10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

Everything you need to know about your pneumatic conveying process

Discover how you can create a more efficient pneumatic conveying process.
3D images of blowers in cement plant
Close

Instrument air dryer case study

Project: Midyan Gas Plant Medium: Instrument air / 1080 SCFM / PDP -15°C / 9.8 bar(g) Scope: Duplex heatless air dryer package 2 x 100% dryer trains Galvanized carbon steel piping and frame ASME U stamp vessels as per Saudi Aramco specifications & approved manufacturers Location: Saudi Arabia
Project: Khazzan Project Medium: Instrument air / 7096 Nm³/h / -40°C / 12,0 bar(g) Scope: 2 x Simplex heatless air dryer package DCS controlled Full stainless steel 316 piping & pressure vessels Full end-user spec compliant ASME VIII, Div.1 (U-stamp) Zone 1 instruments Location: Oman
Project: West Qurna I – Initial Oil Train (IOT) Project Medium: Instrument air / 402 Sm3/h / -40 ˚C / 8.8 kg/cm2g Scope: Duplex (2x100%) heatless dryer package Two (2) x 100% stainless steel pre-filters Two (2) x 100% stainless steel after-filters Carbon steel pressure vessels and piping Atlas Copco Elektronikon controls ASME VIII Div. 1, Div. 2 for cyclic loading - U stamp Zone 2 IIB T3 instruments ExxonMobil specification compliant Location: Iraq
Project: AL DABBÍYA SURFACE FACILITIES PHASE III Medium: Instrument air / 7324 Nm3/h / -100 PDP / 9 Bar(g) Scope: Heatless air dryer 2 x 100% dryer units, each with; 2 x 100% CS Pre-filters (UD2200+F) 2 x 100% Active carbon vessel 2 x 100% CS After filters (DDp2200+F) ASME VIII Div. 1 U-stamp vessels including Shell DEP C.S 1,6 mm Corrosion Allowance SS316 Junction boxes Instrumentation suitable for Zone 1 IIB, T3 Location: United Arab Emirates