用工业硫作为硫酸钙矿物粘结剂的结构添加剂

G. Yakovlev, Irina Polyanskih, A. Gordina, A. Gumeniuk
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引用次数: 0

摘要

本文讨论了在空气粘结剂混合阶段加入人工生产的预处理废弃物二水硫酸钙生产有效材料的物理化学特性。可耗尽自然资源的高度消耗导致工业废物在建筑应用领域的研究活动增加。利用人造废物,如技术硫,作为建筑材料结构和性能的改性剂,是解决环境、资源和经济问题的重要一步。今天建筑材料的工业生产遵循可持续发展和废物最小化的原则,通过优化产品配方和减少生产所需的能源消耗。此外,标准化产品的质量和性能指标的改进是相关的和受欢迎的。由于大量生产和大量储存所带来的环境威胁,需要有效的技术来利用技术硫。添加技术硫作为技术建筑混合物的组成部分,将创造一种替代利用这种生产废物的方法。技术硫的物理和技术性质以及物理和化学性质预先决定了其作为石膏产品结构和性质的有效改性剂,经过某些额外处理后使用的可能性。本文的研究结果证明了该生产废弃物作为一种有效的结构形成添加剂的潜力,对硫酸钙基材料的物理技术参数有积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
USING TECHNICAL SULFUR AS A STRUCTURING ADDITIVE FOR MINERAL BINDERS BASED ON CALCIUM SULFATE
The article discusses physical and chemical characteristics of producing effective materials based on calcium sulfate dihydrate, the pretreated waste of man-made production being added at the stage of mixing the air binder. The high degree of consumption of exhaustible natural resources causes increased research activities in the field of application of industrial waste in construction. Using man-made waste, such as technical sulfur, as a modifier of the structure and properties of building materials is a significant step in solving environmental, resource, and economic problems. Industrial production of building materials today follows the principles of sustainable development and waste minimization by optimizing product formulations and reducing energy consumption required for their production. In addition, the improvement of quality and performance indicators of standardized products is relevant and sought-after. The need for efficient technologies for utilization of technical sulfur is due to large volumes of production and the environmental threat which accompanies the storage of its large volumes. Adding technical sulfur as a component of technological construction mixtures will create an alternative to the methods of utilization of this production waste. Physical and technical and physical and chemical properties of technical sulfur predetermine the possibility of its use, with certain additional treatment, as an effective modifier of the structure and properties of gypsum products. The results presented in the article prove the potential use of this production waste as an effective structure-forming additive, which has a positive effect on the physical and technical parameters of calcium sulfate-based materials.
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