TRANSIENT THERMAL-BEHAVIOR OF THE HYDRATION OF 2,3-EPOXY-1-PROPANOL IN A CONTINUOUSLY STIRRED-TANK REACTOR

被引:17
作者
BALL, R [1 ]
GRAY, BF [1 ]
机构
[1] UNIV SYDNEY,SCH MATH & STAT,SYDNEY,NSW 2006,AUSTRALIA
关键词
D O I
10.1021/ie00038a008
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The equations that model a first-order reaction occurring in the four-dimensional parameter space of a CSTR are analyzed using the methods of singularity theory. By reference to experimental data for the hydration of 2,3-epoxy-1-propanol, a direct connection is established between the parameters of the equations and the physical quantities they represent. This simple step suggests a new use for singularity theory as a design tool for chemical reactors, which is illustrated in the latter part-of this work by following the pathways of degenerate bifurcations through the codimension 1 and 2 parameter spaces. In the first part of this work, a physical constraint, namely, the boiling point of the reaction mixture, is used to construct a ''thermal runaway'' curve in the codimension zero operating parameter plane. The shape of this curve reveals the remarkable, but-unpleasant, fact that a decrease in the ambient temperature can lead to a thermal runaway. Such unexpected and dangerous thermal misbehavior could not be predicted from the classical codimension zero Hopf and saddle-node bifurcation loci.
引用
收藏
页码:3726 / 3736
页数:11
相关论文
共 31 条
[1]  
Andronov A.A., 1973, THEORY BIFURCATIONS
[2]   AN ANALYSIS OF CHEMICAL REACTOR STABILITY AND CONTROL .1. THE POSSIBILITY OF LOCAL CONTROL, WITH PERFECT OR IMPERFECT CONTROL MECHANISMS [J].
ARIS, R ;
AMUNDSON, NR .
CHEMICAL ENGINEERING SCIENCE, 1958, 7 (03) :121-131
[3]   MULTIPLICITY FEATURES OF REACTING SYSTEMS - DEPENDENCE OF THE STEADY-STATES OF A CSTR ON THE RESIDENCE TIME [J].
BALAKOTAIAH, V ;
LUSS, D .
CHEMICAL ENGINEERING SCIENCE, 1983, 38 (10) :1709-1721
[4]   CHEMICAL REACTOR STABILITY AND SENSITIVITY [J].
BILOUS, O ;
AMUNDSON, NR .
AICHE JOURNAL, 1955, 1 (04) :513-521
[5]   COORDINATED DESIGN AND CONTROL OPTIMIZATION OF NONLINEAR PROCESSES [J].
BRENGEL, DD ;
SEIDER, WD .
COMPUTERS & CHEMICAL ENGINEERING, 1992, 16 (09) :861-886
[6]   FEEDBACK-CONTROL OF UNSTABLE STATES IN A LABORATORY REACTOR [J].
CHANG, M ;
SCHMITZ, RA .
CHEMICAL ENGINEERING SCIENCE, 1975, 30 (08) :837-846
[7]   EXPERIMENTAL STUDY OF OSCILLATORY STATES IN A STIRRED REACTOR [J].
CHANG, M ;
SCHMITZ, RA .
CHEMICAL ENGINEERING SCIENCE, 1975, 30 (01) :21-34
[8]  
DENBIGH KG, 1971, CHEM REACTOR THEORY
[9]  
FURUSAWA T, 1969, J CHEM ENG JPN, V2, P95, DOI DOI 10.1252/JCEJ.2.95
[10]   A QUALITATIVE STUDY OF THE STEADY-STATE SOLUTIONS FOR A CONTINUOUS-FLOW STIRRED TANK CHEMICAL REACTOR [J].
GOLUBITSKY, M ;
KEYFITZ, BL .
SIAM JOURNAL ON MATHEMATICAL ANALYSIS, 1980, 11 (02) :316-339