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Pilot study of thermal alkaline pretreatment of waste activated sludge: Seasonal effects on anaerobic digestion and impact on dewaterability and refractory COD

机译:废物活性污泥热碱预处理的试验研究:对厌氧消化的季节性影响以及对脱水性和耐火鳕鱼的影响

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Thermal alkaline pretreatment (TAP) of waste activate sludge (WAS) was carried out in pilot-scale over a year to investigate its seasonal effects on anaerobic digestion and its impact on dewaterability, sludge liquor quality and formation of soluble refractory COD (sCOD(ref)). Temperature of TAP was set at 65-70 degrees C and pH was increased by initial dosing of sodium hydroxide [NaOH] (50% w/w, 1-2.5 mL/L sludge) as alkali agent following 2-2.5 h reaction time. Pilot digesters were fed with primary sludge (PS) and hydrolyzed WAS (HWAS) and compared to a reference digester fed with PS and untreated WAS. Biogas yield increase due to TAP of WAS showed a sinusoidal trend throughout the year with maximum in summer (+42%), minimum in winter (+3%) and average of +20%, indicating a strong seasonal effect on TAP efficiency. Ammonium [NH4+ - N], orthophosphate [PO43--P] and sulphate [SO42-] in sludge liquor increased by 34.6%, 17.0% and 21.6% with TAP, respectively. Centrifugation tests showed no significant difference in dewaterability of both digestates with respect to total solids of sludge cake. Normalized capillary suction time of digestate increased due to TAP, indicating a lower capability for water release. Furthermore, detected sCOD(ref) after batch aerobic biodegradation tests showed an increase of 30.3% with TAP. Hence, implementation of TAP of WAS in full-scale will potentially lead to an increase of 0.8-1.1 mg/L of sCOD(ref) in effluent of six wastewater treatment plants (WWTP) in Berlin. In conclusion, TAP of WAS leads to increase in biogas production with a slighter negative impact on effluent COD quality than high-temperature thermal hydrolysis. (C) 2020 Elsevier Ltd. All rights reserved.
机译:废物活化污泥(AS)的热碱预处理(TAP)以试验规模进行了一年以上,探讨其对厌氧消化的季节性影响及其对脱水性,污泥液质质量和可溶性难治性鳕鱼的形成(SCOD(参考)))。在2-2.5h反应后,在2-2.5h反应后,在65-70℃下设定为65-70℃,并通过初始给药氢氧化钠[NaOH](50%w / w,1-2.5ml / l污泥)作为碱性试剂增加pH。将导液消化器用初级污泥(PS)喂食,并水解是(HWA),并与用PS和未处理的参考消化器进行比较。由于Tap的沼气产量增加在夏季(+ 42%)最多,冬季最低(+ 3%)和平均值+ 20%的全年趋势增加,表明了对水龙头效率的强烈季节性影响。污泥液中的铵[NH4 + - N],正磷酸盐[PO43-P]和硫酸盐[SO42-]分别随着TAP的水龙头增加了34.6%,17.0%和21.6%。离心试验表明,除了污泥饼的总固体上,消化的脱水性没有显着差异。由于水龙头,消化的归一化毛细管吸入时间增加,表明水释放的较低能力。此外,检测到的SCOD(REF)在批量氧生物降解试验后显示出30.3%的水龙头。因此,实施柏林六废水处理厂(WWTP)的流出物中可能导致全规模以满量程的敲击率可能导致0.8-1.1毫克/升SCOD(REF)。总之,随着沼气产量的氨基次,对污水鳕鱼质量较小的沼气产生的增加而不是高温热水解。 (c)2020 elestvier有限公司保留所有权利。

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