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首页> 外文期刊>Waste Management >A new strategy for co-composting dairy manure with rice straw: Addition of different inocula at three stages of composting
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A new strategy for co-composting dairy manure with rice straw: Addition of different inocula at three stages of composting

机译:稻草与粪肥共同堆肥的新策略:在堆肥的三个阶段添加不同的接种物

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摘要

In considering the impact of inoculation time and the characteristics of composting material and inocu-lants on the usefulness of inoculation, a new composting strategy has been proposed and studied, in which three inocula were inoculated at three stages of composting process respectively: inoculum A (Thermoactinomyces sp. GF1 and GF2) was inoculated before fermentation to increase or maintain high temperature of pile, inoculum B (Coprinus cinerea and Coprinus comatus) was inoculated after ther-mophilic phase to promote degradation of lignin, and inoculum C (Trichoderma harzianum and Rhizopus oryzae) was inoculated after 30-day fermentation to promote degradation of cellulose. The results showed that the inoculations could significantly enhance the temperature of pile and the degradation of lignocelluloses. When inocula A, B, and C were inoculated into pile, temperature increased from 25 ℃ to 65 ℃, from 33 ℃ to 39 ℃ and from 33 ℃ to 38 ℃ respectively and 35% lignin and 43% cellulose had been degraded in inoculated pile compared to the degradation of 15% lignin and 25% cellulose in control pile. As a result, the C/N ratio dropped more rapidly degraded in the inoculated pile (reached 20 after 33-day fermentation) than that in the control pile (reached 21.7 after 45-day fermentation). In addition, the volume loss in inoculated pile (76.5%) was higher than that in control pile (53.2%). The study, therefore, indicated that inoculating proper microorganisms at appropriate time improved the composting process and our new composting strategy would be propitious to the co-composting dairy manure with rice straw.
机译:考虑到接种时间,堆肥材料和接种物特性对接种效果的影响,提出并研究了一种新的堆肥策略,在堆肥过程的三个阶段分别接种了三种接种物:在发酵前接种嗜热放线菌(GF1和GF2)以提高或维持堆的高温,在嗜热相之后接种B菌(灰质op和鸡腿菇)以促进木质素的降解,并接种C菌(哈茨木霉和根霉)。发酵30天后接种米粉以促进纤维素降解。结果表明,接种可以显着提高绒头温度和木质纤维素的降解。将接种物A,B和C分别接种到堆中时,温度分别从25℃升高到65℃,从33℃升高到39℃,从33℃升高到38℃,并且接种后的堆中降解了35%的木质素和43%的纤维素。相比之下,对照堆中15%的木质素和25%的纤维素的降解。结果,接种后的堆(33天发酵后达到20)的C / N比降落比对照堆(45天发酵后达到21.7)下降得更快。另外,接种桩的体积损失(76.5%)高于对照桩的体积损失(53.2%)。因此,这项研究表明,在适当的时间接种适当的微生物可以改善堆肥过程,而我们的新堆肥策略将有利于将乳肥与稻草共同堆肥。

著录项

  • 来源
    《Waste Management 》 |2015年第6期| 38-43| 共6页
  • 作者单位

    Department of Environment Science and Engineering, Kunming University of Science and Technology, Yunnan 650500, China;

    Department of Environment Science and Engineering, Kunming University of Science and Technology, Yunnan 650500, China;

    Department of Environment Science and Engineering, Kunming University of Science and Technology, Yunnan 650500, China;

    Department of Environment Science and Engineering, Kunming University of Science and Technology, Yunnan 650500, China;

    Department of Environment Science and Engineering, Kunming University of Science and Technology, Yunnan 650500, China;

    Department of Environment Science and Engineering, Kunming University of Science and Technology, Yunnan 650500, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composting; Inoculation; Lignocelluloses; Dairy manure; Rice straw;

    机译:堆肥;接种;木质纤维素;乳牛粪;稻草;

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