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CH4 Global

CH4 Global utilizes a feed supplement made from whole Asparagopsis seaweed to reduce enteric methane emissions from ruminant livestock by up to 90%, addressing a significant source of global methane emissions. This technology enhances feed efficiency and weight gain while producing lower-carbon animal products, contributing to substantial greenhouse gas reductions in agriculture.

Henderson, United StatesFounded 2018633K+ followers
Updated 20 months ago

Funding

$49.9M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

CM
Funding rounds are not available yet.

Founders

Product

Problem

Enteric methane emissions from ruminant livestock, released primarily through burping, constitute a significant portion of global methane emissions, contributing to climate change and reducing feed energy conversion efficiency in animals. Current methods to mitigate these emissions often lack scalability or negatively impact animal productivity.

Solution

CH4 Global offers a climate solution by providing a feed supplement, Methane Tamer™, derived from Asparagopsis seaweed, which reduces enteric methane emissions from ruminant livestock by up to 90%. This feed supplement enhances feed efficiency and weight gain in livestock, resulting in lower-carbon animal products. The company utilizes a scalable platform spanning all aspects of growing and processing Asparagopsis, as well as developing, packaging, and distributing market-driven solutions. CH4 Global's targeted formulation optimizes the delivery of Asparagopsis specifically for beef feedlot cattle.

Target Audience

The primary customers are food producers, processors, and food industry leaders seeking to reduce their greenhouse gas footprints and produce lower-carbon animal products.

Features

  • Methane Tamer™ feed supplement with whole Asparagopsis seaweed, proven to reduce methane emissions by a minimum of 70% and up to 90%
  • Supports feed efficiency and weight gain in ruminant livestock
  • Reduces the loss of feed energy to enteric fermentation
  • Enables the production of premium lower-carbon animal products
  • End-to-end process spanning Asparagopsis cultivation, processing, and product formulation
  • Supply chain designed to advance climate goals
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