Department of Civil Engineering, University of Ottawa, Ottawa, Canada.
Waste Manag Res. 2011 Feb;29(2):208-18. doi: 10.1177/0734242X10362705. Epub 2010 Apr 29.
Results from an investigation of the effect of high temperature and pressure microwave (MW) pre-treatment of source-separated kitchen waste (SSKW) are presented. MW pre-treatment to a temperature of 175 °C (1 min holding time) at a heating rate of 7.9 °C min(-1), enhanced SSKW solubilization by 40% in comparison with control; yielding higher soluble chemical oxygen demand (sCOD), total sugars and proteins concentrations in the soluble phase (<45 μm). Batch biochemical methane potential tests (BMP) at 33 °C, indicated an enhanced anaerobic biodegradability compared to non-pretreated samples. However, the comparative analysis of semi-continuous anaerobic digesters performance for pre-treated and non-treated SSKW, indicated that MW pre-treatment was successful at solids retention times (SRT) higher than 25 days, showing not only a robust performance in terms of volatile solids (VS) and total chemical oxygen demand (TCOD) removals (6 and 5% gain, respectively, in comparison with control). Effluent dewaterability was also enhanced by MW pre-treatment, showing a 20% increase for the best operation conditions. The study of biomass activity revealed the production of difficult to degrade compounds during pre-treatment conditions and also served as a tool to monitor reactor performance deterioration.
介绍了高温高压微波(MW)预处理源分离厨房垃圾(SSKW)效果的研究结果。MW 预处理温度为 175°C(保持时间 1 分钟),升温速率为 7.9°C min(-1),与对照相比,SSKW 的溶解率提高了 40%,可溶解化学需氧量(sCOD)、总糖和蛋白质浓度在可溶性相中更高(<45μm)。在 33°C 下进行批式生物甲烷潜力测试(BMP),与未经预处理的样品相比,表现出更高的厌氧生物降解性。然而,对预处理和未预处理 SSKW 的半连续厌氧消化器性能进行比较分析表明,MW 预处理在固体停留时间(SRT)高于 25 天时是成功的,不仅在挥发性固体(VS)和总化学需氧量(TCOD)去除方面表现出稳健的性能(与对照相比分别增加了 6%和 5%)。MW 预处理还提高了出水的脱水性能,在最佳运行条件下增加了 20%。对生物质活性的研究表明,在预处理条件下产生了难降解的化合物,同时也可作为监测反应器性能恶化的工具。