Here are some of the projects i worked on
I have worked extensively with Continuous Emission Monitoring Systems (CEMS), which are critical for real-time monitoring and reporting of industrial emissions to ensure compliance with environmental regulations and optimize operational efficiency. These systems are used in industries such as power generation, manufacturing, and petrochemicals to track pollutants like SOâ‚‚, NOx, CO, COâ‚‚, Oâ‚‚, and particulate matter.
My contributions include:
Installation & Commissioning: Successfully installed and calibrated CEMS to ensure accurate data collection and seamless integration with plant control systems.
Data Analysis & Reporting: Monitored emissions data, identified trends, and ensured compliance with environmental standards such as ISO 14001, EPA, and local air quality regulations.
System Optimization & Troubleshooting: Conducted diagnostics and preventive maintenance to improve system accuracy, minimize downtime, and enhance reliability.
Regulatory Compliance: Worked closely with environmental agencies and ensured that CEMS met legal and operational requirements, reducing regulatory risks.
Through my work with CEMS, I have gained expertise in gas analyzers, sample conditioning systems, data acquisition software, and industrial automation, enabling me to contribute effectively to environmental sustainability and regulatory compliance initiatives.
I have been actively involved in the installation, maintenance, and optimization of compressed gas systems across various industrial and laboratory settings. These systems are essential for supplying scientific equipment for lab testing, ensuring reliable gas storage and distribution, and supporting critical processes in manufacturing, healthcare, and engineering applications.
My contributions include:
Design and Installation: Ensured proper system layout, component selection, and integration to maximize efficiency and safety.
System Optimization: Conducted performance assessments to reduce energy consumption, pressure drops, and leaks, improving overall system reliability.
Safety Compliance: Adhered to industry standards and regulations to ensure safe handling, storage, and distribution of compressed gases.
Troubleshooting and Maintenance: Diagnosed and resolved system inefficiencies, pressure irregularities, and equipment malfunctions to maintain operational integrity.
My hands-on experience with compressed gas systems has strengthened my expertise in industrial automation, instrumentation, and process control, enabling me to deliver cost-effective, high-performance solutions in diverse environments.
I have worked with Oily Water Separator (OWS) systems from Deckma and Brannstrom, which are essential for marine, industrial, and offshore applications to ensure compliance with IMO MARPOL regulations on bilge water discharge. These systems are designed to efficiently separate oil from water, preventing environmental contamination and maintaining operational sustainability.
My contributions include:
Installation & Commissioning: Installed and calibrated Deckma and Brannstrom OWS systems, ensuring seamless integration with onboard and industrial wastewater management systems.
Sensor Calibration & Maintenance: Worked with oil content meters, control units, and filtration systems, ensuring accurate monitoring and compliance with IMO MEPC standards.
Regulatory Compliance & Reporting: Assisted in documentation and audits to meet MARPOL Annex I requirements, ensuring adherence to international pollution prevention laws.
My hands-on experience with OWS systems from Deckma and Brannstrom has enhanced my expertise in marine environmental compliance, and fluid separation technology enabling me to contribute effectively to sustainable water treatment solutions.
I was involved in a total refurbishment of CFR engines that had been submerged due to severe flooding. These engines, critical for fuel rating and combustion research, required extensive restoration to bring them back to operational standards.
My contributions included:
Disassembly & Inspection: Carefully dismantled the engines to assess water ingress, corrosion damage, and contamination within the cylinder, fuel system, and electrical components.
Component Restoration: Conducted deep cleaning, decontamination, and reconditioning of key parts, including pistons, cylinders, fuel injectors, and crankshafts, to remove rust and water-induced degradation.
Electrical & Control System Recovery: Replaced or refurbished damaged sensors, wiring, and electronic controls, ensuring the engines' precise fuel calibration and measurement capabilities were fully restored.
Reassembly & Testing: Rebuilt the engines, performed extensive calibration, alignment, and functional tests, ensuring they met the original CFR Engine performance standards.
Operational Validation: Conducted full load tests and emissions monitoring, verifying that the engines were performing at their original factory specifications and complied with fuel testing regulations.
Through meticulous restoration and troubleshooting, we successfully brought the flood-damaged CFR engines back to life, preserving their functionality for precision fuel testing and research applications.
Before and After Pictures of the Cetane and Octane motors