Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rates below 10 cm/kyr, and are a globally important sediment type. Recent advances, with recognition of widespread preservation of biogenic magnetite (the inorganic remains of magnetotactic bacteria), have fundamentally changed our understanding of the magnetic properties of pelagic carbonates. We review evidence for the magnetic minerals typically preserved in pelagic carbonates, the effects of magnetic mineral diagenesis on paleomagnetic and environmental magnetic records of pelagic carbonates, and what magnetic properties can tell us about the open-ocean environments in which pelagic carbonates are deposited. We also discuss briefly late diag...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000-6000. m, at ra...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000-6000. m, at ra...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...