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Utilization of Zeolitic Waste in Alkali-Activated Biomass Bottom Ash Blends

机译:利用碱活性生物质底灰混合物中的沸石废物

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摘要

This study aims to investigate the effects of ammonium-bearing zeolitic waste (FCC) on alkali-activated biomass bottom ash (BBA). FCC was obtained from the oil-cracking process in petroleum plants. In this study, two types of production waste were used: biomass bottom ash and ammonium-bearing zeolitic waste. These binary alkali-activated FCC/BBA blends were investigated using X-ray diffraction (XRD), Fourier transform infrared (FTIR) and scanning electron microscopy (SEM) methods. The compressive strength of the hardened samples was evaluated. The results show that the samples made from alkali-activated BBA biomass bottom ash had low (8.5 MPa) compressive strength, which could be explained with low reactive BBA and insufficient quantities of silicon and aluminum compounds. The reactivity of BBA was improved with incorporating zeolitic waste as an aluminosilicate material. This zeolitic waste was first used for ammonium sorption; then, it was incorporated in alkali-activated samples. Additional amounts of hydrated products formed, such as calcium silicate hydrate, calcium aluminum silicate hydrate and calcium sodium aluminum silicate hydrate. The silicon and aluminum compound, which varied in zeolitic waste, changed the mineral composition and microstructure of alkali-activated binder systems. NH Cl, which was incorporated in the zeolitic waste, did not negatively affect the compressive strength of the alkali-activated BBA samples. This investigation proved that waste materials can be reused by producing alkali-activated binders.
机译:本研究旨在探讨含铵沸石废物(FCC)对碱活性生物质底灰(BBA)的影响。 FCC是从石油植物的油裂过程中获得的。在这项研究中,使用了两种类型的生产废物:生物质底灰和含铵沸石废物。使用X射线衍射(XRD),傅里叶变换红外(FTIR)和扫描电子显微镜(SEM)方法研究了这些二元碱活化的FCC / BBA共混物。评价硬化样品的抗压强度。结果表明,由碱活化的BBA生物质底灰制备的样品具有低(8.5MPa)的抗压强度,其可以用低反应性BBA和不充分的硅和铝化合物来解释。通过将沸石废物作为硅铝酸盐材料改善BBA的反应性。该沸石废物首先用于铵吸附;然后,将其掺入碱性活性样品中。形成的额外的水合产物,如硅酸钙水合物,硅酸铝水合物和铝硅酸钙水合物。在沸石废物中变化的硅和铝化合物改变了碱性活化粘合剂体系的矿物成分和微观结构。掺入沸石废物中的NH CL不会对碱活化的BBA样品的抗压强度产生负面影响。本研究证明,可以通过生产碱活化粘合剂来重复使用废物。

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