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Energy analysis and heat recovery opportunities in spray dryers applied for effluent management

机译:喷雾干燥器中的能量分析和热量回收机会用于废水管理

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摘要

Thermal dewatering using spray dryers is an energy-intensive process, which recently, applied for removal of water from industrial effluents by evaporation. Reduction of energy consumption is vital to reduce operating cost in addition to sustainable development. In this paper, the modern integrated energy savings scheme is proposed in four parts. (i) An advanced energy saving configuration named as a hybrid heat recovery system for a spray dryer, (ii) Developed rigorous but simple mathematical model for direct and hybrid heat recovery system, (iii) A generalized performance indicator for investigation of environmental impact on energy recovery called as 'Sustainability Index' is proposed for thermal systems and demonstrated for spray dryer, and finally (iv) The proposed methods are explained with the help of an illustrative example taken from the literature. Up to 80% recirculation ratio, performance enhancement, and Sustainability Index are significantly higher for the hybrid heat recovery system than the direct heat recovery system, while for higher than 80% recirculation ratio, both are approaching towards nearly same value. Furthermore, with increasing recirculation ratio, moisture recirculation into the drying chamber also increases, which reduces the requirement of the mass flow rate of dry hot air due to the higher heat capacity of recirculated moisture. A reduction in hot air requirement reduces the high-grade blower power in addition to net heat supplied. Dryer efficiency and sustainability index, both show a strong dependency on the amount of heat recovery for spray dryer.
机译:使用喷雾干燥器的热脱水是耗能的过程,最近被用于通过蒸发从工业废水中除去水。除可持续发展外,减少能耗对降低运营成本至关重要。本文分四个部分提出了现代综合节能方案。 (i)一种先进的节能配置,称为喷雾干燥器的混合式热回收系统;(ii)为直接和混合式热回收系统开发了严格而简单的数学模型;(iii)用于研究对环境的影响的通用性能指标为热力系统提出了称为“可持续性指数”的能量回收方法,并为喷雾干燥器进行了示范,最后(iv)借助从文献中获得的说明性示例对提出的方法进行了说明。与直接热回收系统相比,混合热回收系统的高达80%的再循环率,性能增强和可持续性指数显着更高,而对于高于80%的再循环率,两者都接近于几乎相同的值。此外,随着再循环比的增加,进入干燥室的水分再循环也增加,由于再循环水分的更高的热容量,这降低了对干燥热空气的质量流量的要求。减少的热空气需求除了提供净热量外,还降低了高档鼓风机的功率。干燥机的效率和可持续性指数都强烈依赖于喷雾干燥机的热量回收量。

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