首页> 外文会议>Annual convention of Sugar Technologists' Association of India >REDUCING THE VISCOSITY AND CONTROL OF SCALE FORMATION IN SUGAR FACTORY BY ECO-FRIENDLY FLUID CONDITIONER
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REDUCING THE VISCOSITY AND CONTROL OF SCALE FORMATION IN SUGAR FACTORY BY ECO-FRIENDLY FLUID CONDITIONER

机译:利用生态友好型液体调节剂降低制糖厂的粘稠度并控制结垢

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The first industrial experimental evidence with proposed theory of negative magnetic effect on fluid viscosity and scale formation is presented here. The magnetic energy is partially transformed into the linear momentum of the fluid particle which in turn is converted into hydrodynamic motion of the fluid which leads to increase in ionic velocity (kinetic energy) and decreases viscosity of molasses and massecuite; consequently increases the molasses exhaustion. By EFFC treatment, precipitates containing up to 90 % vaterite were recorded. The SEM analysis of the scale implied that the magnetic treatment suppresses the formation of calcite crystals (hard) and prefers vaterite; a thermodynamically least stable (soft) polymorph. The results are consistent with the literature model of CaCO3 crystallization. The laboratory experiment coupled with commercial trials is confirmed to be beneficial for process control and significant energy saving during sugar manufacturing. The theory proposed here is consistent with the experimental results. A complete mechanism and explanations are offered to explain some of the apparently conflicting information previously published on this topic. A technique to reduce the viscosity of the syrups and scale formation employing an eco-friendly fluid conditioner (EFFC) during sugar processing is developed.
机译:本文提出了第一个工业实验证据,并提出了对流体粘度和结垢形成负磁效应的理论。磁能被部分转化为流体颗粒的线性动量,该线性动量又转化为流体的流体动力学运动,从而导致离子速度(动能)增加,并降低了糖蜜和糖膏的粘度。因此增加了糖蜜的消耗。通过EFFC处理,记录了含有高达90%球v石的沉淀物。鳞片的SEM分析表明,磁处理抑制了方解石晶体(硬质)的形成,并且偏爱球v石。热力学上最不稳定的(软)多晶型物。结果与CaCO3结晶的文献模型一致。实验室试验和商业试验相结合,被证实对于制糖过程中的过程控制和显着的节能是有益的。这里提出的理论与实验结果是一致的。提供了完整的机制和解释来解释以前在该主题上发布的一些显然相互矛盾的信息。开发了一种在糖加工过程中采用环保型流体调节剂(EFFC)来降低糖浆粘度和结垢的技术。

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