2 2002 8 1,,,,,, [ 1-7, ] : 1. 1,, C IM S 21,,,, :, ;,,,,, (O u tsou rcing) AM R E rik son :,,,,, In ternet, (e2business),,, [ 3-4 ].,,,, (V irtual),,



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2002 8 8 : 100026788 (2002) 08200012015 1 2, (1., 100029; 2., 100085) : 21, : 1) : ; ; 2) ; 3) ; 4) ; 5). : ; ; : T P11 : A α P rocess System s Eng ineering in Know ledge Econom ic Epoch Challenges and D evelop ing T rends YAN G You2qi 1, CH EN G Si2w ei 2 (1. Ch ina N ational Chem ical Info rm ation Cen ter, Beijing 100029, Ch ina; 2. N ational N atu ral Science Foundation of Ch i2 na, Beijing 100085, Ch ina) Abstract: T h is is a review fo r the challenges faced by P rocess System s Engineering and develop ing trends in new century. F irstly, the charateristics of p rocess engineering system s in new century and the requirem ents to p rocess system s engineering are described. T hen five develop ing trends of the discip line are summ er2 ized, they are: 1) the research ob jective " p rocess system s" is ex tending from traditional m eta2size to2 w ard tw o ends: in one hand, tow ard the the m icro2sized system, such as p roduct design; in ano ther hand, tow ard super large2sized system s; such as supp ly chain m anagem en t and global environm en t chem istry p roblem s; 2) the contents of "p rocess" are extending from m anufaturing p rocess tow ard busi2 ness decision m ak ing p rocess; 3) considering the environm ent impact, the green p rocess system s engi2 neering is em erging; 4) D ynam ic p rocess system s engineering abso rbing mo re attention; 5) p rocess inte2 gration is still a craze in near future. Key words: p rocess system s engineering; p rocess engineering system s; develop ing trends, 2 2 20 60 70, 1981,, 20 20,,, 1991 21,?? α : 2001212231 : (29830140)

2 2002 8 1,,,,,, [ 1-7, ] : 1. 1,, C IM S 21,,,, :, ;,,,,, (O u tsou rcing) AM R E rik son :,,,,, In ternet, (e2business),,, [ 3-4 ].,,,, (V irtual),, ; (BPR ),, ; (e2comm erce), : : ;,, 1,,,, ( ) [ 5-8 ] 1. 2 21,,, 20, 21 1972 :, 1992 : 20, 6, 26, 20 1g18, 1g3 4260 108m 3, [ 11 1g3 ] ( 1),

8 3 1 1 % g 11. 0 51% 2. 4 11% 1. 2 5% 5. 4 25% 5, 2300 gt, 1500-1600 gt; 2. 37 m 3 gt, 0. 5 m 3 gt, 5 SO 2, CO 2 8 tg,,, ph 5. 6 40% [ 9, 11 ],, 90 [ 9-10 ], [ 10 ].,,, CFC,,, 20 21, M TBE, 21 1. 3, 50 : 1950-1970 20% - 30%, ; 1970-1985,,,, 1985-2000, [ 5-8 ]

4 2002 8 5% - 10%,,, 21,, :,, ; ( ) ( ) ;, ;,,, 1. 4,,, ( ) : 1975 3g4, 1999, 1g4 (P rocess Engineer) 1500 50, [ 5, 8 ], (P ro2 cess Engineering), (P roduct Engineering) ; ( ), 2 2. 1, ; [ 12-14 ] (A ) (P roduct Engineering) Jam es W ei (, ), 20 ; 50-60 ; 20 21 P roduct Engineering " How to m ake, W hat to m ake, M IT, Carnegi - M ellon U n iv, U n iv of Cam b ridge. U n iv. of 2 M in iso ta?,, ;, ;, ; Cu ssler 2 [ 12 ]

8 5 2 ( P rocess D esign) (P roduct D esign) 1. 1. 2. : 2. 3. 3. 4. 4., 3, 3 P rocess design,? : [ 15 g ] CAM D (Com puter2a id M o lecu lar D esign) : 2,, [ 17, (Connectivity index), ] ; M IL P, M INL P; [ 16 ] 80 : PCA (P rincipal Com ponen ts A nalysis), PL S (Partial L east Square), PCR (P rincipal Com ponen ts R egres2 sion), LAD (L ogical A nalysis of D ata),,, : PSE 2000 10 W ester2 berg., Jam es W ei, F loudas [14, 29-30 ] (B ) 20 10,,, (nano2techno logy m anufactu ring techno logy), : 1-2,,, [ 30 ] [ 14 ],,, ( Com b inato rial Chem istry), 10 [ 18-25 ] (C),,, 6

