Crude-Oil VOC Vapour Recovery, Compressor Capacity & Emissions-Capture ROI Tool | ShipUniverse
MARPOL Annex VI Reg. 15 • VOC Management Plan • VECS • Vapour Growth • Tank Pressure • Compressor Duty • Capture Economics

Crude-Oil VOC Vapour Recovery, Compressor Capacity & Emissions-Capture ROI Tool

Estimate crude-oil loading vapour generation, normalize vapour flow, screen ship/shore recovery capacity, calculate indicative compressor power, quantify VOC mass captured and test whether the recovery package creates a credible operating and investment case. Safety and approved VECS/VOC-plan limits always control over economics.

Currency
Currency selector changes display only. No exchange-rate conversion is performed.

Regulatory & Operating Basis

MARPOL Annex VI regulation 15 requires crude-oil tankers to carry and implement an approved ship-specific VOC Management Plan. VECS use is mandatory where the relevant Party has designated a port/terminal for VOC control. Project-specific terminal rules, approved VECS manuals and cargo-tank venting limits remain controlling.

MEPC 84 approved a draft 0.20 bar gauge minimum opening-pressure amendment for new crude-oil tankers. It is not yet adopted as of Sep. 3, 2026.

Loading & Vapour Generation

m³/h liquid cargo.
Actual m³ tank vapour generated per m³ liquid loaded. Use cargo/terminal/VECS-manual data where available.
°C vapour temperature basis.
bar gauge.
bar absolute.
vol% non-methane hydrocarbon in tank vapour.
kg/kmol. Enter representative crude-vapour composition.
kg/h. Enter 0 to use the ideal-gas concentration estimate.

Advanced Cargo / Terminal Register

Compare different crude parcels, loading rates and terminals. Each row estimates normalized vapour flow, VOC mass generation and annual exposure independently.

Cargo / TerminalLoad m³/hGrowthTemp °CTank bargVOC vol%MWHours/callCalls/yr

Tank Pressure, VECS & Venting Margin

bar gauge. IMO VOC guidance encourages the highest safely practicable target pressure under the approved system.
bar gauge, vessel-specific approved setting.
bar at maximum loading/vapour rate.
% of P/V setting. 80% is a useful approved-manual/VECS screening basis discussed in MEPC.1/Circ.680; confirm the ship's approved manual.
m³/h from VECS manual / terminal / cargo plan.
Nm³/h.

Recovery Compressor & Processing Train

Nm³/h.
% after fouling, ambient and control margin.
% of one compressor rated capacity.
% of generated VOC entering recovery train.
% of captured VOC converted to reusable/recovered hydrocarbon rather than residual vent/off-gas.
% above calculated normalized vapour generation.
bar gauge.
bar gauge.
% indicative thermodynamic + mechanical efficiency.

Annual Utilization & Economics

per tonne recovered.
per kWh.
per tonne VOC captured. Optional user-entered value only, not an assumed carbon credit.
Optional savings from avoiding loading-rate restrictions, venting interruptions or terminal delay.
% of modeled VOC generation that would otherwise reach atmosphere.

VOC Plan, VECS & Safety Readiness

Engineering limitation: Vapour growth, VOC composition, molecular weight, actual compressor performance, condensation yield and vent-system hydraulics are strongly cargo- and installation-specific. This tool is a screening and investment-planning model. It does not replace the ship's approved VOC Management Plan, VECS manual, cargo-tank venting calculations, P/V valve capacity, terminal compatibility study, class/flag approval, hazardous-area review, maker performance curves or ship/shore operating procedures.
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