...
首页> 外文期刊>Waste Management >Influence of aeration rate and biodegradability fractionation on composting kinetics
【24h】

Influence of aeration rate and biodegradability fractionation on composting kinetics

机译:曝气速率和生物降解性分级对堆肥动力学的影响

获取原文
           

摘要

The influences of aeration rate and biodegradability fractionation on biodegradation kinetics during composting were studied. The first step was the design of a suitable lab-reactor that enabled the simulation of composting. The second step comprised of composting trials of six blends of sludge (originating from a food processing effluent) with wood chips using aeration rates of 1.69, 3.62, 3.25, 8.48, 11.98 and 16.63 L/h/kg DM of mixture. Biodegradation was evaluated by respiration measurements and from the analysis of the substrate (dry matter, organic matter, total carbon and chemical oxygen demand removal). Continuous measurement of oxygen consumption was coupled with the analysis of initial substrate and composted product for chemical oxygen demand (in the soluble and non-soluble fractions), which enabled an evaluation of the organic matter biodegradability. Oxygen requirements to remove both the easily and slowly biodegradable fractions were determined. Dividing the substrate into different parts according to biodegradability allowed explanation of the influence of aeration- rate on stabilization kinetics. Considering that the biodegradation kinetics were of the first-order, the kinetic constants of the easily and slowly biodegradable fractions were calculated as a function of temperature. The methodology presented here allows the comparison of organic wastes in terms of their content of easily and slowly biodegradable fractions and the respective biodegradation kinetics.
机译:研究了堆肥过程中曝气速率和生物降解性分级对生物降解动力学的影响。第一步是设计合适的实验室反应器,以模拟堆肥。第二步包括使用6.69、3.62、3.25、8.48、11.98和16.63 L / h / kg DM混合物的曝气速率对六种污泥(源自食品加工废水)与木屑的混合物进行堆肥试验。通过呼吸测量和底物分析(干物质,有机物质,总碳和化学需氧量去除)评估生物降解。连续测量耗氧量并分析初始底物和堆肥产品的化学需氧量(可溶和不可溶部分),从而能够评估有机物的生物降解性。确定了去除容易和缓慢可生物降解的馏分所需的氧气。根据生物降解性将基质分成不同的部分,可以解释充气速率对稳定动力学的影响。考虑到生物降解动力学是一级的,因此计算容易和缓慢生物降解级分的动力学常数是温度的函数。此处介绍的方法可以根据有机废物的易生物降解部分和缓慢生物降解部分的含量以及相应的生物降解动力学进行比较。

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