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“无机凝胶铸造”工艺在硼铝硅酸盐泡沫玻璃制造中的拓展。

Extension of the 'Inorganic Gel Casting' Process to the Manufacturing of Boro-Alumino-Silicate Glass Foams.

作者信息

Rincon Romero Acacio, Tamburini Sergio, Taveri Gianmarco, Toušek Jaromír, Dlouhy Ivo, Bernardo Enrico

机构信息

Department of Industrial Engineering, University of Padova, Via Marzolo 9, 35131 Padova, Italy.

National Research Council of Italy (CNR), Institute of Condensed Matter Chemistry and Technologies for Energy (ICMATE), Corso Stati Uniti 4, 35127 Padova, Italy.

出版信息

Materials (Basel). 2018 Dec 14;11(12):2545. doi: 10.3390/ma11122545.

Abstract

A new technique for the production of glass foams, based on alkali activation and gel casting, previously applied to soda-lime glass, was successfully extended to boro-alumino-silicate glass, recovered from the recycling of pharmaceutical vials. A weak alkali activation (2.5 M NaOH or NaOH/KOH aqueous solutions) of fine glass powders (below 70 µm) allowed for the obtainment of well-dispersed concentrated aqueous suspensions, undergoing gelation by treatment at low temperature (75 °C). Unlike soda-lime glass, the progressive hardening could not be attributed to the formation of calcium-rich silicate hydrates. The gelation was provided considering the chemical formulation of pharmaceutical glass (CaO-free) to the formation of hydrated sodium alumino-silicate (N-A-S-H) gel. An extensive direct foaming was achieved by vigorous mechanical stirring of partially gelified suspensions, comprising also a surfactant. A sintering treatment at 700 °C, was finally applied to stabilize the cellular structures.

摘要

一种基于碱活化和凝胶铸造的玻璃泡沫生产新技术,此前已应用于钠钙玻璃,现成功扩展至从药用瓶回收中获得的硼铝硅酸盐玻璃。对细玻璃粉(低于70微米)进行弱碱活化(2.5 M NaOH或NaOH/KOH水溶液)可得到分散良好的浓缩水悬浮液,通过低温(75°C)处理使其凝胶化。与钠钙玻璃不同,渐进硬化不能归因于富钙硅酸盐水合物的形成。考虑到药用玻璃(无CaO)的化学配方,凝胶化是由水合铝硅酸钠(N-A-S-H)凝胶的形成导致的。通过对部分凝胶化的悬浮液进行剧烈机械搅拌(其中还包含一种表面活性剂)实现了广泛的直接发泡。最后在700°C进行烧结处理以稳定多孔结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/418d/6316894/7d825401178d/materials-11-02545-g001.jpg

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