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Enhancement of sludge electro-dewaterability during biological conditioning

机译:生物调节过程中污泥电脱水性的增强

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Electro-dewatering (EDW) is considered as one of the most promising dewatering technologies due to saving power consumption. In this study, the potential effects of anaerobic biological conditioning (BC) on sludge EDW treatments was investigated. The results showed that without any additives BC pretreatment of sludge enhanced EDW dewaterability and energy efficiency. At 35 °C BC for 3 days, the dry solids (DS) of sludge dewaterability limit could increase up to 49%, which corresponded to an increase of 13% of DS in dewatered sludge cake without BC pretreatment, and the dewatering time was shortened by 22%. There was an economic advantage saving in energy consumption of around 49.5% in the case of BC-EDW when the DS of sludge was up to 38%. Then, the mechanism of BC to improve EDW performance was studied. The principal component regression (PCR) analysis showed that the DS content of dewaterability limit mainly depended on the degradation of organic matter and the change of conductivity in sludge. Fourier transform infrared spectroscopy (FTIR), zeta potential and bound water in sludge were also determined in an attempt to explain the observed changes in sludge BC-EDW. It was indicated that the increase of negatively charged hydroxyl groups on the surface of sludge particles resulted in an increase of the absolute value of the zeta potential and significantly promoted EDW. The tightly bound EPS (TB-EPS) decreased and it loosened the bond between water or metal cations and sludge particles, and the bound water was also found to be released into free water in sludge during BC.
机译:电脱水(EDW)被认为是由于节省功耗导致最有前景的脱水技术之一。在该研究中,研究了厌氧生物调节(BC)对污泥EDW治疗的潜在影响。结果表明,没有任何添加剂BC预处理的污泥提高了EDW脱水性和能效。在35℃下3天,污泥脱水性的干燥固体(DS)可以增加高达49%,而没有BC预处理的脱水污泥蛋糕中的13%的DS增加,并且脱水时间缩短了脱水时间达到22%。在BC-EDW的情况下,能量消耗的经济优势率为约49.5%,当污泥的DS达到38%时。然后,研究了BC以提高EDW性能的机制。主要成分回归(PCR)分析表明,脱水性极限的DS含量主要取决于有机物质的降解及污泥中电导率的变化。傅里叶变换红外光谱(FTIR),溶剂中的Zeta电位和结合水也被确定了解释了污泥BC-EDW的观察到的变化。结果表明,污泥颗粒表面上的带负电荷的羟基的增加导致Zeta电位的绝对值的增加和显着促进EDW。紧密结合的EPS(TB-EP)降低,并且它松开了水或金属阳离子和污泥颗粒之间的粘合,并且还发现结合的水在BC期间在污泥中释放到空余水中。

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