Optimal methodology for water recycling and reusability of multiproduct batch plant

Jaydeep Jivani, Meka Srinivasarao, Anand P. Dhanwani
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Abstract

Multiproduct batch plants are seriously affected by improper production schedules and inefficient wastewater handling. These batch process industries consume massive amounts of fresh water for process and multiple washings of process equipment. Primary objective of the present work is to minimize freshwater intake through proper handling and reuse of wastewater. This paper proposes an optimal methodology of wastewater recycle to address the environmental and economic issues. We explore the possibility of recycling reusable water before sending it to Effluent Treatment Plant (ETP) for treatment. We formulated a constraint, mixed integer non-linear programming (MINLP) optimization model, to simultaneously address environmental and economic issues for a multiproduct batch plant. The model applied to a process involving multiple washes and multiple storage tanks having pre-specified concentration limits. This model provides the amount of recyclable wash water, overall freshwater demand and effluent generation. The reported case study suggests that the freshwater reduction is in the range of 40–60%. We also performed dynamic simulations using the MATLAB-GAMS interface to monitor dynamic variation in the height of waste water in segregation tanks due to dynamic variation in wash water generation.

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多产品间歇装置水循环利用的优化方法
不合理的生产计划和低效的废水处理严重影响了多产品间歇式工厂。这些批处理工业消耗大量的淡水用于工艺和工艺设备的多次清洗。本工作的主要目标是透过妥善处理及再利用废水,尽量减少淡水的摄取。本文提出了一种污水回收的优化方法,以解决环境和经济问题。我们探讨了在将可重复使用的水送到污水处理厂(ETP)处理之前回收利用的可能性。我们制定了一个约束,混合整数非线性规划(MINLP)优化模型,以同时解决多产品批量工厂的环境和经济问题。该模型适用于涉及多次洗涤和具有预先规定浓度限制的多个储罐的过程。该模型提供了可回收洗涤水量、总淡水需求和废水产生量。报告的案例研究表明,淡水减少的幅度在40-60%之间。我们还使用MATLAB-GAMS界面进行了动态模拟,以监测由于洗涤水生成的动态变化而导致的分离池中废水高度的动态变化。
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