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Valorization of pellets from municipal WWTP sludge in lightweight clay ceramics

机译:利用轻质粘土陶瓷对市政污水处理厂污泥中的颗粒进行增值

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A direct result of the growing number of municipal wastewater-treatment plants (WWTPs) has been an increase in the generation of large amounts of sewage sludge that requires environmentally acceptable final destination. To decrease the volume of sludge, a common technique is drying the sludge at a low temperature in rotary kilns. The result of this process is a granulated material consisting of dehydrated sludge pellets. After this treatment, this pelletized material becomes easier to manipulate, but it also becomes a more toxic waste, containing dangerous substances, mostly of the lipid type. At its final stage, this material is usually incinerated, used as a comburent material, used as an agricultural fertilizer, or used in the cement industry. Each application has its own problems and requires remediation measures from the safety and environmental viewpoints. In this study, we looked beyond these possible applications and analyzed the transformation of sewage sludge through a ceramization process into a material similar to expanded clays; we subsequently explored its uses in the building industry or in the agriculture industry, among others. Both the properties of the product material and the production method were characterized, and an environmental analysis was conducted. The new, lightweight material had a microstructure with open porosity and low thermal conductivity. Environmental characterization such as the leaching test revealed that undetectable amounts of hazardous metals from the sludge were present in the leachate after the sludge went through a thermal treatment, despite their initial presence (with the exception of vanadium, which could pose some restrictions on some of the proposed uses for the final product). Toxicity tests also showed negative results. The study of gaseous emissions during production revealed emissions factors similar to those during the production of conventional clay ceramics, although with higher organic emissions. As for conventional clay ceramics, industrial production would require the implementation of some type of air-depuration system. The results showed that the ceramization of sludge pellets is a promising valorization technique worth considering from both the economic and technological perspectives.
机译:市政污水处理厂(WWTP)数量增加的直接结果是,大量污水污泥的产生增加了,这需要环境可接受的最终目的地。为了减少污泥的体积,常用的技术是在回转窑中在低温下干燥污泥。该过程的结果是由脱水污泥颗粒组成的颗粒状材料。经过这种处理后,这种粒状材料变得更易于操作,但它也变成了毒性更大的废物,其中含有危险物质,大部分为脂质类。在最后阶段,通常将这种材料焚烧,用作助燃材料,用作农业肥料或用于水泥工业。每种应用都有其自身的问题,并且从安全和环境的角度要求采取补救措施。在这项研究中,我们超越了这些可能的应用,并分析了通过陶瓷化过程将污泥转化为类似于膨胀粘土的材料。随后,我们探索了其在建筑业或农业中的用途。表征了产品材料的性质和生产方法,并进行了环境分析。这种新型的轻质材料的微结构具有开孔性和低导热性。环境特征(例如浸出试验)表明,污泥经过热处理后,尽管最初存在(但钒除外),但仍无法检测到污泥中有害金属的量(钒除外,钒可能会对某些最终产品的建议用途)。毒性测试也显示阴性结果。对生产过程中气体排放的研究表明,尽管有机排放量较高,但排放因子与传统粘土陶瓷生产过程中的排放因子相似。对于常规的粘土陶瓷,工业生产将需要实施某种类型的空气净化系统。结果表明,污泥颗粒的陶瓷化是一种有前途的增值技术,值得从经济和技术的角度来考虑。

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  • 来源
    《Waste Management》 |2011年第6期|p.1372-1380|共9页
  • 作者单位

    Departament de Fisica i Enginyeria Nuclear, Universitat Poiitecnica de Camlunya. Pere Serra 1-15, 08193 Sant Cugat del Valles, Barcelona, Spain;

    Departament de Fisica i Enginyeria Nuclear, Universitat Poiitecnica de Camlunya. Pere Serra 1-15, 08193 Sant Cugat del Valles, Barcelona, Spain;

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