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首页> 外文期刊>ACS Omega >Inhibition of Efflorescence in Na-Based Geopolymer Inorganic Coating
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Inhibition of Efflorescence in Na-Based Geopolymer Inorganic Coating

机译:基于Na基地质聚合物无机涂层中血糖的抑制作用

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Coating is one of the most important high-value-added application cases in geopolymer materials. However, efflorescence can easily cause discoloration and reduce the esthetic impression of the coating surface, thus limiting its application; hence, inhibition of efflorescence is one of the most important techniques in the application of geopolymer coatings. Efflorescence is a spontaneous behavior in a Na-based geopolymer, involving the migration of soluble alkalis. Alkalis are dissolved by water and diffuse to the material surface through nocuous pores, and then react with CO_(2) to produce white carbonate products. To inhibit efflorescence in geopolymer coating, this article reports a structure modification method using polydimethy siloxane (PS) and mica. To explore the inhibition mechanism, the effects of PS and mica on the pore structure, water absorption, alkali leaching, and efflorescence product were investigated. The experimental results showed that a harmful pore structure and instinctive water absorption of the geopolymer strongly contributed to efflorescence. PS and mica could reduce the pore size distribution and porosity and are helpful to establish a waterproof structure, leading to water absorption and the alkali leaching rate being significantly suppressed. Both high water glass and water content play a critical role in the increase of efflorescence, but even under a high content of water glass and water used in geopolymer coating, this method shows an 80–90% efflorescence reduction, which is much higher than that of other studies. In practical engineering, when the geopolymer coating is applied after modification, even if it is exposed to the field environment for a long time, there is no efflorescence deposit on the coating surface. It is feasible to limit water ingression in a geopolymer, which effectively blocks the efflorescence reaction process. This method is simple and practical and can be applied in practical engineering applications of geopolymer coatings conveniently.
机译:涂层是地缘聚合物材料中最重要的高附加值应用案例之一。然而,风化可以容易地引起变色并降低涂层表面的美学印象,从而限制其应用;因此,抑制兴华是盖聚物涂层应用中最重要的技术之一。兴华是Na基地质聚合物中的自发行为,涉及可溶性碱的迁移。碱通过水溶解并通过孔的孔扩散到材料表面,然后与CO_(2)反应以产生白碳酸酯产物。为了抑制地缘聚合物涂层中的兴华,本文报告了一种使用聚二甲基硅氧烷(PS)和云母的结构改性方法。为了探讨抑制机制,研究了PS和云母对孔结构,吸水,碱浸出和兴华产品的影响。实验结果表明,岩土聚合物的有害孔隙结构和本能吸水强烈促成了膨胀。 PS和云母可以降低孔径分布和孔隙度,并有助于建立防水结构,导致吸水性和碱浸出率显着抑制。高水玻璃和水含量在膨胀的增加中起着关键作用,但即使在地质聚合物涂层中使用的水玻璃和水的高含量下,该方法也显示出80-90%的兴隆量,远高于此其他研究。在实际工程中,当修饰后施加地质聚合物涂层时,即使它长时间暴露于现场环境时,涂层表面上也没有膨胀沉积物。限制地质聚合物中的水进入是可行的,这有效地阻断了血糖反应过程。该方法简单实用,可方便地应用于地质聚合物涂层的实际工程应用。

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