首页> 外文会议>Conference of the Australian Society of Sugar Cane Technologists >EVALUATION OF A MAGNETIC ION EXCHANGE (MIEX) RESIN FOR DECOLORISATION APPLICATIONS WITHIN A RAW SUGAR FACTORY
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EVALUATION OF A MAGNETIC ION EXCHANGE (MIEX) RESIN FOR DECOLORISATION APPLICATIONS WITHIN A RAW SUGAR FACTORY

机译:原糖厂内脱色应用磁离子交换(MIEX)树脂的评价

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DECOLORISATION OF sugar syrup prior to crystallisation improves the quality of raw sugar produced and reduces costs in further refining processes. The use of ion exchange resins for this purpose has been discussed in many publications and specialisedresins are used in sugar refineries. This paper describes laboratory and mill prototype trials to evaluate the potential of a magnetic ion exchange resin (MIEX) for application within a raw sugar factory to decolorise syrup. Simple jar tests proved thatMIEX resin outperforms an existing industry resin when used at equal capacity. Further detailed laboratory testing showed that logarithmic relationships exist whereby decolorisation efficiency decreases with increasing brix and with resin contact time,but increases with higher dry resin doses. Simulated long-term stability studies showed that the MIEX resin retained similar efficiency under factory treatment conditions (70°C with 50 brix syrup) than it did under extended testing (ambient temperature) with drinking water, and did not suffer significant physical degradation. A prototype reactor unit was constructed for sugar factory testing and was capable of treating up to 30 mVh of 45 brix syrup in a fluidised bed system with a 5 minute resin contact time. Higher brix solutions could not be used within the fluidised bed design due to viscosity problems and resin overflow. Typical experiments to examine resin exhaustion showed initial decolorisation rates of around 70% which dropped slowly to 20%after just over 200 tonnes of syrup (or around 90 tonnes syrup brix) had been processed. A series of tests designed to produce average decolorisation efficiencies of around 50% were conducted and were successful with no apparent drop in this efficiency until around 80 m~3 syrup had been treated, which required a 4 hour run. These results showed that the initial laboratory experiments could be replicated on a factory prototype scale with the resin showing acceptable and reproducible performance.
机译:结晶前糖浆的脱色改善了生产的原糖的质量,并降低了进一步精炼过程中的成本。在许多出版物中讨论了用于此目的的离子交换树脂,并且专长用于糖炼油厂。本文介绍了实验室和磨机原型试验,以评估磁离子交换树脂(MIEX)的潜力,用于脱色糖厂的涂抹糖浆中的应用。简单的罐子试验证明,当以等容量使用时,米曲面树脂优于现有的产业树脂。进一步的详细实验室测试表明,存在对数关系,其中脱色效率随着Brix的增加和树脂接触时间而降低,但随着更高的干树脂剂量增加。模拟长期稳定性研究表明,MIEX树脂工厂的处理条件下保持相似的效率(70℃与50白利糖度糖浆)的确要比下扩展测试(环境温度)用饮用水,并且没有遭受显著物理降解。构建原型反应器单元用于糖厂检测,并且能够在流化床系统中处理高达30 MVH的45个BRIX糖浆,树脂接触时间为5分钟。由于粘度问题和树脂溢出,不能在流化床设计内使用更高的Brix解决方案。检查树脂耗竭的典型实验显示出初始脱色率为约70%的速率约为70%,在刚刚加工200多吨糖浆(或约90吨糖浆Brix)后缓慢降至20%。一系列设计成产生大约50%的平均效率脱色试验中进行,并且成功地与本效率没有明显的下降,直到大约80 M〜3糖浆已处理过的,这需要4小时的运行。这些结果表明,初始实验室实验可以在工厂原型刻度上复制,树脂显示可接受和可再现性能。

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