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Chemical stabilization of soft Bangkok clay using the blend of calcium carbide residue and biomass ash

机译:利用电石渣和生物质灰的混合物对曼谷软粘土进行化学稳定处理

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摘要

The blend of calcium carbide residue (CCR) and biomass ash (BA) required as a stabilizing chemical additive which causes a pozzolanic reaction was investigated. The dissolution of CCR in water generated calcium hydroxide, Ca(OH)_2. This high pH solution (pH= 12.6) dissolved the amorphous Si from BA and resulted in pozzolanic products. Scanning Electron Microscope (SEM) and X-ray Diffraction (XRD) analyses indicated the existence of ettringite and non crystalline phase calcium silicate hydrate (C-S-H) after 7 days of curing. The strength development of stabilized clay with a CCR and BA blend is influenced by the interrelationship of various factors, including the binder content, the water content and curing time. From two factorial experiments, the strength of stabilized clay at specific curing time and initial water content was the function of the CCR content, the BA content and their combined effect. When the initial soil water content was constant at 1.2 and 1.4 times the optimum water content (OWC) and the binder contents ranged from 5% to 30% of the dry weight of soil, the strength depended on the clay water-binder ratio (w_c/B) and the curing time. The plot of the strength development ratio and curing time on a logarithmic scale revealed that the blend of CCR and BA rendered a different chemical reaction from cemented clay and fly ash (FA) and BA blended cement admixed clay. The strength development ratio of stabilized clay with a CCR and BA mixture exceeded those of cemented clay and FA and BA blended cement admixed clay after 28 days of curing due to the progress of the pozzolanic reaction.
机译:研究了作为引起火山灰反应的稳定化学添加剂的电石渣(CCR)和生物质灰分(BA)的混合物。 CCR在水中的溶解产生氢氧化钙Ca(OH)_2。这种高pH溶液(pH = 12.6)溶解了BA中的非晶硅,形成了火山灰产品。扫描电子显微镜(SEM)和X射线衍射(XRD)分析表明,固化7天后存在钙矾石和非结晶相硅酸钙水合物(C-S-H)。具有CCR和BA共混物的稳定粘土的强度发展受各种因素的相互影响,包括粘合剂含量,水含量和固化时间。通过两个因子试验,稳定粘土在特定固化时间和初始含水量下的强度是CCR含量,BA含量及其综合作用的函数。当初始土壤含水量恒定为最佳含水量(OWC)的1.2倍和1.4倍且粘合剂含量为土壤干重的5%至30%时,强度取决于粘土水粘合剂的比例(w_c / B)和固化时间。强度发展比和固化时间的对数图表明,CCR和BA的掺混物与胶结的粘土和粉煤灰(FA)以及BA掺和的水泥掺混物产生了不同的化学反应。由于火山灰反应的进行,固化后28天,带有CCR和BA混合物的稳定化粘土的强度发展比超过了水泥和FA和BA掺合水泥的粘土的强度发展比。

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