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  • https://bio.libretexts.org/Bookshelves/Biochemistry/Fundamentals_of_Biochemistry_(Jakubowski_and_Flatt)/Unit_IV_-_Special_Topics/32%3A_Biochemistry_and_Climate_Change/32.09%3A__Part_2_-_Biohydrogen_An_Introduction
    This page covers the fundamentals of biohydrogen and its role as a renewable energy source in a low-carbon future. It outlines various biochemical pathways for hydrogen production, including microbial...This page covers the fundamentals of biohydrogen and its role as a renewable energy source in a low-carbon future. It outlines various biochemical pathways for hydrogen production, including microbial and algal processes, highlighting key enzymes and microorganisms involved. The comparison between dark fermentation and photobiological hydrogen production is presented with emphasis on process parameters affecting yields.
  • https://bio.libretexts.org/Bookshelves/Biochemistry/Fundamentals_of_Biochemistry_(Jakubowski_and_Flatt)/Unit_IV_-_Special_Topics/32%3A_Biochemistry_and_Climate_Change/32.10%3A__Part_2_-_Biohydrogen_-_Hydrogenases
    This page outlines learning goals focused on hydrogenases, enzymes pivotal in biohydrogen metabolism. It emphasizes understanding hydrogenases' roles, structure-function relationships, catalytic mecha...This page outlines learning goals focused on hydrogenases, enzymes pivotal in biohydrogen metabolism. It emphasizes understanding hydrogenases' roles, structure-function relationships, catalytic mechanisms, and physiological contexts. Additionally, it explores environmental and industrial potential, factors affecting activity, and strategies for genetic and metabolic engineering to optimize hydrogenase performance.

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