...
首页> 外文期刊>Current Organic Synthesis >Investigation on greenhouse gas emissions and compost dynamics during in-vessel co-composting of septage and mixed organic wastes
【24h】

Investigation on greenhouse gas emissions and compost dynamics during in-vessel co-composting of septage and mixed organic wastes

机译:封闭件和混合有机废物的船舶共堆积过程中温室气体排放和堆肥动力学的调查

获取原文
获取原文并翻译 | 示例
           

摘要

Greenhouse gas emission during composting process is inevitable, although it relies on natural degradation. A good balance on carbon-to-nitrogen (C/N) ratio as well as the aeration mode could significantly control the emissions. The C/N ratio can be adjusted using optimal feedstock composition. The aeration can be done using passive and active modes. In the present study, greenhouse gas emissions during in-vessel co-composting of septage and organic waste with active and passive modes of aeration were investigated. This fills the gap in implementing suitable septage treatment practice. Retention of high temperature (> 55 degrees C) for prolonged period ensured the compost hygienization. The active aeration system showed significantly lower greenhouse gas emission compared to that of passive system. The contribution of CH4 and N2O to the total greenhouse gas was estimated to be 2.5% and 7.4% in the passive and 0.9% and 3.8% in the active aeration modes while > 90% was CO2. The resulted compost maturity was confirmed by seed germination index (> 80%) and NO3-/NH4+ index (> 6.25). Our study highlight that in-vessel co-composting with active aeration is a suitable option to convert waste to a nutrient-rich fertilizer in a shorter period compared to other septage treatment options.
机译:堆肥过程中的温室气体排放是不可避免的,尽管它依赖于自然退化。碳 - 氮气(C / N)比的良好平衡以及曝气模式可以显着控制排放。可以使用最佳原料组合物调整C / N比。可以使用被动和有效模式来完成曝气。在本研究中,研究了血管内的温室气体排放在梧桐和有机废物中的载体和有机废物具有活跃和无源曝气方式。这填补了实施合适的Semage治疗实践方面的差距。长时间保留高温(> 55℃)确保钙静力量。与被动系统相比,主动通气系统显着降低温室气体排放。 CH4和N2O对总温室气体的贡献估计是无源的2.5%和7.4%,活性通气模式下的0.9%和3.8%,而> 90%是CO 2。通过种子萌发指数(> 80%)和NO 3-/ NH4 +指数(> 6.25)确认得到的堆肥成熟度。我们的研究突出了与活性通气的容器共堆叠是一种适当的选择,与其他Sematemation选择相比,在较短的时间内将废物转化为营养丰富的肥料。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号