6 2002 8 [ 18, 22 ] :..,,.,,,,., g ; g, g.,,,,,, g, 4 20 C IM S 21 [ 25 ] BASF C IM S 4 C IM S SCD IS ( ) ( ) [20 ] :, In ternetgin tranet g 7 ( 27 ) 450, : (225) (270) P rom ise PT P),, g (230) (60) 37 (schedaling) PSE 2000 Pekny : : [ 19 ],, :,,, g PSE 2000 18, M IL P : 100, 000,, : 150, 000 : 2, 500,,, ( A b le2to2p rom ise A T P Capab le2to2p rom ise CT P, P rofitab le2to2,,? ( ),, 3 BA SF ( 3) [ 21 ],,

8 7 (D ) [ 26-28 ],,,, 90 M IT ( ) 1996 EPPA (En ission P rediction s and Po licy A nalysis M odel) [ 26 ] EPPA 12, 5 (CO 2, CH 4, N 2O, CFC, NO X, CD, SO X) 1998 2D 2LO, 18, 54, 200 1999 P rinn, IGSM ( In tegrated Global System M odel). ( ) [ 27 (CalT ech) ] :, NO X < 1 ;, 5 (P robab ilistic Co llocation M ethod) M IT IGSM, 2. 2 1995 :,, :,,,, [ 31 ], ( ) ( ) ( ), ( ), ( ) ) ; ( ), (, ) (,, ) [ 38 ] [ 32, 33 ], : ( ) ( ),, 1982 1988 W esterberg PSE :,,, 88 82,, 21, [ 34-36, ] 2000 Gro ssm ann W esterberg 2, : ( ) ( ), : [ 41 ],,,, M etasyn thesis :,,

8 2002 8 (,,,, ), [ 38, 40 ] [ 39 ], e P IM A,,,, 2. 3,,, 21 ( ) PSE 2000, 12,, 1 ; 6 ; 1 ; 3 ; 1, (Eco logically Con sciou s P rocess System Engineering) [ 42 ] [ 43, N o tre D am e ] [ 44-48 ] (A ) ;,, ; L CA 20 80, 90 ( Ch iba ), 20, ;, : ; [ 44, 45 ] 4

8 9, 4, 20 60 ; 80, ; 21, [ 49 ],,,,,,,,, (B ),, [ 48 ] ( ppm ), ;,, COD, BOD,, Chem station Chem CAD [ 51 ],,,,,,,, 20,,,,,, 20, M EN,, [ 49, 51 ],,, [ 52 ] (C), 80,,, (Scalarization),,,,. 80, 90 [53 ] 20 10,,,,,,, 2. 4, 20, 20, 21,,,,,, ;,,

10 2002 8,, 20, PSE 2000, 5, 45 5 PSE 2000 ( ) 6 3 9 27 (A ) 20,, A spent ech, Honeyw ell H i2spec, M DC,,, 21, 5 5,, PSE 2000 CSTR,,,, [ 54 ],, H ydro tech H YSYS, A spent ech A spen D ynam ics : Honeyw ell P rofit Op tim izer ; B iegler, 1998 Honeyw ell P rofit Op tim izer, 3. 7%, 2, 6,,, A PC, R TO [55 ] 9 tg 532, 40, 80, 000 CV,, 5 1. 6, [ 57-59 ] (B ), 21, :, ; ( ) ;, g ;,,,, 20,

8 11,, ;, 6 6 Honeyw ell P rofitop tim izer 2 (B iegler ) ( M PC ( 2 ) ) SQ P SQ P CV CV CV 0. 5-4,, 20 80, 2 20, M IT Batch D e2 sign2k it, gbss, A spen T ech A spen BA TCH P lu s, A dvanced P rocess Com b i2 nato ries Inc. V itecs D esign 6, Pu rdue Im perial Co llege, 2, PSE 2000, [ 58,, ], 2 [ 59, ] ( ),, 7 2. 5 (A ) P I(P rocess In tegration) 90 ( IEA ) P I, P I, 18, P I 35, 45. 8 P I UM IST P IRC (P rocess In tegration R esearch Con so rtium ), 27 [ 60 ] 20, 20,, L innhoff M arch 30,

12 2002 8 7 10-30%, 30-40%, 60% 21, H 2, [ 61 ], 20,, 21 PSE 2000, F raga [ 66 ] Jacaranda,, 4 : ; ; ; 4 (B ) Gro ssm arn W esterberg,, g,,,,,,, : P S C PgSg C 90,, PgSgC 1. 6 9, 500 ;, PgSgC 1 g, [ 62 20 ] [ 62 ] : :,, ( ) ( ) :, C IPO 1993 Pu rdue V enkatasub ram arian [ 64 ] [ 64, ] [ 65 ] ga gen t ( ) C IPO, T E2C IPO S,, ( ) 3

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