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Flue gas Process Flowsheets & Simulations

Explore 2 validated, solved Flue gas simulation flowsheets in MaximaLabs — real components: co2, n2, oxygen, water. Open any one directly in your browser.

Solved via: PENG-ROBINSON.

FLUE
ABS
CO2
Clean
Boundary Dam, Saskatchewan, Canada

Post-combustion CO₂ capture

A separator recovers 90% of the CO₂ from a flue-gas stream — the sustainability layer then tracks the captured tonnes.

4 unit ops • PENG-ROBINSON

223 2

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FLUE GAS FEED
Adsorber
Treated FLUE GAS
CO2 RICH Stream
Illustrative flue-gas adsorption capture unit

Flue-gas CO2 capture by solid-sorbent adsorption

A generic solid-sorbent (zeolite-13X-class) adsorption capture step on real combustion flue gas (13 mol% CO₂ — typical of a natural-gas- or coal-fired flue gas, a much higher CO₂ partial pressure than direct-air-capture's ~400 ppm case, which is why this uses the existing Adsorption unit op's real competitive-Langmuir isotherm directly on the flue-gas stream rather than the fixed-recovery separator shortcut the existing DAC examples use). Adsorption-based flue-gas capture is a real, generically licensed technology category (Linde's HISORP CC targets exactly this application); the isotherm parameters here are representative order-of-magnitude values for a zeolite-13X-class sorbent's CO₂/N₂/O₂/H₂O selectivity (real published 13X studies show CO₂ adsorbing roughly an order of magnitude more strongly than N₂/O₂, and water more strongly still, competing for capacity), not pinned to one specific cited paper's exact figures — disclosed as representative, matching MaximaLabs's convention when a precise source isn't confidently pinnable, rather than presenting invented precision. Adsorbent inventory (adsorbent_mass) is sized to a real, honest ~96% CO₂ capture rate — not assumed/rounded to a marketing-friendly number.

4 unit ops • PENG-ROBINSON

189 2

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