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The Use of Gypsum and Waste Gypsum for Electrical Grounding Backfill

机译:石膏和废石膏在电气接地回填中的使用

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Large quantities of gypsum arise from the production of titanium dioxide and from construction waste plasterboard. Due to strict legislation, alternative applications for both gypsum are desperately required. Gypsum-based compounds have been shown to improve the electrical conductivity of materials. In this study, both red gypsum and plasterboard gypsum were investigated for the use as grounding enhancement backfill material. The current investigation undertaken aimed to develop gypsum-based grounding enhancement material that has low resistivity. Tests included determination of geotechnical properties, plasticity characteristics and the electrical resistivity corresponding to different state and water content. Test results showed that, the geotechnical properties of RG vary to that of white gypsum. RG is classified as extremely high plastic whereas gypsum is classified as high plastic. The plasticity index (PI) of RG was found to be 240% greater due to surplus Fe ions. When mixed with water, both material can exist in four different state, ranging from solid, semi-solid, plastic and liquid. Surprisingly, the electrical resistivity of gypsum is lower under wet conditions irrespective of the state. However for long-term and from practical perspective, RG is a better material for grounding purposes as the plasticity of gypsum was found to be short lived and hardened instantaneously due to exothermic reaction. Once hardened, the gypsum resistivity behaviour behave similar to its dry state redundancy.
机译:大量的石膏来自二氧化钛的生产和建筑废石膏板。由于严格的立法,迫切需要两种石膏的替代应用。石膏基化合物已被证明可以改善材料的电导率。在这项研究中,对红色石膏和石膏板石膏均用作增强接地的回填材料进行了研究。当前进行的调查旨在开发具有低电阻率的石膏基接地增强材料。测试包括确定岩土属性,可塑性特征以及对应于不同状态和含水量的电阻率。试验结果表明,RG的岩土性能与白色石膏的岩土性能不同。 RG被归类为极高塑料,而石膏被归类为高塑料。由于多余的铁离子,RG的可塑性指数(PI)被发现提高了240%。当与水混合时,两种材料都可以四种不同的状态存在,从固态,半固态,塑料和液态不等。令人惊讶的是,在潮湿条件下,石膏的电阻率较低,而与状态无关。但是,从长远来看,从实际的角度来看,RG是一种更好的接地材料,因为发现石膏的可塑性短,并且由于放热反应而立即变硬。硬化后,石膏的电阻率行为与其干态冗余相似。

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