利用破碎的废玄武岩制作独特的巴厘岛装饰品

IF 0.6 4区 材料科学 Q3 MATERIALS SCIENCE, CERAMICS
Komang Nelly Sundari, Ni Putu Muliawati, I Nyoman Sadguna, Made Asri Puspadewi,  Dwipayana, Iga Sucipta Senajaya, I Wayan Oka Prayasa, I Ketut Sutika, I Wayan Rangi,  Subari, Hendra Prasetia, David C Birawidha, Widya Aryani M, Harta Haryadi, Diah Susanti, I Putu Angga Kristyawan, Fathan Bahfie
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引用次数: 0

摘要

本研究探讨了巴厘岛观赏石工业中玄武岩粉末废料的可持续利用,作为砂浆生产中的替代骨料。通过x射线荧光、x射线衍射和能量色散x射线能谱(XRF、XRD和FE-SEM EDS)的场发射扫描电镜对材料进行综合表征,我们发现玄武岩废弃物中含有81.29%的火山灰物质,其中钙长石为优势相,具有良好的建筑应用潜力。该研究评估了不同成分的砂浆配方(玄武岩75-91%,水泥9-20%,石膏5%)。75%玄武岩、20%水泥和5%石膏的最佳配比显示出优异的力学性能,与原玄武岩的1.31 MPa相比,抗压强度达到6.94 MPa,同时保持了相当的密度和吸水特性。实际应用测试证实,用这种环保砂浆生产的饰品与传统产品保持相同的视觉质量。研究结果提出了一个可行的循环经济解决方案,同时解决了工业废物管理问题,并支持保护巴厘岛的传统工艺。这种方法通过再利用工业副产品减少对环境的影响,并通过增值材料回收提供经济效益。将玄武岩废物纳入高质量建筑材料显示了区域工艺工业可持续发展的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Utilization of Waste Basalt Crushing to Create a Peculiar Bali’s Ornament

Utilization of Waste Basalt Crushing to Create a Peculiar Bali’s Ornament

This research explores the sustainable utilization of basalt powder waste from Bali’s ornamental stone industry as an alternative aggregate in mortar production. Through comprehensive material characterization by X-ray fluorescence, X-ray diffraction, and field emission scanning electron microscopy with energy-dispersive X-ray spectroscopy methods (XRF, XRD, and FE-SEM EDS, respectively), we identified that basalt waste contains 81.29% pozzolanic material with anorthite as the dominant phase, indicating excellent potential for construction applications. The study evaluated mortar formulations with varying compositions (75–91% basalt, 9–20% cement, 5% gypsum). The optimal mix of 75% basalt, 20% cement, and 5% gypsum demonstrated superior mechanical properties, reaching a compressive strength of 6.94 MPa compared to 1.31 MPa for raw basalt while maintaining comparable density and water absorption characteristics. Practical application tests confirmed that ornaments produced with this eco-friendly mortar maintained identical visual quality to conventional products. The findings present a viable circular economy solution that simultaneously addresses industrial waste management and supports the preservation of Bali’s traditional craftsmanship. This approach reduces environmental impacts by reusing industrial byproducts and provides economic benefits through value-added material recovery. The incorporation of basalt waste into high-quality building materials demonstrates significant potential for sustainable development in regional craft industries.

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来源期刊
Powder Metallurgy and Metal Ceramics
Powder Metallurgy and Metal Ceramics 工程技术-材料科学:硅酸盐
CiteScore
1.90
自引率
20.00%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Powder Metallurgy and Metal Ceramics covers topics of the theory, manufacturing technology, and properties of powder; technology of forming processes; the technology of sintering, heat treatment, and thermo-chemical treatment; properties of sintered materials; and testing methods.
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