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7、4。Te l 025-89680361 E-mai l xygu nju e du c n0 1-3-4 5-6。-5。Vi sualM IN TE Q 7。Vi sualM IN E Q 42 8、。1 Vis u a l MINTEQ Vi sualM IN TE Q 600 Ksp 8 Vi sualM IN TE Q。str uvi te M g N H4 PO4 6H2O Ksp=10 13.26 9-11。12-13。Vi sualM IN TE Q M g2+N H+4+PO3 4+6H2O M g N H4 PO4 6H2O s 1“Addc o mpo ne nts”M g2
8、+、N H+4、PO3 4“Databasemanage me nt”-“so li dphase s”“Addne w spe c i e s”“Spe c i e s name”str uvi te“Co mpo ne nt no 1”“M g2+”1“ne xt”N H+4、PO3 4 H2O。“Sugge st ID numbe randmo l W t”。lgKs 13.26 dH r 0 Char ge 0。“Savec hange s todatabase”。1。1 str uvi te Vi sualM IN TE Q 2 pH。Vi sualM IN TE Q。2.1 Qs
9、Ksp Qs Ksp。pH=10 NaOH 0 1mmo l/L Cd N O3 2 Cd OH 2 s pH Cd TOTCddi ss Vi sualM IN TE Q pH=10 N aOH TOTN a=0 1 mmo l/L TOTH=0 1nmo l/L 0 1mmo l/L Cd N O3 2 TOTCd=0 1mmo l/L TOTN O3=2 0 1nmo l/L Cd OH 2 s“So li d phase s”“addf i ni teso li dphase s”。0 M pH“c alc f r o m mass c har gebalanc e”“par ame
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11、i bleso li dphase s”“M ulti-pr o ble m/swe e p”lg C-pH。Cd OH 2。TOTCd=0 1mmo l/L pH 7 0 0.001 M“Spe c i f y po ssi bleso li dphase s”Cd OH 2 s pH“M ulti-pr o ble m/swe e p”2。6 0 1 1 Vi sualM IN TE Q 2“se le c te d swe e pr e sults”E xc e l 3 a。Cd pH 9 Cd OH 2 pH 13 pH=10 13 Cd。3 a、b Cd OH 2。Cl、N TA E
12、 DTA DOC、DOC N i c a-Do nno n 14 DOC 5 g/L Cd OH 2 3 b。a Cd 0 1mmo l/L b 5g/L DOC 3 Cd lg C-pH 2.2。Cd OH CO2 3 4 Cd OH 2 CdCO3 2。Vi sualM IN TE Q。pH=9.0 Cd 0 1 mmo l/L。Vi sualM IN TE Q“Gas”CO2 CO2“Spe c i f y po ssi bleso li d phase s”Cd OH 2 s CdCO3 o tavi te Cd CdCO3。lg C-pH。0 1mmo l/L Cd 10mo l/L
13、 3 a Cd。2 1“c o mpo ne nt”CO2 3“Spe c i f y po ssi bleso li dphase s”Cd OH 2 s CdCO3 o tavi te。4 pH 5.2 Cd Cd2+pH=5.2 11.8 CdCO3 pH=8.5 Cd pH 11.8 Cd OH 2 pH。pH Cd。2 15。7 0 1 42 16-17。4 Cd 0 1mmo l/L 10mmo l/L lg C-pH 3。Vi sualM IN TE Q、。e f e r e n c e s 1“”J 2017 13 3 118-119 2 J 2012 1 127-129 3
14、M OOCs J 2017 1 114-119 4 StummW M o r gan J J Aquati cc he mi str y M 3e d N e w Yo r k W i le y 1996 5 M 2018 6 M 2006 7 Gustaf sso n JP Vi sualM IN TE Q 3.1 http/vmi nte q lwr kth se/M 2013 8 Vi sual_M IN TE Q J 2018 37 11 165-167 9 J 2018 34 3 1-6 10 J 2019 42 2 300-307 11 J 2021 15 4 1377-1385
15、12 J 2021 38 1 83-93 13 Cd J 2021 39 9 193-198 14 M i lneC J Ki nni bur gh D G Van i e msdi jk W H e t a l Ge ne r i cN ICA-Do nnan mo de l par ame te r s f o rme tal-i o n bi ndi ng by humi csubstanc e s J E nvi r o n Sc iTe c hno l 2003 37 5 958-971 15 Vi sualM IN TE Q D 2021 16 J 2022 40 5 31-36
16、17-J 2020 40 3 檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿檿 253-258 88 2 Ju F L Sun Q H o u C L e t a l Te st andanalysi so fai rf lo w r ateadapti vepe r f o r manc ei n a di str i bute d f an ve nti lati o n syste m J B ui ldi ng Se r vi c e s E ngi ne e r i ng e se ar c h Te c hno lo gy 2021
17、42 2 223-236 3 J 2019 39 8 14-18 4 J 2018 38 S1 50-52 5 J 2022 48 6 111-116 6 J 2021 31 1 43-46 7 GB/T1236-2017 S 8 J 2005 24 10 32-34 9 W r i ght JD Co bu T B e r g F e t a l Cali br ati o n o flami narf lo wme te r s f o r pr o c e ss gase s J Flo w M e asur e me nt andInstr ume ntati o n 2012 25 8-14 10 D 2019 11 Funaki T Kawashi maK KagawaT Dynami cc har ac te r i sti canalysi so flami narf lo w me te r J N anoTo day 2005 1 5-1 850-855 12 D 2012 13 J 2021 38 4 110-115 14 J 2021 35 10 184-192 15 J 2020 8 64-67 8 0 1