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Stabilized Guabirotuba Silt with waste from cellulose and paper industry

机译:含有纤维素和造纸工业的废物稳定的番石梭丝淤泥

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The unconfined compressive strength, the splitting tensile strength and the California Bearing Ratio (CBR) were systematically investigated to analyze the performance of a silt soil from the metropolitan region of Curitiba (Brazil) stabilized with cellulose ash and with hydrated dolomitic lime. A series of compaction tests on normal Proctor energy were performed to calculate the optimum compaction parameters of the soil- cellulose ash-lime mixtures: maximum dry unit weight (γd-max) and optimum moisture content (ωo). Four percentages of cellulose ash (5%, 10%, 15% and 20% in relation to the dry mass of the soil) were added and used, and a fixed content of lime (L) of 5% based on the modified initial consumption of lime and established from the interpretation of pH measurements performed on several soil-ash-lime mixtures. The results demonstrate that there is an increase in the optimum moisture content and a decrease in the maximum dry unit weight of the compaction curves with increasing the cellulose ash content. On the other hand, the tests of unconfined compression, splitting tensile and CBR show that there is an increase in the mechanical strength values of the blends up to an optimal content of 15%. In addition, Energy Dispersion Spectroscopy (EDS) made in a prototype blend shows that there was a chemical interaction between soil, lime and the smallest particles of cellulose ash. Finally, dosing equations that allow estimation of the strength values of the blends were developed based on porosity/lime index (η/Liv) considering the specific gravity and volume of the materials besides the compaction energy.
机译:系统地研究了无束缚的抗压强度,分裂拉伸强度和加州轴承比(CBR),分析用纤维素灰分稳定的库里比巴(巴西)的大都市区的淤泥土壤的性能和水合白云岩石灰。进行了一系列关于正常功率能量的压实试验,以计算土壤 - 纤维素灰 - 石灰 - 石灰混合物的最佳压实参数:最大干燥单位重量(γd-max)和最佳水分含量(ωo)。加入并使用四个百分比的纤维素灰(5%,10%,15%和20%,与土壤的干燥质量),并根据改良的初始消耗,固定含量为5%的石灰(L)石灰和从对几种土壤 - 灰酸橙混合物进行的pH测量的解释建立。结果表明,随着纤维素灰分含量的增加,最佳水分含量的增加和压实曲线的最大干燥单位重量的降低。另一方面,无束缚压缩的测试,分裂拉伸和CBR显示,混合物的机械强度值增加到15%的最佳含量增加。此外,在原型混合物中制备的能量分散光谱(EDS)表明,土壤,石灰和最小的纤维素灰分之间存在化学相互作用。最后,考虑到除压实能量之外,基于孔隙率/石灰指数(η/ liv)开发了允许估计混合物的强度值的给药方程。

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