Electrons are retained in:

This is distinct from merely discarding electrons to a terminal acceptor.

Operational definition

Electron-fate category; revised title.

The routing of reducing equivalents into chemically reduced matter rather than immediately transferring them to a terminal oxidant.

It includes two distinguishable outcomes:

  1. reductive assimilation — electrons are retained in newly synthesized biomass;
  2. reduced-product formation — electrons are retained in products such as methane, alcohols, organic acids, hydrogen, or reduced storage compounds.

This is a higher-level electron-accounting category, not a single biochemical pathway. Respiration uses an environmentally supplied terminal electron acceptor, whereas fermentation ordinarily balances oxidation and reduction through substrate-derived intermediates; extracellular respiration places the acceptor beyond the cell boundary. (PubMed Central (PMC))