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Study on the properties of artificial flood-prevention stone made by Yellow River silt

机译:黄河淤泥人工防洪石材性能研究

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In the Yellow River Basin, the source of flood-prevention tone is scarce. The purpose of this study is to investigate the feasibility of producing a kind of artificial flood-prevention stone by using Yellow River silt via alkali-activated method. The effects of alkali dosage, slag content and curing age on the compressive strength of artificial flood-prevention stone were studied. The results showed that the specimen made from optimal mix proportion can meet the requirement of flood-prevention stone. The main product in alkali-activated process is C-S-H gel confirmed by microcosmic tests such as SEM/EDS, TG/DTG and so on. CaCO3 is generated by the carbonation of partial C-S-H gel and residual Ca(OH)(2). C-S-H gel and CaCO3 have common contribution to strength. In addition, frost resistance of the artificial flood prevention stone at the age of 90 days was evaluated by freeze-thaw cycle method. The porosity and pore size distribution were tested by Mercury intrusion porosimetry (MIP) to explicate the change before and after freeze-thaw cycle. As a whole, it is feasible to produce artificial flood-prevention stone by using the Yellow River silt. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在黄河流域,防洪基调的来源稀缺。本研究的目的是探讨用黄河淤泥碱活化法生产一种人造防洪石材的可行性。研究了碱用量,矿渣含量和熟化时间对人工防洪石材抗压强度的影响。结果表明,最佳配合比制成的标本可以满足防洪石材的要求。碱活化过程的主要产品是C-S-H凝胶,经微观测试证实,例如SEM / EDS,TG / DTG等。 CaCO3是通过部分C-S-H凝胶和残留的Ca(OH)(2)碳酸化而生成的。 C-S-H凝胶和CaCO3对强度有共同的贡献。另外,通过冻融循环法评价了90天龄的人工防洪石材的抗冻性。通过水银压入孔隙率法(MIP)测试孔隙度和孔径分布,以阐明冻融循环前后的变化。总体而言,利用黄河淤泥生产人工防洪石材是可行的。 (C)2017 Elsevier Ltd.保留所有权利。

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