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Chemical Enrichment and Acid Activation of Bentonite Clay

机译:膨润土粘土的化学富集和酸活化

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Bentonite clay with high amorphous SiO_2 content up to 50% has been enriched via the caustic treatment. Caustic concentration varied between 5 to 25%. Operation time and temperature were the other parameters when driving the optimum enrichment conditions. It was found that amorphous silica was successfully removed when the caustic concentration is 15% or above. Operation temperature of 80 C and duration of 90 minutes were the other limitations in order to have an efficient SiO_2 extraction. Recovery of SiO_2 as sodium silicate solution during this enrichment was another concern that might be important affecting the process economy. Acid activation was applied to the enriched clay to obtain a bleaching earth. The so-called bleaching earth showed bleaching efficiencies of 98.3% and 93.3 regarding to the chlorophyll-a and β-carotene, respectively. In agreement with the recorded decreases in chlorophyll-a and β-carotene components, lovibond red and yellow values were also decreased considerably. This study showed that the unpleasant color changes coming from the presence of pigments, such as chlorophyll-a and β-carotene, can be avoided by the use of chemically enriched and acid activated bentonite as the bleaching earth.
机译:膨润土粘土高达50%的高度无定形SiO_2含量通过腐蚀性处理富集。苛性浓度在5至25%之间变化。在驱动最佳富集条件时,操作时间和温度是其他参数。发现当苛性碱浓度为15%或更高时成功地除去无定形二氧化硅。操作温度为80℃和90分钟的持续时间是其他限制,以便具有有效的SiO_2提取。在这种富集期间作为硅酸钠解决方案的SiO_2回收是另一个问题,这可能是重要的影响过程经济。将酸活化应用于富集的粘土中以获得漂白地球。所谓的漂白地球分别显示出98.3%和93.3关于叶绿素-A和β-胡萝卜素的漂白效率。根据叶绿素-A和β-胡萝卜素组分的记录减少,Lovibond红色和黄色值也大大降低。本研究表明,通过使用化学富集和酸活化的膨润土作为漂白地球,可以避免来自颜料的颜料(例如叶绿素-A和β-胡萝卜素)的令人不愉快的颜色变化。

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