ISO 14067:2018 Certification

Product Carbon Footprint

Ball Valve Model: QA41F-150Lb 4″ CF8 : Achieve transparency in every cycle, pursue excellence in every valve.

Carbon footprint distribution analysis

Carbon emission weights at each stage of the product lifecycle

Raw material procurement (96.79%)

563.31

kgCO₂e

This is the most impactful stage in the life cycle. The production of CF8 castings is a core driver of carbon strength, reflecting the energy-intensive nature of the steel manufacturing process.

Use phase (5 years)

11.67 kgCO₂e​

2.01%
Transportation and Logistics

5.62 kgCO₂e

0.97%
Manufacturing process

0.96 kgCO₂e​​ (0.16%)

Waste disposal

0.39 kgCO₂e​​ (0.07%)

Metal recovery rate

90% recyclable

Full life cycle journey

Transparent supply chain from raw material extraction to end-of-life recycling

Raw material procurement

We select high-quality CF8 stainless steel castings and strictly control the carbon footprint of our suppliers.

Lean Manufacturing

High-precision machining and ultrasonic cleaning reduce process energy consumption.

Green Delivery

Optimize transportation routes to reduce carbon emissions.

Operations and Maintenance

5-year design life, with near-zero emissions during operation.

Material recycling

Achieving a circular industrial model with a 90% metal recovery rate.

Towards Net-Zero Emissions

Carbon Emission Reduction Strategies and Practices

Low carbon materials

By recycling stainless steel and optimizing the use of TFM materials, the carbon footprint at the raw material level is significantly reduced.

Energy transition

Increase the proportion of green electricity procurement to achieve decarbonization of production energy.

Green Logistics

Promote the use of new energy heavy-duty trucks, optimize intelligent delivery routes, and minimize emissions from long-distance transportation.