Feb 12 • 14:59 UTC 🇨🇦 Canada Global News

Nova Scotia’s CarbonRun reaches carbon capture milestone with ‘river liming’ project

CarbonRun in Nova Scotia has achieved a significant milestone in carbon capture by successfully implementing a river liming project that involves mixing crushed limestone into rivers.

CarbonRun, a Nova Scotia-based company co-founded by Dalhousie University professor Shannon Sterling, has made a notable advancement in carbon capture technology through its innovative 'river liming' project. This method involves the introduction of crushed limestone into rivers to prevent a substantial amount of carbon dioxide, a major greenhouse gas, from being released into the atmosphere. Professor Sterling highlighted that this technique represents a new strategy for carbon management, transforming the traditional land-to-ocean carbon transfer process to enhance its effectiveness in combating climate change.

The uniqueness of CarbonRun's initiative is underscored by its achievement as the first project globally to obtain carbon credits specifically for river liming. Carbon credits are critical instruments in carbon trading markets, where one credit corresponds to the removal or avoidance of one metric tonne of carbon from the atmosphere. By securing these credits, CarbonRun not only validates the effectiveness of its methodology but also opens up new avenues for funding and sustainability in carbon management. The significance of this milestone lies in its potential to inspire similar innovations in the field of environmental conservation and climate action.

The verification of CarbonRun's data by Isometric, a reputable registry based in New York and London, adds credibility to their project. This endorsement signifies that the river liming technique can be commercially viable, paving the way for its broader adoption in both local and global contexts. As governments and industries increasingly seek effective solutions to combat climate change, innovative projects like CarbonRun’s could play a pivotal role in shaping future strategies for carbon capture and storage, potentially leading to a more sustainable ecological balance.

📡 Similar Coverage