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PAPERMAKING WASTE SLUDGE FIBER-CEMENT COMPOSITE PANEL: STABILIZATION AND SOLIDIFICATION OF HIGH FE AND TI CONTENT-PETROCHEMICAL ASH

机译:造纸废渣纤维水泥复合板:高铁和钛含量-石化灰的稳定化和固化

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In this study, the effect of papermaking waste sludge (PWS), petrochemical ash, and metakaolin (MK) replacement with portland cement in the manufacturing of fiber-cement composite (FCC) was investigated. Moreover, the toxicity of materials and FCC was evaluated. Modulus of rupture (MOR), (MOE), fracture toughness (FT), internal bonding strength (IB), water absorption after 24h immersion in water (WA24), and density of FCCs were measured. X-ray diffraction patterns were also obtained. According to the main results, Composites produced with 6% PWS content showed superior mechanical properties. Higher contents of PWS resulted in the reduction in fiber-matrix interfacial adhesion, increasing void contents, and hence lower strength properties. Replacing petrochemical ash and MK up to 10% provided optimum combinations and lightweight composites. In addition, X-ray diffraction patterns confirmed pozzolanic reactions of materials. Toxicity investigation showed that concentration of heavy metals in FCC leachate were reduced compared with ash. Pozzolanic reaction of materials had positive influence on solidification and stabilization of heavy metals. In conclusion, FCCs with the highest pozzolanic activity, were considered as the optimum combination. Moreover, successful stabilization and solidification of heavy metals occurred. Therefore, not only PWS and petrochemical ash can be reused in FCC manufacturing, but they also in turn reduced environmental pollution.
机译:在这项研究中,研究了造纸废污泥(PWS),石化灰和偏高岭土(MK)替代硅酸盐水泥在纤维水泥复合材料(FCC)制造中的作用。此外,还评估了材料和FCC的毒性。测量了断裂模量(MOR),(MOE),断裂韧性(FT),内部粘结强度(IB),浸入水中24h后的吸水率(WA24)和FCC的密度。还获得了X射线衍射图。根据主要结果,PWS含量为6%的复合材料显示出优异的机械性能。较高的PWS含量导致纤维-基质界面粘合力降低,空隙含量增加,因此强度特性降低。替代高达10%的石化灰和MK可提供最佳组合和轻质复合材料。另外,X射线衍射图证实了材料的火山灰反应。毒性研究表明,与灰分相比,FCC渗滤液中的重金属浓度降低了。材料的火山灰反应对重金属的凝固和稳定有积极的影响。总之,火山灰活性最高的FCC被认为是最佳组合。此外,重金属成功地稳定和固化了。因此,不仅PWS和石化灰可以在FCC制造中重复使用,而且还可以减少环境污染。

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