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Use of waste paper sludge ash as a calcium-based stabiliser for clay soils

机译:废纸污泥灰作为钙基稳定剂用于粘土的用途

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Chemical ground improvement of soils of poor quality for construction has been increasingly used as a means of promoting sustainable construction practices. The production of conventional soil stabilisers such as cement or lime involves non-renewable natural resource and energy consumption and high carbon dioxide emissions; therefore, alternative stabilisers are sought. This study used waste paper sludge ash (PSA) to treat three different clays. The aim was to assess PSA effectiveness as an alternative to lime or cement for clay stabilisation based on plasticity characteristics, unconfined compressive strength (UCS), water retention and volumetric stability. PSA-treated soil specimens were shown to perform well compared to lime-treated or cement-treated ones: (a) PSA considerably lowered the plasticity indices of the two expansive clays, in a similar way as lime; (b) in most cases PSA dosages equal to or greater than the initial consumption of lime gave UCS at least twice as high compared to those obtained using commercial limes at equivalent dosages (> 1 MPa for the two expansive soils after 7 or 28 days of curing) and in the inspected cases also higher UCS than cement; and (c) consistently with the plasticity results PSA-treated specimens swelled less during wetting and had lower volumetric strains upon drying (better volumetric stability) compared to lime-treated or cement-treated soils. Overall the results give promise for a valorisation route of this waste material in the field of ground improvement.
机译:劣质建筑用化学土地的改良已越来越多地用作促进可持续建筑实践的手段。常规土壤稳定剂(例如水泥或石灰)的生产涉及不可再生的自然资源和能源消耗以及高二氧化碳排放;因此,寻求替代的稳定剂。这项研究使用废纸污泥灰(PSA)处理三种不同的粘土。目的是根据可塑性特征,无侧限抗压强度(UCS),保水率和体积稳定性,评估PSA替代石灰或水泥来稳定粘土的有效性。经PSA处理的土壤样品与经石灰处理或水泥处理的样品相比表现良好:(a)PSA以与石灰相似的方式大大降低了两种膨胀粘土的可塑性指数; (b)在大多数情况下,PSA剂量等于或大于石灰的初始消耗量,其UCS值至少是使用市售石灰以相同剂量获得的UCS的两倍(对于两个膨胀土,在7或28天后,> 1 MPa)固化),在检查的情况下,UCS也比水泥高; (c)与可塑性结果一致,与石灰处理或水泥处理的土壤相比,经PSA处理的样品在润湿过程中溶胀较少,并且在干燥时具有较低的体积应变(更好的体积稳定性)。总的来说,结果为在地面改良领域中这种废料的增值途径提供了希望。

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