首页> 外文学位 >AN INDUSTRIAL ETHANOL AZEOTROPIC DISTILLATION PROCESS: MODELING, ANALYSIS, AND SIMULATION (THERMODYNAMICS, DEHYDRATION, GASOHOL, OPTIMIZATION, SEPARATION).
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AN INDUSTRIAL ETHANOL AZEOTROPIC DISTILLATION PROCESS: MODELING, ANALYSIS, AND SIMULATION (THERMODYNAMICS, DEHYDRATION, GASOHOL, OPTIMIZATION, SEPARATION).

机译:工业乙醇共沸蒸馏过程:建模,分析和模拟(热力学,脱水,汽油,优化,分离)。

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摘要

A steady state process simulator with extensive capabilities was developed for the simulation of process plants involving non-ideal multicomponent systems. A comprehensive stand alone program was developed to represent process systems encountering three phases. A computer program was also developed to handle simultaneous regression of vapor-liquid and liquid-liquid equilibria data to estimate the liquid phase activity coefficients via a global set of parameters for the ethanol azeotropic distillation process, using benzene as the entrainer.;In an extensive study on the azeotropic column, the optimum entrainer to binary feed ratio and the dry ethanol product rate have been established for aqueous ethanol feed concentration ranging from 70 to 89.4 mole % (ethanol). A multiple solution phenomena was investigated for the azeotropic column, and it was found to require a very stiff material balance to obtain the desired product split.;A global set of modified UNIQUAC interaction parameters has been determined using the regression program. This single set of parameters, obtained by simultaneous regression of binary isobaric vapor-liquid equilibria data and a single liquid-liquid tie line, has been established on the basis of its performance in the key units of the ethanol azeotropic distillation process.;Finally, twelve potential entrainers have been evaluated for the ethanol dehydration process using the UNIFAC activity coefficient equation. A set of suitable entrainers has also been prepared, based on extensive analysis using the model of the azeotropic distillation column to demonstrate production of marketable ethanol.;An industrial ethanol azeotropic distillation process has been simulated using the developed process simulator (PROSIM). A study of the azeotropic column's aqueous ethanol feed composition reveals 82.9 mole % (ethanol) as the optimum concentration. The complete process plant as well as the individual process units were found to operate under a very narrow range of operating conditions. A sensitivity study on the process plant was conducted with respect to the ethanol product specifications and benzene stripping column pressure.
机译:开发了具有广泛功能的稳态过程模拟器,用于模拟涉及非理想多组分系统的过程工厂。开发了一个综合的独立程序来表示遇到三个阶段的过程系统。还开发了一个计算机程序来处理汽-液和液-液平衡数据的同时回归,通过使用苯作为夹带剂的乙醇共沸蒸馏过程的全局参数集估算液相活度系数。在共沸柱上进行的研究表明,对于含水乙醇进料浓度范围为70至89.4摩尔%(乙醇),已经确定了最佳的夹带剂与二元进料比和干乙醇产率。研究了共沸塔的多种溶液现象,发现需要非常坚硬的物料平衡才能获得所需的产物分裂。使用回归程序确定了一组全局修改的UNIQUAC相互作用参数。通过在乙醇共沸蒸馏过程的关键单元中的性能确定了通过二元等压蒸气-液体平衡数据和单个液-液连接线的同时回归获得的这套单一参数。使用UNIFAC活度系数方程评估了十二种潜在的夹带剂用于乙醇脱水过程。在使用共沸蒸馏塔模型进行的广泛分析的基础上,还证明了一套合适的夹带剂,以证明可销售的乙醇的生产。使用已开发的过程模拟器(PROSIM)对工业乙醇共沸蒸馏过程进行了模拟。对共沸塔的含水乙醇进料组成的研究表明,最佳浓度为82.9摩尔%(乙醇)。发现整个过程工厂以及各个过程单元都在非常窄的运行条件范围内运行。针对乙醇产品规格和苯汽提塔压力对加工厂进行了敏感性研究。

著录项

  • 作者

    CHAWLA, HARPREET SINGH.;

  • 作者单位

    New Jersey Institute of Technology.;

  • 授予单位 New Jersey Institute of Technology.;
  • 学科 Engineering Chemical.
  • 学位 D.Eng.Sc.
  • 年度 1985
  • 页码 459 p.
  • 总页数 459
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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