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Dispersions of Surface Modified Calcium Hydroxide Nanoparticles with Enhanced Kinetic Stability:Properties and Applications to Desalination and Consolidation of the Yungang Grottoes

机译:具有增强的动力学稳定性的表面改性氢氧化钙纳米粒子的分散性:云冈石窟的脱盐和固结的性质和应用

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Calcium hydroxide(Ca(OH)2)is one of the most interesting materials used to consolidate stone sculptures,monuments,mortars or wall paintings.In this study,we reported on the synthesis and characterization of surface modified Ca(OH)2 nanoparticles as a dispersion with enhanced kinetic stability and the applications for the conservation of sandstone monuments.Uniform hexagonal Ca(OH)2 nanoparticles(~35nm)were obtained by mixing NaOH and NaCl aqueous solutions at 100~175°C using homogeneous-phase reactions.It was further demonstrated that 3-(Methacryloyloxypropane oxygen)trimethoxysilane surfactant agent can significantly reduce agglomeration and simultaneously improve specific surface area of as-synthesized Ca(OH)2 nanoparticles.Brunauer-Emmett-Teller(BET)measurement showed that specific surface area of modified Ca(OH)2 nanoparticles reaches up to ~48.78m~2/g,about 2.5 and 3.4 times higher than that of unmodified and commercial ones,respectively.The kinetic stability of Ca(OH)2 despersion can be further enhanced and its viscosity can be decreased by optimizing the ratio of ethanol and n-propanol.Especially,a technique,which combined the Ferroni-Dini method and dispersion of Ca(OH)2 nanoparticles with enhanced kinetic stability,was proposed to effectively desalinate and consolidate the decayed stone,as evidenced by significant decreases of the porosity and concentration of detrimental Cl~-and SO_4~(2-)ions in the severely decayed sandstone samples from the Yungang grottoes.
机译:氢氧化物(CA(OH)2)是用于整合石雕,纪念碑,迫击炮或壁画的最有趣的材料之一。本研究报告了表面改性Ca(OH)2纳米颗粒的合成和表征。具有增强的动力学稳定性的分散和保护砂岩纪念碑的应用。使用均相反应将NaOH和NaCl水溶液混合在100〜175℃下将NaOH和NaCl水溶液混合来获得均匀的六方静脉Ca(OH)2纳米颗粒(〜35nm)。进一步证明了3-(甲基丙烯酰氧基丙烷氧)三甲氧基硅烷表面活性剂可显着减少附聚并同时改善AS合成的Ca(OH)2纳米颗粒的比表面积.Brunauer-Emmett-Teller(BET)测量表明,修改的特定表面积Ca(OH)2纳米颗粒分别达到比未修改和商业商业的纳米粒径高达约48.78m〜2 / g。CA(OH)2次算的动力学稳定性可以通过优化乙醇和正丙醇的比例来进一步增强。有效地脱盐并巩固腐烂的石头,这证明是在云冈石窟的严重衰减砂岩样品中的孔隙率和浓度的显着降低和浓度的显着降低。

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