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A Novel Low Temperature Synthesis of Sodium Silicate (Water Glass) from Silica-Rich Wastes using Hydrothermal Method

机译:采用水热法从二氧化硅废物中新的低温合成硅酸钠(水玻璃)

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This present work aims at synthesizing sodium silicate solutions from selected industrial wastes (waste glass and rice husks) using hydrothermal method. The as-received waste glasses of different mix colors were initially washed, crushed and wet milled for several hours then sieved through 75μm mesh. The sieved recycled glasses were then oven dried at 110 o C for 72 h to obtain a powdered glass (SLSG). Rice husks were also washed to remove dirt adherence and dried. The dried rice husks were thermally treated in a muffle furnace at 800 o C for 1 h then left to cool to obtain whitish rice husk ash (RHA). Both SLSG and RHA were then reacted with NaOH solution at varying concentration of 3M, 4M and 5M respectively in a 250 ml Erlenmeyer flask. The mixtures were heated with continuous stirring using a magnetic stirrer at temperatures of 150 o C, 170 o C and 200 o C respectively for a reaction period of 4 h. Analyses were carried out on the synthesized sodium silicate solutions. The results obtained from the analyses showed sodium silicate synthesized from RHA possessed high viscosity while the SiO 2 /Na 2 O ratio showed they are commercial sodium disilicates which indicates the products are all sodium silicate solutions.
机译:本工作的目的旨在使用水热法合成来自选定的工业废物(废玻璃和稻壳)的硅酸钠溶液。最初洗涤,粉碎和湿磨几个小时,然后通过75μm筛分粉碎和湿磨。然后将筛分的再生玻璃烘箱在110℃下干燥72小时,得到粉末状玻璃(SLSG)。还洗涤了稻壳以除去污垢粘附并干燥。将干燥的稻壳在800℃下在800℃下热处理1小时,然后留下冷却以获得白色稻壳灰(RHA)。然后将SLSG和RHA分别在250mL Erlenmeyer烧瓶中以不同浓度的3m,4m和5m的浓度与NaOH溶液反应。在分别在150℃,170℃和200℃的温度下,在4小时的反应期间,在150℃,170℃和200℃的温度下使用磁力搅拌器在连续搅拌下加热混合物。在合成的硅酸钠溶液中进行分析。从分析中获得的结果显示从rha合成的硅酸钠具有高粘度,而SiO 2 / Na 2 O的比例显示它们是商业钠化硅酸钠,表明产物是硅酸钠溶液。

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