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PERFORMANCE CHARACTERISTICS OF AEROBIC/ANOXIC SLUDGE DIGESTION AT ELEVATED TEMPERATURES

机译:高温下好氧/缺氧污泥消化的性能特征

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Laboratory experiments were conducted to study the performance of aerobic / anoxic digestion of mixed primary and waste activated sludge compared to aerobic digestion alone in terms of solids destruction, organic reduction, nutrient removal, filtrate quality and sludge dewaterability. The process performance was examined at different solids residence times ( 10 and 20 d), temperatures (20, 30 and 40 ℃) and anoxic cycle length (0, 8, 12 and 16 h). Both modes of operation gave comparable solids destruction results. The volatile suspended solids (VSS) reduction was affected by temperature with the highest VSS reduction reported at 30 ℃ (42.4%), while solid retention time (SRT) did not seem to affect the process as indicated by the percent VSS removal. Biodegradable solids destruction followed a first-order kinetic model. Aerobic/anoxic sludge digestion is advantageous to mere aerobic digestion since it improves sludge dewaterability and filtrate quality. Alternating aerobic/anoxic operation can conserve most of the influent alkalinity and maintain near neutral pH conditions over prolonged periods. Optimum process performance was observed at 20 ℃ with SRT of 10 days and anoxic cycle length of 8 hours.
机译:进行了实验室实验,从固体破坏,有机还原,养分去除,滤液质量和污泥脱水性方面,研究了混合活性污泥的好氧/缺氧消化与单独的好氧消化相比的性能。在不同的固体停留时间(10和20 d),温度(20、30和40℃)和缺氧循环长度(0、8、12和16 h)下检查了工艺性能。两种操作方式均给出了可比的固体破坏结果。挥发性悬浮固体(VSS)的还原受温度影响,在30℃时,VSS还原的最高记录为(42.4%),而固体保留时间(SRT)似乎不影响工艺,如VSS去除百分比所示。可生物降解的固体破坏遵循一阶动力学模型。好氧/缺氧污泥消化法优于单纯的好氧消化法,因为它改善了污泥的脱水性和滤液质量。有氧/缺氧交替操作可以节省大部分进水碱度,并长时间保持接近中性pH条件。在20℃的最佳加工性能下,SRT为10天,缺氧循环时间为8小时。

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