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Improved Sugar Cane Juice Clarification by Understanding Calcium Oxide-Phosphate-Sucrose Systems

机译:通过了解氧化钙-磷酸盐-蔗糖系统改善了甘蔗汁的澄清度

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摘要

It is accepted that the efficiency of sugar cane clarification is closely linked with sugar juice composition (including suspended or insoluble impurities), the inorganic phosphate content, the liming condition and type, and the interactions between the juice components. These interactions are not well understood, particularly those between calcium, phosphate, and sucrose in sugar cane juice. Studies have been conducted on calcium oxide (CaO)/phosphate/sucrose systems in both synthetic and factory juices to provide further information on the defecation process (i.e., simple liming to effect impurity removal) and to identify an effective clarification process that would result in reduced scaling of sugar factory evaporators, pans, and centrifugals. Results have shown that a two-stage process involving the addition of lime saccharate to a set juice pH followed by the addition of sodium hydroxide to a final juice pH or a similar two-stage process where the order of addition of the alkalis is reversed prior to clarification reduces the impurity loading of the clarified juice compared to that of the clarified juice obtained by the conventional defecation process. The treatment process showed reductions in CaO (27% to 50%) and MgO (up to 20%) in clarified juices with no apparent loss in juice clarity or increase in residence time of the mud particles compared to those in the conventional process. There was also a reduction in the SiO2 content. However, the disadvantage of this process is the significant increase in the Na2O content.
机译:公认的是,甘蔗澄清的效率与糖汁成分(包括悬浮或不溶性杂质),无机磷酸盐含量,石灰条件和类型以及汁液成分之间的相互作用密切相关。这些相互作用,尤其是甘蔗汁中的钙,磷酸盐和蔗糖之间的相互作用还没有被很好地理解。已对合成汁和工厂汁中的氧化钙(CaO)/磷酸盐/蔗糖系统进行了研究,以提供有关排便过程的更多信息(即,通过简单的石灰处理以去除杂质)并确定可导致减少制糖厂的蒸发器,锅和离心机的结垢。结果表明,分两步进行的过程包括:将糖精石灰添加到设定的汁液pH中,然后将氢氧化钠添加到最终的汁液pH中,或者类似的两步过程,其中碱的添加顺序事先被颠倒了。与通过常规排便方法获得的澄清汁相比,澄清可以降低澄清汁的杂质负荷。与传统方法相比,该处理过程显示出澄清汁液中的CaO(27%至50%)和MgO(最多20%)减少,并且汁液澄清度没有明显下降或泥浆颗粒的停留时间增加。 SiO 2含量也降低了。然而,该方法的缺点是Na 2 O含量的显着增加。

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