肉片到釉料的物理化学特性对环境可持续性和企业发展的影响

Michael Ajadi, Sulaimon Lawal, Samson Babalola
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 Methodology: Methodologies for the study involved laboratory analysis to determine oxides concentration in the cullet and studio artistic techniques to form glaze batches, batch-milling, glazes application on earthenware, and kiln firing. Four colours of windowpane cullet were used in order to determine their chromaticity effects as glaze. Cullet were pulverised with pulveriser machine (Rocklabs) and elemental analysis was carried out with tandem accelerator machine, using Particle Induce X-ray Emission to determine oxide compositions and concentrations.
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摘要

目的:由于陶艺家无法在当地配制釉料和进口釉料的成本太高,尼日利亚许多家庭陶瓷工业关闭。本研究旨在对废玻璃进行元素分析,用于釉料配方的制作,确定废玻璃的艺术用途,减少废玻璃对环境的影响,利用废玻璃的化学性质为工业发展和经济增长服务。研究方法:研究方法包括实验室分析,以确定碎片中的氧化物浓度,工作室艺术技术,形成釉批,批量磨粉,釉在陶器上的应用,以及窑烧。采用四种颜色的窗玻璃片作为釉料,测定其色度效果。碎块用磨粉机(Rocklabs)粉碎,用串联加速器进行元素分析,用粒子诱导x射线发射测定氧化物组成和浓度。 结果:元素分析显示Na2O、MgO、K2O、Al2O3、SiO2、CaO、TiO2、PbO和FeO。不同浓度的SO3、P3O5、ZrO2、Rb2O、ZnO、MoO3、Sb2O5、SrO和BaO作为样品中的氧化物。玻璃陶瓷釉料在950℃的窑炉温度下产生良好的哑光、光泽、乳白色、半透明和不透明效果。添加剂助熔剂在每一配方釉料上与窗玻璃碎料的反应有助于其在窑内结晶相的流体动力学性质。 理论、实践和政策的独特贡献:研究立足于循环经济理论;一种利用废物进行设计并使自然系统再生的方法。阐述了艺术家在琉璃衍生品中回收碎料的想法,强调了碎料回收对环境可持续性和企业发展的好处。该研究提高了陶艺家对如何利用肉片制作釉料的理解,并有助于为陶瓷领域的利益相关者制定实用的策略和解决方案。这种适应将改善釉料难获得和成本高的问题;促进尼日利亚陶瓷产业的快速发展,促进尼日利亚经济的快速增长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physicochemical Characterization of Cullet to Glaze for Environmental Sustainability and Entrepreneurial Development
Purpose: Inability of ceramists to formulate glazes locally and the cost of importing glazes had resulted to the closure of many cottage ceramic industries in Nigeria. The study, physicochemical characterization of cullet to glaze, was conducted with the aim of recycling cullet for glazing earthen wares and the intention was to conduct elemental analysis of waste glass for glaze recipes, determine its artistic usage, lessen cullet from environment and harness the chemical properties for industrial development and economic growth. Methodology: Methodologies for the study involved laboratory analysis to determine oxides concentration in the cullet and studio artistic techniques to form glaze batches, batch-milling, glazes application on earthenware, and kiln firing. Four colours of windowpane cullet were used in order to determine their chromaticity effects as glaze. Cullet were pulverised with pulveriser machine (Rocklabs) and elemental analysis was carried out with tandem accelerator machine, using Particle Induce X-ray Emission to determine oxide compositions and concentrations. Findings: Elemental analysis revealed Na2O, MgO, K2O, Al2O3, SiO2, CaO, TiO2, PbO and FeO. SO3, P3O5, ZrO2, Rb2O, ZnO, MoO3, Sb2O5, SrO and BaO in varying concentrations as the oxides in the samples. The glass ceramic glazes gave good matt, glossy, opalescent, translucent and opaque results at 950oC kiln temperature. The reactions of additive fluxes on each formulated glaze batch with windowpane cullet assist hydrokinetics nature of their crystallisation phases in the kiln. Unique Contributions to Theory, Practice and Policy: The study is hinged on the circular economy theory; an approach towards designing out of waste and regenerating natural system. It explicates artists’ ideas in recycling cullet for glaze derivation and highlights recycling benefits of cullet for environmental sustainability and entrepreneurial development. The study enhances the understanding of ceramists on how cullet can be utilized for glaze production and contributes to the development of practical strategies and solutions for stakeholders in ceramic field. The adaptation will ameliorate the problem of unavailability and high cost of glazes; stimulate rapid development of the Nigerian ceramic industry and heighten economic growth of Nigeria.
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