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Sustainable approach towards utilizing Makrana marble waste for making water resistant green composite materials

机译:利用Makrana大理石废料制造防水绿色复合材料的可持续方法

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摘要

During marble mining, processing, cutting and polishing, more than 12 MT (million tons) of marble waste is produced in the state of Rajasthan, India, which is now a major environmental issue. The marble waste used in the present study was collected from Makrana marble mining, Rajasthan. The major mineral present in marble waste were calcite ( CaCO_3), dolomite (CaMg(CO_3)_2) and quartz ( SiO_2). Composite materials were made using marble waste with epoxy resin. Textile fibres such as jute, cotton and glass fibres were used as reinforcing materials. The hybrid composites exhibited 54% better flexural strength (48.48 MPa) than the commercially available medium density fibre boards (24.23 MPa). Water absorption and thickness swelling values were less than 1% in green composites. The microstructural study of fractured surface of hybrid composite showed good interfacial bonding between the marble waste, fibre and the matrix. The findings of this study showed a promising outcome in introducing a new class of hybrid green composites to the composite industry and society for multifunctional applications, creating an avenue for circular economy with major environmental benefits.
机译:在印度的拉贾斯坦邦,大理石开采,加工,切割和抛光过程中产生了超过12吨(百万吨)的大理石废料,这是目前的主要环境问题。本研究中使用的大理石废料是从拉贾斯坦邦的Makrana大理石矿山收集的。大理石废料中存在的主要矿物是方解石(CaCO_3),白云石(CaMg(CO_3)_2)和石英(SiO_2)。复合材料是使用大理石废料和环氧树脂制成的。诸如黄麻,棉和玻璃纤维之类的纺织纤维被用作增强材料。杂化复合材料的弯曲强度(48.48 MPa)比市售中密度纤维板(24.23 MPa)好54%。绿色复合材料的吸水率和厚度溶胀值小于1%。混杂复合材料断裂表面的微观结构研究表明,大理石废料,纤维和基体之间具有良好的界面结合。这项研究的结果表明,在向复合材料工业和社会引入用于多功能应用的新型混合绿色复合材料方面,具有令人鼓舞的结果,为具有重大环境效益的循环经济创造了一条途径。

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