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Temperature control strategy to enhance the activity of yeast inoculated into compost raw material for accelerated composting

机译:温度控制策略可提高接种到堆肥原料中的酵母活性,从而加速堆肥

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摘要

The effects of inoculating the mesophilic yeast Pichia kudriavzevii RB1, which is able to degrade organic acids, on organic matter degradation in composting were elucidated. When model food waste with high carbohydrate content (C/N=22.3) was used, fluctuation in the inoculated yeast cell density was observed, as well as fluctuation in the composting temperature until day 5 when the temperature rose to 60 ℃, which is lethal for the yeast. After the decrease in yeast, acetic acid accumulated to levels as high as 20 mg/g-ds in the composting material and vigorous organic matter degradation was inhibited. However, by maintaining the temperature at 40 ℃ for 2 days during the heating phase in the early stage of composting, both the organic acids originally contained in the raw material and acetic acid produced during the heating phase were degraded by the yeast. The concentration of acetic acid was kept at a relatively low level (10.1 mg/g-ds at the highest), thereby promoting the degradation of organic matter by other microorganisms and accelerating the composting process. These results indicate that temperature control enhances the effects of microbial inoculation into composts.
机译:阐明了接种能够降解有机酸的嗜温酵母毕赤酵母毕赤酵母RB1对堆肥过程中有机物降解的影响。当使用高碳水化合物含量(C / N = 22.3)的模型食物垃圾时,观察到接种酵母细胞密度的波动以及堆肥温度的波动,直到温度升至60℃的第5天,这是致命的。酵母酵母菌减少后,乙酸在堆肥材料中积累至高达20 mg / g-ds的水平,并且抑制了剧烈的有机物降解。但是,通过在堆肥初期的加热阶段中将温度保持在40℃2天,最初包含在原料中的有机酸和在加热阶段产生的乙酸都被酵母降解。乙酸的浓度保持在较低水平(最高为10.1 mg / g-ds),从而促进了其他微生物对有机物的降解并加速了堆肥过程。这些结果表明温度控制增强了微生物接种到堆肥中的效果。

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