Close Menu
  • Home
  • Maritime
  • Offshore
  • Port
  • Oil & Gas
  • Energy
  • Technology
  • Incidents
  • Environment
  • Events
    • Maritime
    • Offshore
    • Oil & Gas
    • Energy
  • Advertising
  • Contact
Facebook X (Twitter) Instagram LinkedIn
Trending
  • European refiners could drive green hydrogen momentum, with maritime sector playing important role
  • North Sea yields ‘significant’ black gold discovery
  • Falmouth Scientific, Inc. Receives ISO 9001:2015 Quality Certification
  • New leadership for Oceanbird – Splash247
  • Boats Group lawsuit alleges monopoly in US listings
  • Hollandse Kust West Beta cable tests completed
  • New Fred. Olsen 1848 floating solar lead brings experience from SolarDuck, Equinor
  • Strohm’s TCP jumpers make their way to Malaysian deepwater sector
Facebook X (Twitter) Instagram LinkedIn
Maritime247.comMaritime247.com
  • Home
  • Maritime
  • Offshore
  • Port
  • Oil & Gas
  • Energy
  • Tech
  • Incidents
  • Environment
  • Events
    • Maritime
    • Oil & Gas
    • Offshore
    • Energy
  • Advertising
Maritime247.comMaritime247.com
Home»Energy»Timing ‘critical’ to combat biofouling and emissions, researchers say
Energy

Timing ‘critical’ to combat biofouling and emissions, researchers say

January 22, 2025
Facebook Twitter LinkedIn WhatsApp Reddit Tumblr Email
Share
Facebook Twitter LinkedIn Email

Revolutionizing Ship Maintenance: A Breakthrough in Slime Accumulation Estimation

Researchers from the Swedish KTH Royal Institute of Technology (KTH) have developed a groundbreaking model to predict the speed and extent of slime accumulation on ship hulls. This innovation aims to assist ship operators in scheduling hull cleaning at optimal times, ultimately leading to significant fuel savings.

According to Cornelius Wittig, a PhD student at KTH specializing in fluid mechanics, the study sheds light on how shear stress interacts with biofilms over time, resulting in slime fouling on surfaces such as vessel hulls. Biofilm accumulation poses a substantial drag on fuel efficiency for ocean-bound cargo ships, leading to increased emissions and operational costs.

A recent study by the Global Industry Alliance for Maine Biosafety revealed that removing slime from ships’ hulls could reduce greenhouse gas emissions by up to 25%. Recognizing the impact of biofouling on vessel efficiency, the International Maritime Organisation (IMO) has emphasized the importance of biofouling management in achieving sustainability goals.

The Science Behind Slime Fouling

The fouling process begins with bacteria attaching to a surface, forming base structures that give rise to string-shaped streamers. These structures and streamers create surface imperfections that increase friction between the hull and water, leading to higher fuel consumption.

Wittig highlighted that slime fouling can increase a ship’s shaft power by up to 18% and result in an 80% rise in fuel consumption for vessels covered with a thin biofilm. Timing is crucial in reaping the benefits of hull cleaning, as accurate predictions can optimize cleaning schedules and reduce operational costs.

See also  Mediterranean ECA Limits on Shipping’s Sulfur Emissions Are Now in Effect

Industry Response and Innovations

In response to the biofouling challenge, maritime industry stakeholders have been exploring innovative solutions. Companies like Jotun and Hapag-Lloyd have implemented environmentally friendly practices to reduce emissions and enhance energy efficiency.

In a recent development, Lloyd’s Register awarded the industry’s first enhanced antifouling type approval to Graphite Innovation & Technologies (GIT Coatings), signaling a step towards sustainable ship maintenance practices. Hapag-Lloyd’s adoption of Shipshave’s ITCH solution also resulted in significant fuel savings and emission reductions, demonstrating the potential of innovative hull cleaning technologies.

As the maritime industry continues to prioritize sustainability and efficiency, advancements in biofouling management are poised to revolutionize ship maintenance practices and contribute to a greener future for the shipping sector.

biofouling Combat Critical Emissions Researchers Timing
Share. Facebook Twitter LinkedIn Tumblr Telegram Email

Related Posts

European refiners could drive green hydrogen momentum, with maritime sector playing important role

August 21, 2025

New Fred. Olsen 1848 floating solar lead brings experience from SolarDuck, Equinor

August 21, 2025

Egypt-Japan set sights on green marine fuels cooperation

August 21, 2025
Top Posts

Duties of Bosun (Boatswain) on a Ship

February 1, 2025

China Fights Australia’s Plans to Reclaim Darwin Port Citing U.S. Influence

May 27, 2025

Fire-Stricken Wan Hai 503 Continues to Drift Off Indian Coast as Salvage Efforts Intensify

June 11, 2025

Sea-Doo Switch recall underway after serious safety concerns

March 2, 2025
Don't Miss
Technology

Building AI’s Subsea Cable Infrastructure

February 20, 2025

The Future of Meta AI: Personalized Assistants and Global Connectivity Looking for a fun family…

Dr. Kent, NOC Scientist, Honored for Climate Research

January 2, 2025

Klein Marine Systems Signs Agreement With SAAB to Provide Synthetic Aperture Sonar (SAS) Technology

May 1, 2025

Last Surviving Ship Of “Battle of the Atlantic” Gets £225,000 Grant To Secure Its Future

January 27, 2025

Subscribe to Updates

Your Weekly Dive into Maritime & Energy News.

About Us
About Us

Stay informed with the latest in maritime, offshore, oil & gas, and energy industries. Explore news, trends, and insights shaping the global energy landscape.

For advertising inquiries, contact us at
info@maritime247.com.

Facebook X (Twitter) YouTube LinkedIn
Our Picks

DFDS Gets 20-Year Ferry Services Contract in Channel Islands

January 3, 2025

UK’s fifth subsea electricity superhighway in the making?

April 18, 2025

COSCO Shipping signs up for new ammonia and methanol-ready bulker quartet

August 5, 2025

Subscribe to Updates

Your Weekly Dive into Maritime & Energy News.

© 2025 maritime247.com - All rights reserved.
  • Contact
  • Privacy Policy
  • Terms & Conditions
  • Advertising

Type above and press Enter to search. Press Esc to cancel.