的目标是使用分批平衡实验来表征两个饲料场粪便对NH 4 + 的吸附。用(NH 4 2 SO 4 /0.01 M CaCl 2 溶液进行动力学和等温线研究表明,饲草肥能够吸附高达227 cmol kg -1 NH 4 + -N,并且吸附与NH 4 < / sub> + 浓度。 NH 4 + 吸附的Freundlich分配系数(Kp)平均为13.3 L kg -1 。吸附的NH 4 + 的58%至96%易于被0.01 M CaCl 2 吸附,并且高达81%的NH4挥发粪肥风干后,NH 3 。温度影响吸附,在4°C下的NH 4 + +吸附量比在22°C下高112%。这些结果表明NH 4 <粪便对粪便表面的sup> + 吸附可能会暂时减少NH 3 的挥发,特别是在冬季。

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