Linked from
The 39 pages that link to Biogeochemical cycle, each with the reason it gives.
EcologyRelated: It tracks matter that ecosystems continually reuse.
EcosystemRelated: Cycles such as those of carbon and nitrogen link ecosystem life to its physical environment.
Planetary boundariesRelated: Several boundaries concern disrupted global cycles of matter.
Redox potentialRelated: Environmental redox conditions govern transformations in cycles such as those of nitrogen and sulfur.
Earth system scienceRelated: Element cycles connect living systems with air, water, and rocks.
RegolithRelated: Regolith participates in exchanges of nutrients and elements between rock, water, and life.
BacteriologyRelated: Bacteria drive major transformations in carbon, nitrogen, sulfur, and other elements.
BiosphereRelated: These cycles move essential matter through living and nonliving parts of the biosphere.
Marine ecologyRelated: Carbon, nitrogen, and other element cycles link marine organisms to seawater and sediments.
Nature (natural world)Related: It describes how essential matter circulates through living and nonliving systems.
Gaia hypothesisRelated: Element cycles connect biological activity to atmospheric, oceanic, and geological conditions.
Martinus BeijerinckRelated: His microbial studies helped explain how microorganisms drive transformations in natural cycles.
Vladimir VernadskyRelated: These cycles express how living matter redistributes elements across the biosphere.
EcohydrologyRelated: Water transports nutrients and carbon, coupling ecohydrology to ecosystem chemistry.
Human activitiesRelated: Human actions can redirect or accelerate cycles of carbon, nitrogen, and other elements.
ProtistologyRelated: Protists influence carbon and nutrient cycling through photosynthesis, grazing, and decomposition.