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Hydrothermal solidification of inorganic waste materials

机译:无机废料的水热固化

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To create an environmently friendly community, the authors have investigated the recycling technology of inorganic, wastes to make high performance building materials and the stabilization technology of toxic heavy metals by using hydrothermal treatment. The inorganic waste materials used were bottom ash and fly ash from incinerated municipal waste, incinerated ash from sewage sludge, concrete waste, and construction sludge. These waste were mixed with Ca(OH)/sub 2/ and autoclaved for 6 h at 180/spl deg/C under saturated steam pressure. Except for the specimen by using incinerated ash from sewage sludge, the formation of tobermorite (Ca/sub 5/(Si/sub 6/O/sub 18/H/sub 2/)/spl middot/4H/sub 2/O) and hydrogarnet (Ca/sub 3/Al/sub 2/(SiO/sub 4/)(OH)/sub 8/) were observed. The flexural strength of the specimens varied from 3.2 to 16.2 MPa with the bulk density of 1200 to 1550 kg/m/sup 3/. The higher SiO/sub 2/ content and the finer particle size gave the higher strength. The amount of dissolved heavy metal (Pb) was decreased to 1/40 after autoclaving, suggesting the possibility of the heavy metal fixation by hydrothermal treatment. In addition, hydrothermally solidified specimens using incinerated ash from sewage sludge and construction sludge had 1.5 times of higher self humidity controlling property than the ordinal wood.
机译:为了创建一个环境友好的社区,作者研究了无机物,废料的回收技术,以制造高性能建材,以及通过水热处理的有毒重金属稳定化技术。所使用的无机废料为焚烧的城市垃圾中的底灰和飞灰,污水污泥,混凝土废物和建筑污泥中的焚烧灰。将这些废物与Ca(OH)/ sub 2 /混合,并在饱和蒸汽压力下于180 / spl deg / C高压灭菌6小时。除了使用污水污泥中的焚烧灰渣做标本以外,还形成了雪铁矿(Ca / sub 5 /(Si / sub 6 / O / sub 18 / H / sub 2 /)/ spl middot / 4H / sub 2 / O)观察到水石榴石(Ca / sub 3 / Al / sub 2 /(SiO / sub 4 /)(OH)/ sub 8 /)。样品的弯曲强度在3.2至16.2 MPa之间变化,堆积密度为1200至1550 kg / m / sup 3 /。 SiO / sub 2 /含量越高,粒径越细,强度越高。高压灭菌后,重金属(Pb)的溶解量减少至1/40,这表明通过水热处理可以固定重金属。另外,使用污水污泥和建筑污泥中的焚烧灰进行水热固化的标本,其自控湿度性能是普通木材的1.5倍。

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