首页> 外文会议>International conference on engineering for waste and biomass valorisation >INNOVATIVE REUSE OF DEWATERED ALUM SLUDGE IN ENGINEERED WETLAND FOR WASTEWATER TREATMENT: A WIN-WIN TECHNIQUE
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INNOVATIVE REUSE OF DEWATERED ALUM SLUDGE IN ENGINEERED WETLAND FOR WASTEWATER TREATMENT: A WIN-WIN TECHNIQUE

机译:用于废水处理的工程湿地脱水玻璃污泥的创新再利用:双赢技术

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During the past six years at University College Dublin (UCD), Ireland immense efforts have been taken to study the reuse of dewatered alum sludge, a by-product from water purification industry, as a resourceful material in environmental and civil engineering. This paper reports a first pilot-scale study of the newly developed novel engineered wetland system, which employed alum sludge as main substrate for animal farm wastewater treatment in Ireland. The pilot-scale alum sludge-based wetland system consists of four identical wetland compartments in series designed with a total treatment surface area of 3.42 m2. Dewatered alum sludge collected from a local water treatment plant was used as a main substrate and the depth of total substrate in each compartment was kept 0.75 m. Hydraulic loadings of up to 0.29 m3/m2.d and organic loading of 150.8 g-BOD5/m2.d have been applied for the entire system. Results acquired from the field experiment revealed that the average removal efficiencies up to 94.6% for phosphorus, 73% for COD, 64% for TN and 70% for SS were achieved in the novel system. It has been observed that the system is capable for nitrification and denitrification. The reuse of dewatered alum sludge as main substrate discernibly enhanced the P immobilization. This novel wetland system proved to be efficient to treat high strength wastewater as compared with the conventional constructed wetland system. Notably, the system is a showcase to offer a novel reuse alternative for the alum sludge to compete with landfill, and this novel approach claims to be a win-win technique.
机译:在过去六年的大学学院(UCD),爱尔兰巨大的努力已经采取了脱水明矾污泥,副产品从水净化行业的重用,作为环境和土木工程的灵活性材料。本文报道了新开发的新型工程湿地系统的首次试验规模研究,该研究采用了爱尔兰动物农场废水的主要基材。基于试验规模的玻璃污泥的湿地系统由四个相同的湿地隔间组成,串联设计,具有3.42平方米的总处理面积。从局部水处理厂收集的脱水铝污泥用作主要基质,每个隔室中的总基材的深度保持0.75μm。为整个系统施加了高达0.29m3 / m2.d的液压载荷和150.8g-boD5 / m2.d的有机负载。从现场实验中获得的结果显示,在新系统中,在新系统中实现了高达94.6%的平均去除效率,对于COD,64%,对于SS而言,SS的70%。已经观察到该系统能够进行硝化和反硝化。将脱水铝污泥的再利用作为主基材的探明增强了P固定化。与传统的构造湿地系统相比,这部新型湿地系统有效地治疗高强度废水。值得注意的是,该系统是一个展示,为明矾污泥提供新的重复使用,以与垃圾填埋场竞争,并且这种新的方法声称是一种双赢的技术。

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