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首页> 外文期刊>Journal of Agricultural Science >Impact of Heat Damaged Corn Gluten Meal as Fertilizer on Forage Production During Winter and Summer Seasons and Soil Characteristics
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Impact of Heat Damaged Corn Gluten Meal as Fertilizer on Forage Production During Winter and Summer Seasons and Soil Characteristics

机译:热受损玉米麸质膳食作为肥料在冬季和夏季季节和土壤特征中产生肥料的肥料

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摘要

Corn gluten meal (CGM) has been used as a supplement for livestock feeding due to its high concentration of digestible nitrogen (N) compounds. Heat damaged CGM (HDCGM), which is not suitable for livestock feeding, may still have value as an organic fertilizer. Objective of the study was to evaluate the impacts of non-feed grade HDCGM on forage production from annual cool and warm season grasses and soil characteristics. Pre-plant incorporated HDCGM at 3 Mg/ha was compared with 4.2 Mg/ha poultry litter (POTL), and 160 kg/ha commercial N fertilizer (COMF), and zero fertilizer (ZERO) for production of the cool-season 'Prine' annual ryegrass (Lolium multiflorum), and the warm-season 'Greentreat' sorghum × sudangrass (SS) hybrid (Sorghum bicolor). The treatments were repeated at the same site on December 3, 2010 (planted annual ryegrass), May 26, 2011 (planted SS hybrid), October 24, 2011 (planted annual ryegrass) and May 18, 2012 (planted SS hybrid). The HDCGM had 68% more N concentration than POTL, while its P, K, Mg, and Ca were less than half in POTL. The residual N concentration in buried HDCGM and POTL increased in a similar pattern with time in soil. The HDCGM produced less dry matter (DM) of annual ryegrass and SS hybrid than POTL; however, the differences between the two treatments were not statistically significant. All treatments produced more DM in the second than first year. After two years of field test, soil receiving HDCGM contained higher soil organic matter (OM) and N than receiving POTL. Although not as beneficial as POTL for DM production, HDCGM showed potential value as a slow release fertilizer to improve DM production and soil characteristics.
机译:由于其高浓度的可消化氮(N)化合物,玉米麸质膳食(CGM)已被用作牲畜饲养的补充剂。热受损的CGM(HDCGM),不适合牲畜饲料,可能仍然具有有机肥料的价值。该研究的目的是评估非饲料级HDCGM对年度凉爽和温暖季草和土壤特征的饲养生产的影响。与4.2mg / ha家禽垃圾(Potl)和160kg / ha商业N肥料(COMF)和零肥(零)进行比较3mg /公顷的HDCGM,为凉爽季节的普林省生产'年度Ryegrass(Lolium Multiflorum),以及暖季'Greentreat'高粱×Sudangrass(SS)杂种(SORGHUM双色)。 2011年12月3日(种植年度黑麦草),2011年10月26日(种植年度黑麦草)和2012年5月18日(种植SS杂交),在同一地点重复该治疗方法。 HDCGM比Potl更多的N浓度为68%,而其P,K,Mg和Ca小于Potl的一半。埋地HDCGM和POTL中的残留N浓度在土壤中具有类似的模式。 HDCGM产生的年度黑麦草和SS混合的干物质(DM)比Potl;然而,两种治疗之间的差异在统计学上没有统计学意义。所有治疗方法在第二年内生产更多DM。经过两年的田间试验,土壤接受HDCGM含有较高的土壤有机物质(OM)和N比接受Potl。虽然与DM生产的POTL不那么有益,但HDCGM显示出潜在的价值作为缓慢释放肥料,以改善DM生产和土壤特性。

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