College of Environmental Science and Engineering, Nankai University, Tianjin 300071, PR China.
College of Environmental Science and Engineering, Nankai University, Tianjin 300071, PR China.
Bioresour Technol. 2015 Dec;197:7-14. doi: 10.1016/j.biortech.2015.08.053. Epub 2015 Aug 22.
Keep composting matrix in continuous collision and friction under a relatively high-temperature can significantly accelerate the progress of composting. A bioreactor was designed according to the novel process. Using this technology, organic fertilizer could be produced within 96h. The electric conductivity (EC) and pH value reached to a stable value of 2.35mS/cm and 7.7 after 96h of fermentation. The total carbon/total nitrogen (TC/TN) and dissolved carbon/dissolved nitrogen (DC/DN) ratio was decrease from 27.3 and 36.2 to 17.4 and 7.6 respectively. In contrast, it needed 24days to achieve the similar result in traditional static composting (TSC). Compost particles with different size were analyzed to explore the rapid degradation mechanism of food waste. The evidence of anaerobic fermentation was firstly discovered in aerobic composting.
保持堆肥基质在相对较高温度下连续碰撞和摩擦,可以显著加速堆肥进程。根据新工艺设计了一种生物反应器。使用这项技术,有机肥可以在 96 小时内生产出来。发酵 96 小时后,电导率(EC)和 pH 值分别达到 2.35mS/cm 和 7.7 的稳定值。总碳/总氮(TC/TN)和溶解碳/溶解氮(DC/DN)的比例从 27.3 和 36.2 分别下降到 17.4 和 7.6。相比之下,在传统的静态堆肥(TSC)中需要 24 天才能达到类似的结果。分析了不同粒径的堆肥颗粒,以探索厨余垃圾的快速降解机制。首次在好氧堆肥中发现了厌氧发酵的证据。