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Technical Note:An Investigation into the Fertilizer Potential of Slaughterhouse Cattle Paunch

机译:技术说明:屠宰场牛脚仓肥料潜力的调查

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In Australia, recycling of paunch waste to farmland has been suggested as a cost-effective and practicable environmental option, but little is known about its agronomic value. Experimental work was undertaken to assess potential risks due to weed seedcontamination, determine the agronomic response of ryegrass (Lolium perenne L.) to soil incorporation of paunch, and investigate short-term greenhouse gas (GHG) emissions. Five types of paunch with compost ages between 2 and 16 weeks were compared withurea (46% N) and applied at field equivalent rates of 0 (control), 150, and 300 kg ha'1 N. The risk of weed contamination from paunch applied to soil appeared to be negligible; however, techniques that enable seed viability to be determined may be required to fully discard such risk. Average dry matter yield with paunch was ~30% higher than untreated grass, but -35% lower than with urea. Dry matter yield in paunch-treated grass was between 2500 and 3250 kg ha'1 over five cuts conducted at 25-day intervals. Paunch N responses were between 1.12 and 3.25 kg DM kg1 N depending on compost age, but lower than with urea N (~6.5 kg DM kg1 N). Nitrogen use efficiency of paunch ranged between 3% and 20%, compared to about 35% with urea. Nitrogen fertilizer replacement value (NFRV) of paunch was highest in the 6-week-old compost (-60%) and ranged between 20% and 55% across all other organic materials. Short-term N2O emissions were similar (p> 0.05) with both mineral and organic amendments; however, CH4 emissionswere higher (p < 0.05) from paunch compared with urea-treated soil. Overall, there appears to be potential for paunch-derived products to be used as a source of C and nutrients in crop production. Industry quality specifications for compost are available, but they need to be expanded to incorporate guidelines relevant to paunch. There is a requirement for the value proposition to industry to be determined, including reduced cost ofpaunch disposal via gate fees.
机译:在澳大利亚,已被建议作为耕地的Paunch浪费作为一种成本效益和可行的环境选择,但对其农艺价值毫无疑问。实验工作是为了评估由于杂草种子化而评估潜在风险,确定Ryegrass(Lolium Perenne L.)的农艺响应,对土壤融合的土壤融合,并调查短期温室气体(GHG)排放。在2到16周之间的五种类型的堆肥(46%n)比较(46%n),并以50(对照),150和300kg Ha'1 n的现场等效率。杂草污染的风险施用土壤似乎可忽略不计;然而,可能需要能够确定要确定的种子存活率的技术来完全丢弃这种风险。平均干物质产量与未经治疗的草高〜30%,但比尿素低35%。在休眠处理的草地中的干物质产量在2500至3250kg Ha'1之间,在25天的间隔下进行的5个切口。 PAENCUPN N应答均取决于堆肥年龄的1.12和3.25kg dm kg1n,但低于尿素n(〜6.5kg dm kg1 n)。零下的氮气使用效率范围为3%至20%,与尿素相比约35%。在6周龄堆肥(-60%)中,PAUNCON的氮肥替代价值(NFRV)最高,在所有其他有机材料中的20%和55%之间。短期N2O排放相似(p> 0.05),矿物质和有机修正案然而,与尿素处理的土壤相比,CH4排放量高(P <0.05)。总体而言,似乎有可能用作作物生产中的C和营养素的源泉。适用于堆肥的行业质量规范,但需要扩展以合并与PAUNCH相关的指导方针。有要求确定工业的价值主张,包括通过大门费用降低驾驶处置成本。

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