New feature supported by Ocean Visions allows stakeholders to explore the potential of Ocean Alkalinity Enhancement
Washington, D.C., July 14, 2026 – Ocean Visions today announced the launch of a new Ocean Alkalinity Enhancement (OAE) feature within the widely used En-ROADS Climate Solutions Simulator, created by Climate Interactive and MIT Sloan. Developed in partnership with Climate Interactive, the OAE feature allows users of the accessible, science-based platform to explore how OAE could contribute to the global carbon removal needed to meet climate change goals, while examining constraints, costs, and uncertainties.
En-ROADS is a globally recognized climate simulator that shows how current policy and technology decisions could affect future temperatures, extreme weather, energy use, public health, and global GDP.
>> In Other News: Cemex Receive €200 Million to Promote Carbon Capture Capture Project in Alcanar
As knowledge of marine carbon dioxide removal (mCDR) grows, there is an increasing need to help decision-makers understand how its various approaches fit together within overall climate strategies. The new feature brings one of the most actively researched mCDR pathways, OAE, to a popular decision-support tool for climate strategy, allowing users to test scenarios, compare outcomes, and explore tradeoffs. The feature, based on rigorous climate models, was developed by Climate Interactive in close partnership with Ocean Visions and its deep network of experts.
“Marine carbon dioxide removal is still largely unknown to most climate policy decision-makers in terms of its potential role in meeting global carbon removal targets,” said Ocean Visions CEO Brad Ack. “This new tool will introduce millions of users of the simulator to Ocean Alkalinity Enhancement and enable them to assess how it may fit within climate mitigation portfolios in combination with and relative to other approaches.”
Unlike highly specialized technical models, the En-ROADS Simulator was designed to engage diverse users across sectors without requiring modeling expertise. The En-ROADS Simulator is one of the world’s most widely used climate decision-support tools. En-ROADS has been used by more than 1.5 million people worldwide, supported by a network of more than 960 Climate Ambassadors in 91 countries. Between 2022 and 2025, simulators from Climate Interactive and MIT Sloan informed 58 government, investment, corporate strategy, philanthropic, and higher-education policies and initiatives.
The new feature represents both mineral-based and electrochemical OAE approaches and allows users to:
Explore potential climate outcomes associated with scaling OAE
Examine and consider deployment constraints, costs, and uncertainties
Compare OAE with other potential approaches to carbon dioxide removal
Test policy, investment, and technology assumptions
Visualize results instantly through interactive scenarios
“En-ROADS exists to help people better understand the consequences of different climate policies and investments,” said Andrew Jones, Climate Interactive Executive Director. “Partnering with Ocean Visions enabled us to build a feature that reflects current scientific understanding of both the opportunities and limitations of Ocean Alkalinity Enhancement in a transparent and evidence-based way.”
Climate disruption is the top threat to ocean health. Stabilizing the climate and restoring the ocean will require both dramatically reducing greenhouse gas emissions and removing greenhouse gases, especially carbon dioxide, already in the atmosphere. Recent scientific assessments indicate that carbon dioxide removal will need to scale significantly to reach global climate goals.
As governments, investors, and other stakeholders evaluate potential climate actions and pathways forward, accessible decision-support tools are increasingly important. The new OAE feature in En-ROADS contributes to those discussions and helps users explore OAE within the broader set of climate solutions.
To explore the tool, visit the En-ROADS Climate Solutions Simulator.
Ocean Visions is a nonprofit ocean conservation organization pursuing bold solutions to counter and reverse climate impacts on ocean health. Working with a global network of partners, we explore, evaluate, and advance innovations to address climate-driven harm to the ocean. Learn more at www.oceanvisions.org.
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.
Inside This Issue 🏗️ CF Industries Secures Permits, Starts Construction on Blue Point Low-Carbon Ammonia Complex ⚡ US Backs ORNX's Green Ammonia Project in Western Sahara ♻️ Deduci Launches First ...
Inside This Issue 🌳 Brazil's Mombak Delivers Early to Google, Other Buyers in Boost for Carbon Removal Credits 🛫 Two Years Later, Delta's Minnesota SAF Plant Opens 💧 Delaware Hydrogen Company Targ...
Inside This Issue ⚡ Amogy and 2G Energy Successfully Demonstrate Integrated Ammonia-to-Power Generation With Natural Gas Multi-Fuel Capability ✈️ Argus Launches SAF Emissions Reduction Indexes and...
Max Power’s commercial validation drill program at the Lawson Complex aims to confirm the world’s first large-scale commercial discovery of Natural Hydrogen as a new primary energy source. New Vi...
EarthOptics and Cquester Partner to Advance Trusted Soil Carbon Measurement at Scale
Strategic partnership combines EarthOptics carbon measurement and analysis with Cquester Analytics' pioneering soil organic matter functional analyses (e.g., POM/MAOM fractionation), providing carb...
Major financing milestone supported by Power Sustainable advances Canada's first biofuel plant with integrated CO2 liquefaction technology toward commissioning and commercial operations. Convertus...
GHG Protocol Announces Key Standard Development Updates
WASHINGTON, D.C. (July 29, 2026) – Greenhouse Gas Protocol (GHGP) today announces a series of updates to its corporate standards as it continues to strengthen its governance, leadership, and instit...
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.