Hydrogen Energy and Climate Change
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Provided by: MIT Environmental Solutions Initiative|Published on: September 21, 2022
Lesson Plans
Scientist Reviewed
9101112AP
This resource has been reviewed by SubjectToClimate's climate scientists and verified for scientific accuracy and up-to-date information. Learn about our review process →
Synopsis
- This lesson about hydrogen energy covers many topics including how it is produced, how batteries and fuel cells work, and where hydrogen fuel cells could replace fossil fuels.
- The lesson includes teacher pages and resources, student worksheets, a podcast, readings, map analyses, an experiment (with instructional video), data research, reading comprehension questions, and discussion questions.

Subjects: Chemistry, Physics, Earth and Space Sciences
Authors: MIT Environmental Solutions Initiative
Region: Global
Languages: English
Teaching Materials
Positives
- The resource includes all teaching materials, an educator's guide on how to use the activities, resources for your own better understanding, and additional discussion questions.
- Each activity can be used as a standalone or in sequence.
Additional Prerequisites
- Each activity is an extension of the podcast episode, so students should listen to the episode before completing any activity.
- If printing each activity page uses too much ink, printing text pages in grayscale and having students share or view colored versions of the diagrams/maps online may be best.
- The podcast episode and the data research section require access to the internet.
- Before listening to the podcast, students should be familiar with chemical compounds, renewable energy, and the impacts of greenhouse gas emissions on the climate.
Differentiation
- This resource can also be used in language arts classes during lessons on communicating complex scientific concepts.
- The first activity can be used in social studies and geography classes to analyze maps and determine why more hydrogen energy is not used in areas with significant potential for renewable energy.
- It is important to note that most of the lesson (aside from the podcast episode) focuses on the potential for hydrogen energy and not on the social and economic feasibility of using it, which are both critical factors to consider and could be explored in an economics or social studies class.
- The last activity focuses on replacing fossil fuels with hydrogen energy, but an important consideration is whether hydrogen power should be used if it is less efficient than just using electricity generated from renewables and whether the answer to that question changes based on the industry or sector.
- Have students research the top climate solutions, as assessed by Project Drawdown, to see if this solution is one that should be focused on or if other solutions might be more impactful.
Scientist Notes
Teaching Tips
Standards
Resource Type and Format
About the Partner Provider

MIT Environmental Solutions Initiative
Founded in 2014, the Environmental Solutions Initiative (ESI) is MIT’s institute-wide effort to mobilize the substantial scientific, engineering, policy, and design capacity of the MIT community to contribute to addressing climate change and other environmental challenges of global import. ESI pursues multidisciplinary research, education, events, and partnerships to help move society toward an environmentally and socially sustainable future. Based in Cambridge, Massachusetts on MIT’s main campus, ESI is powered by a lean staff working closely with students and faculty across the full spectrum of disciplines. Led by architecture professor John E. Fernandez, a leading scholar in the emerging field of urban metabolism, ESI is advised by students, faculty, alumni, and thought leaders from many sectors of society.
Scientist Reviewed
This resource has been reviewed by SubjectToClimate's climate scientists and verified for scientific accuracy and up-to-date information. Our review process ensures that every resource in our library reflects the current state of climate science.
Learn about our review process →




