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Utilization of different waste proteins to create a novel PGPR-containing bio-organic fertilizer

机译:不同废蛋白的利用产生新型的含PGPR的生物有机肥料

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摘要

High-quality bio-organic fertilizers (BIOs) cannot be produced without the addition of some proteins, while many waste proteins are haphazardly disposed, causing serious environmental pollution. In this study, several waste proteins were used as additives to assist with the reproduction of the functional microbe ( Bacillus amyloliquefaciens SQR9) inoculated into matured composts to produce BIOs. An optimized composition of solid-state fermentation (SSF) raw materials was predicted by response surface methodology and experimental validation. The results showed that 7.61% (w/w, DW, the same below) rapeseed meal, 8.85% expanded feather meal, 6.47% dewatered blue algal sludge and 77.07% chicken compost resulted in maximum biomass of strain SQR-9 and the maximum amount of lipopeptides 7 days after SSF. Spectroscopy experiments showed that the inner material structural changes in the novel SSF differed from the control and the novel BIO had higher dissolved organic matter. This study offers a high value-added utilization of waste proteins for producing economical but high-quality BIO.
机译:在没有添加一些蛋白质的情况下,不能生产高质量的生物有机肥(BIOS),而许多废物蛋白质随之而来,造成严重的环境污染。在这项研究中,几种废蛋白被用作添加剂,以帮助接种在成熟的堆肥中的功能性微生物(Bacillus淀粉氨酰胺SQR9)的繁殖以产生BIOS。通过响应面方法和实验验证预测了固态发酵(SSF)原料的优化组合物。结果表明,7.61%(W / W,DW,相同的)菜籽粕,8.85%扩张羽粉,6.47%脱水蓝藻污泥,77.07%鸡堆肥导致菌株SQR-9的最大生物质和最大数量SSF后7天7天的脂肽。光谱实验表明,新型SSF的内部材料结构变化与对照不同,新的生物有较高的溶解有机物。本研究提供了对生产经济而高质量的生物的废蛋白的高附加值利用。

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