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Optimization of the thermal conditions for processing hatchery waste eggs as meal for feed

机译:优化孵化场废鸡蛋作为饲料粉加工的热条件

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摘要

The purpose of this study was to optimize the thermal conditions for processing hatchery waste eggs (HWE) into rich feedstuff with lower electricity consumption by using response surface methodology. In the study, the effects of processing temperature and time on HWE meal (HWEM) quality and production were evaluated. As the results indicate, optimization was obtained when the processing lasted for 23 h at the fixed temperature of 65 degrees C, resulting in higher protein digestibility in vitro (89.6%) and DM (88.5%) content of HWEM with lower electricity consumption (82.4 kWh/60 kg of HWE). No significant differences existed between the quality values predicted by mathematical formulae and those obtained through practical analyses in DM (87 vs. 88.5%), CP (39.2 vs. 38.3%), protein digestibility in vitro (90.7 vs. 89.6%), and electricity consumed (80.8 vs. 82.4 kWh/60 kg of HWE). Furthermore, the product derived from the optimized processing conditions had better biosecurity; Salmonella spp. were not found and Escherichia coli levels were substantially reduced (from 10(7) to 10(4) cfu/g). In summary, HWEM of superior quality can be produced when the processing conditions optimized in the current research are utilized.
机译:这项研究的目的是通过使用响应面方法,优化将孵化场废鸡蛋(HWE)加工成具有丰富电力消耗的饲料的热条件。在研究中,评估了加工温度和时间对HWE粕(HWEM)品质和生产的影响。结果表明,在65°C的固定温度下将加工过程持续23h可获得最佳效果,从而使HWEM的体外蛋白质消化率更高(89.6%)和DM(88.5%)含量,耗电量更低(82.4)千瓦时/ 60千克HWE)。通过数学公式预测的质量值与通过实际分析获得的质量值之间在DM(87 vs. 88.5%),CP(39.2 vs. 38.3%),体外蛋白质消化率(90.7 vs. 89.6%)和耗电量(80.8 vs. 82.4 kWh / 60 kg HWE)。此外,通过优化加工条件得到的产品具有更好的生物安全性;沙门氏菌没有发现,大肠杆菌水平大大降低(从10(7)降至10(4)cfu / g)。总而言之,利用当前研究中优化的加工条件,可以生产出高质量的HWEM。

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