O2 okukhiphayo 350m3/h±5%
O2 ubumsulwa ≥99.6%O2
Ingcindezi ye-O2 ~0.034MPa(G)
Okuphumayo kwe-N2 800m3/h±5%
Ukuhlanzeka kwe-N2 ≤10ppmO2
Ingcindezi ye-N2 ~0.012 MPa(G)
Isimo sokuphuma komkhiqizo (ku-0℃,101.325Kpa)
Ingcindezi yokuqala engu-0.65MPa(G)
Isikhathi sokusebenza esiqhubekayo phakathi kwezikhathi ezimbili ze-defrosting izinyanga eziyi-12
Isikhathi sokuqala ~ Amahora angama-24
Ukusetshenziswa kwamandla okuqondile ~0.64kWh/mO2(hhayi i-compressor ye-O2)
Imodeli | I-NZDON-50/50 | I-NZDON-80/160 | I-NZDON-180/300 | I-NZDON-260/500 | I-NZDON-350/700 | I-NZDON-550/1000 | I-NZDON-750/1500 | I-NZDON-1200/2000/0y |
O2 0output (Nm3/h) | 50 | 80 | 180 | 260 | 350 | 550 | 750 | 1200 |
I-O2 Purity (%O2) | ≥99.6 | ≥99.6 | ≥99.6 | ≥99.6 | ≥99.6 | ≥99.6 | ≥99.6 | ≥99.6 |
I-N2 0output (Nm3/h) | 50 | 160 | 300 | 500 | 700 | 1000 | 1500 | 2000 |
I-N2 Purity (PPm O2) | 9.5 | ≤10 | ≤10 | ≤10 | ≤10 | ≤10 | ≤10 | ≤10 |
I-Liquid Argon Ouput (Nm3/h) | —- | —- | —- | —- | —- | —- | —- | 30 |
I-Liquid Argon Purity (Ppm O2 + PPm N2) | —- | —- | —- | —- | —- | —- | —- | ≤1.5ppmO2 + 4 pp mN2 |
I-Liquid Argon Purity (Ppm O2 + PPm N2) | —- | —- | —- | —- | —- | —- | —- | 0.2 |
Ukusetshenziswa (Kwh/Nm3 O2) | ≤1.3 | ≤0.85 | ≤0.68 | ≤0.68 | ≤0.65 | ≤0.65 | ≤0.63 | ≤0.55 |
Indawo Ethathiwe (m3) | 145 | 150 | 160 | 180 | 250 | 420 | 450 | 800 |
1. I-Air Compressor : Umoya ucindezelwe ngengcindezi ephansi ye-5-7 bar (0.5-0.7mpa).Kwenziwa ngokusebenzisa ama-compressor akamuva (Screw/Centrifugal Type).
2. Uhlelo Lokupholisa Ngaphambili : Isigaba sesibili senqubo sihlanganisa ukusetshenziswa kwesiqandisi sokupholisa kusengaphambili umoya ocutshunguliwe ukuze ube izinga lokushisa elingaba ngu-12 deg C ngaphambi kokuthi ungene endaweni yokuhlanza.
3. Ukuhlanzwa Komoya Ngesihlanzi : Umoya ungena endaweni yokuhlanza, eyakhiwe ama-twin molecular Sieve driers ezisebenza ngenye indlela.I-Molecular Sieve ihlukanisa i-carbon dioxide nomswakama emoyeni wenqubo ngaphambi kokuba umoya ufinyelele endaweni yokuhlukanisa umoya.
4. I-Cryogenic Cooling of Air By Expander : Umoya kufanele upholiswe ube ngaphansi kwezinga lokushisa ukuze uketshezi lugcwale.Isiqandisi se-cryogenic kanye nokupholisa kunikezwa i-turbo expander esebenza kahle kakhulu, epholisa umoya ekushiseni okungaphansi kuka-165 kuya ku-170 deg C.
5. Ukuhlukaniswa Kwe-Liquid Air ku-Oxygen ne-Nitrogen ngokuhlukaniswa komoya
6. Ikholomu : Umoya ongena epuleti eliphansi le-fin hlobo lokushisa alinawo umswakama, awunawo uwoyela kanye ne-carbon dioxide.Ipholiswa ngaphakathi kwesishintshi sokushisa ngaphansi kwamazinga okushisa angaphansi kukaziro ngenqubo yokwandisa umoya ku-expander.
7. Kulindeleke ukuthi sifinyelele umehluko we-delta ophansi njengo-2 degree Celsius ekugcineni okufudumele kokushintshisana.Umoya uyancibilika uma ufika kukholamu yokuhlukanisa umoya futhi uhlukaniswa ube umoya-mpilo ne-nitrogen ngenqubo yokulungisa.
I-Liquid Oxygen Igcinwe Ethangini Lokugcina Uketshezi : I-oksijeni yoketshezi igcwaliswa ethangini lokugcina uketshezi elixhunywe ku-liquefier okwenza isistimu ezenzakalelayo.Ipayipi lepayipi lisetshenziselwa ukukhipha umoya-mpilo owuketshezi ethangini.
UMA UNAZO IZITHAKAZELO ZOKWAZI ULWAZI OLUNINGI, XHUMANA NATHI: 0086-18069835230
Q1: Ingabe uyinkampani yokuhweba noma umenzi?
A: Depending on what type of machine you are purchased. Cryogenic ASU, the delivery time is at least 3 months. Cryogenic liquid plant, the delivery time is at least 5 months. Welcome to have a contact with our salesman: 0086-18069835230, Lyan.ji@hznuzhuo.com
Gxila ekunikezeni izixazululo ze-mong pu iminyaka emi-5.