CASE STUDY – High Capacity Direct Fired Thermal Oxidizer for VOC & H₂S Waste Gas Control
July 15, 2026 12:02 pmA natural gas processing facility in Aceh, Indonesia, initiated a production expansion to increase gas output to 60 MMSCFD.
A natural gas processing facility in Aceh, Indonesia, initiated a production expansion to increase gas output to 60 MMSCFD.
Ship & Shore Environmental delivered a customized VOC control solution that combines pretreatment, regenerative thermal oxidation, activated carbon backup, and integrated safety controls into a single, dependable system.
Application- Accommodate production increases from the recycling process by treating volatile organic compound (VOC) emissions generated from the recycling plant’s operations.
Ship & Shore Environmental engineered a solution that was a custom Regenerative Thermal Oxidizer (RTO), for both emissions control and energy optimization.
Ship & Shore Environmental designed and supplied a custom Regenerative Thermal Oxidizer (RTO) system, engineered for initial capacity with expandability up to 50,000 SCFM.
Pairing boilers with engineered RTOs ensures safe, compliant, and efficient production, protecting both capital and regulatory standing. Ship & Shore Environmental delivers solutions that balance energy use, emission control, and operational reliability.
A high-output flexographic printing facility operating multiple presses and laminators required an upgraded VOC control system.
A high volume paint manufacturing facility required a robust emissions control solution to manage airborne pollutants generated during coating and paint formulation operations.
A high-throughput cabinet and furniture manufacturing facility operating multiple finishing lines required an advanced air pollution control solution to manage volatile organic compound (VOC) emissions generated during painting, staining, and clear-coat operations.
A U.S. flexographic printing facility expanding production was experiencing rising VOC emissions from presses, dryers, and ink-mixing areas.