Université de Toulouse, IMT Mines Albi, RAPSODEE CNRS UMR-5302, Jarlard, 81013, Albi CEDEX 09, France.
Centre for Water Resources Research, School of Civil Engineering, University College Dublin, Belfield, Dublin 4, Ireland.
Environ Sci Pollut Res Int. 2020 May;27(13):14863-14871. doi: 10.1007/s11356-020-08056-0. Epub 2020 Feb 14.
The unique geographical location of waterworks and wastewater treatment plant (WWTP) in Graulhet (France) profited the environmental resource integration and "Circular Economy." Alum sludge from a local waterworks was introduced to co-conditioning and dewatering with waste-activated sludge from a nearby WWTP to examine the role of the alum sludge in improving the dewaterability of the mixed sludge. Experiments demonstrated that the optimal mixing ratio was 1:1 (waste-activated sludge/alum sludge, v/v). Alum sludge has been shown to beneficially enhance mixed sludge dewaterability, by decreasing both the specific resistance to filtration (SRF) and the capillary suction time (CST). Moreover, the optimal polymer (Sueprfloc-492HMW) dose for the mixed sludge (mix ratio 1:1) was 200 mg/L, highlighting a huge savings (14 times) in polymer addition without alum sludge involvement. In addition, cost-effective analysis of its potential full-scale application has demonstrated that the initial investment could be returned in 11 years. The co-conditioning and dewatering strategy can be viewed as a "win-win" strategy for the Graulhet, France, water and wastewater industry. Graphical abstract.
法国格罗莱特(Graulhet)的自来水厂和污水处理厂(WWTP)独特的地理位置有利于环境资源整合和“循环经济”。当地自来水厂的铝污泥被引入与附近 WWTP 的废活性污泥进行共调质和脱水,以考察铝污泥在改善混合污泥脱水性能方面的作用。实验表明,最佳混合比为 1:1(废活性污泥/铝污泥,v/v)。铝污泥通过降低比过滤阻力(SRF)和毛细吸水时间(CST),有益地提高了混合污泥的脱水性能。此外,对于混合污泥(混合比为 1:1),最佳的聚合物(Sueprfloc-492HMW)用量为 200mg/L,在不使用铝污泥的情况下,聚合物用量节省了 14 倍。此外,对其潜在的全规模应用的成本效益分析表明,初始投资可以在 11 年内收回。共调质和脱水策略可以被视为法国格罗莱特的水和废水行业的“双赢”策略。