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Properties, microstructure and leaching of sintered sewage sludge ash

机译:烧结污泥灰的性质,微观结构和浸出

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Sewage sludge incinerator ash has been compacted and fired at different temperatures to produce a range of sintered ceramic materials. The effects of sintering temperature and pressing pressure on density, water adsorption and shrinkage have been determined and the microstructure of material sintered at 1040 ℃ for 1 h characterised by X-ray diffraction (XRD) and scanning electron microscopy. Sintering produces potentially useful ceramic materials with maximum densities resulting from firing between 1000 and 1020 ℃. Density decreases as the firing temperature is further increased, due to a bloating effect associated with the formation of high volumes of approximately spherical pores. The major crystalline phases present in both as-received and sintered sewage sludge ash (SSA) ceramics are quartz (SiO)_2, the calcium magnesium phosphate mineral, whitlockite (Ca_7Mg_2P_6O_(24)) and hematite (Fe_2O_3). The as-received and sintered SSAs have low acid neutralisation capacities and leach significant fractions of Cu, Mn and Zn under acid conditions. Sintering SSA was found to reduce metal leaching for all metals analysed.
机译:污泥焚烧炉灰已压实并在不同温度下燃烧,以生产各种烧结陶瓷材料。通过X射线衍射(XRD)和扫描电子显微镜观察了烧结温度和压力对密度,吸水率和收缩率的影响,并在1040℃烧结1 h的显微组织。烧结会产生潜在有用的陶瓷材料,其最大密度是在1000至1020℃之间进行烧制而产生的。密度随着焙烧温度的进一步升高而降低,这归因于与大量近似球形孔的形成相关的膨胀效应。接收和烧结的污水污泥灰(SSA)陶瓷中均存在的主要晶相是石英(SiO)_2,钙镁磷酸盐矿物,辉锰矿(Ca_7Mg_2P_6O_(24))和赤铁矿(Fe_2O_3)。如此接收和烧结的SSA具有较低的酸中和能力,并且在酸性条件下会浸出大量的Cu,Mn和Zn。发现烧结的SSA减少了所分析的所有金属的金属浸出。

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