CO2 removal from air for alkaline fuel cells operating with liquid H2

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CO2 removal from air for alkaline fuel cells operating with liquid H2 ( co2-removal-from-air-alkaline-fuel-cells-operating-with-liqu )

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B-I02 CJCv =CJCd*UPPadjust*5/1024; CJCtemp =CJCv* 1000/24.4; cprintf("CJC o/04.1f\n\r",CJCtemp); 1* Selects mux channel and gain and gets inputs from ADC. 1* Refer to PCLD-889 manual *1 /* Gain settings 50=64,100=80,200=96,1000=112. */ /* Channel settings 0=0,1=1.. /* Therefore ..1,80 means Port1 gain 100 channel 0, ..1,81 means /* gain 100 channel 1 etc. 1* Inverter/amp/comparator has gain=O.5 therefore GAIN variable is set as 'h.*/ for(countl=112;countl<128;countl++) { UPPWritePort(Ox232, 1,countl); delay(DELAY); tempd =GetAD(9); polarityd =GetAD(O); /* Convert digital input to voltage and set polarity *1 zero =polarity(polarityd)*tempd*UPPadjust* 5/1 024; 1* Convert read voltage to TC input microV *1 tempv =(zero* 1e6/GAIN); temp =tciinearize(tempv,tc,CJCtemp,&err); no =countl-112+l; switch(no) { case 1: C02MHEin=temp; break; case 2: C02MHEout=temp; break; 1* case 3: BYPASSout=temp; break;*/ case 6: CIavg=temp; break; case 10: BYPASSin=temp; break; case 11: PORTlin=temp; break; case 12: PORT3in=temp; break; case 14: PORTlout=temp; break; case 15: volflowtemp=temp; break; case 16: PORT3out=temp; break; } cprintf("TC %2i %6.1f\n\r",no,temp); if(write_to_file) fprintf(:tp,"%6.lf ",temp); } 1* end for *1 window(61,2,80,23); gotoxy(I,3); if(flowr='l') { 1* Volume flow rate reading using mass airflow sensor AWM5101VN *1 volflowd=GetAD(2); volflowv=volflowd*UPPadjust* 5/1 024; volflow=(volflowv-l)* 5/4; if(volflow>5) { cprintf("Above scale\n\r"); i f ( w r i t U o_file) :tprintf(:tp, "0 "); } else { cireolO; cprintf("%6.3f\n\r",volflow); if(write_to_file) fprintf(fp,"%6.3f ",volflow); } if(flowr='h') { 1* Volume flow rate reading, including temperature and pressure *1 /* correction (1115 - 912 mbar), for N2, using Flo-sensor *1 *1 */ */ *1

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