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Reversal of plasticity of acid leached kaolinitic clays from Mukurwe-ini

机译:Mukurwe-ini的酸浸高岭土的可塑性逆转

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This study aimed at finding out whether the property of plasticity of acid leached clays can be reversed by treatment with a suitable base. Studies were carried out on representative samples, which were taken from iron bearing clays from Mukurwe-ini, Nyeri County in Kenya (Latitude 00°34´00´´S, Longitude 37°03´00´´E). Characterization of the clay was done in its natural form, and after acid treatment, to determine its mineralogical and chemical composition. Natural clay was refluxed with sulphuric and hydrochloric acids of different concentrations at 100 and 200°C for 2 h followed by thorough washing with distilled water to remove the acid matrix. Atomic absorption spectroscopy, X-ray fluorescence spectroscopy, and X-ray diffraction, analysis techniques were used to determine the physico-chemical characteristics of natural and acid leached clays. The results indicate that SiO2, Al2O3, and Fe2O3 are the major components of Mukurwe-ini clay, MgO, CaO, K2O, TiO2, MnO, and Na2O are present in trace amounts. XRD characterization shows that Mukurwe-ini clays consist primarily of quartz, kaolinite, albite, and microcline minerals. Iron content was drastically reduced in the acid washed samples and X-ray diffraction (XRD) mineralogical analysis of base acid-activated clays showed enhanced levels of the mineral kaolinite in comparison to acid-activated clays (5.3 to 15.7%) a clear indication that the natural properties of the acid washed clay were restored by base treatment of acid washed samples. The Atterberg limits of the base treated samples closely compared with those of the natural clays.
机译:这项研究旨在找出酸浸粘土的可塑性是否可以通过用适当的碱处理而逆转。对代表性样品进行了研究,样品取自肯尼亚Nyeri县Mukurwe-ini的含铁粘土(北纬00°34´00´´,东经37°03´00´´)。粘土以其天然形式进行表征,并在经过酸处理后确定其矿物学和化学组成。将天然粘土与不同浓度的硫酸和盐酸在100和200°C下回流2小时,然后用蒸馏水彻底洗涤以除去酸基质。原子吸收光谱,X射线荧光光谱和X射线衍射分析技术被用来确定天然和酸浸粘土的理化特性。结果表明,SiO2,Al2O3和Fe2O3是Mukurwe-ini粘土的主要成分,MgO,CaO,K2O,TiO2,MnO和Na2O的含量极低。 XRD表征表明,Mukurwe-ini粘土主要由石英,高岭石,钠长石和微斜矿物组成。酸洗样品中的铁含量大大降低,与酸活化粘土(5.3%至15.7%)相比,基础酸活化粘土的X射线衍射(XRD)矿物学分析显示矿物高岭土含量提高。通过酸洗样品的碱处理可以恢复酸洗粘土的自然特性。与天然粘土相比,碱处理样品的阿特伯格极限值非常接近。

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