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A dual-reactor anaerobic system for complete treatment of a food processing waste

机译:双反应器厌氧系统,可完全处理食品加工废料

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Anaerobic technologies are commonly employed for the initial treatment of food processing wastewater; however, they are not typically considered capable of treating wastewater to meet final discharge requirements. To assess the potential of anaerobic technologies to meet discharge requirements, the performance of two dual-reactor high-rate anaerobic systems fed with confectionery wastewater was investigated. The primary reactors in the system were operated at constant hydraulic retention times of 1.6 d. The secondary reactors were operated with hydraulic retention times of 0.8, 1.6, and 3.2 d. The secondary reactors, which were both downflow anaerobic filters, achieved maximum chemical oxygen demand (COD) removal rates when operated at a hydraulic retention time of 1.6 d. The brick-filled downflow anaerobic filter and the plastic-ring-filled downflow anaerobic filter produced average effluent five-day biochemical oxygen demand concentrations of 26 mg l{sup}(-1) (COD = 80 mg l{sup}(-1)) and 36 mg l{sup}(-1) (COD = 112 mg l{sup}(-1)), respectively. To examine the enhanced stability provided by the sequential reactor approach, the dual-reactor system was overloaded at 3.5 times the normal COD concentration (8000 mg l{sup}(-1)) for an 8 h period. The secondary reactors were able to accommodate the increased organic loading emitted from the primary reactors, maintaining an overall removal efficiency of >94%. The results suggest that full anaerobic treatment of readily degradable food waste streams may be realistic, and that a sequential reactor approach significantly enhances overall process stability.
机译:厌氧技术通常用于食品加工废水的初始处理。但是,通常不认为它们能够处理废水以满足最终排放要求。为了评估厌氧技术满足排放要求的潜力,研究了两个以糖果废水为原料的双反应器高速率厌氧系统的性能。系统中的主要反应器在恒定的水力停留时间1.6 d下运行。二级反应器的水力停留时间为0.8、1.6和3.2 d。二级反应器均为下流厌氧过滤器,在水力停留时间为1.6 d时运行时达到了最大的化学需氧量(COD)去除率。填充砖的向下流式厌氧滤池和填充塑料环的向下流式厌氧滤池产生的五日生化需氧量平均浓度为26 mg l {sup}(-1)(COD = 80 mg l {sup}(-1 ))和36 mg l {sup}(-1)(COD = 112 mg l {sup}(-1))。为了检查由顺序反应器方法提供的增强的稳定性,双反应器系统在正常COD浓度(8000 mg l {sup}(-1))的3.5倍下过载8小时。二级反应器能够适应一级反应器发出的增加的有机负荷,并保持整体去除效率> 94%。结果表明,易于降解的食物垃圾流的完全厌氧处理可能是现实的,并且顺序反应器方法可显着提高整体过程的稳定性。

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