International audienceThe mobility and fate of bioessential transition metals, such as Ni and Co, are strongly controlled by their association with phyllomanganate minerals such as birnessite. These minerals however, can transform to tectomanganates such as todorokite during soil and sediment diagenesis, yet the mobility and fate of most metals during the transformation process remain largely unknown. Here this research investigates the effect of Co on, and the mobility and fate of Co during the transformation of birnessite into tunnel structure minerals. A range of Co-containing birnessite precursors with up to 16.9 % Co/(Co + Mn) molar ratios were synthesised, and subsequently transformed via a mild reflux procedure designed to mimic the ...
Todorokite is a common manganese oxide mineral, with a tunnel structure, found in Earth surface envi...
Birnessite is the dominant Mn oxide in marine sediments. However, under diagenesis and mild hydrothe...
International audienceHausmannite is a common low-valence manganese oxide mineral with a distorted s...
International audienceThe mobility and fate of bioessential transition metals, such as Ni and Co, ar...
International audienceThe present work uncovers the geochemical control on the nature (tunnel size) ...
Despite its presence in limited amounts, birnessite has a wide spread distribution and is often high...
International audienceThe geochemical behavior of nickel, an essential trace metal element, strongly...
The phyllomanganate birnessite is the main Mn-bearing phase in oxic marine sediments where it exerts...
Todorokite synthesized by autoclaving Mg-buserite was examined by infrared (IR) spectroscopy, X-ray ...
Todorokite is a common Mn oxide mineral in terrestrial and ocean-floor environments, and it is commo...
Fe-doped hexagonal birnessite was synthesized by adding Fe3+ to the initial reactants, and the effec...
The phyllomanganate birnessite is the dominant Mn-bearing phase in oxic marine sediments and through...
Todorokite is a common manganese oxide mineral, with a tunnel structure, found in Earth surface envi...
Birnessite is the dominant Mn oxide in marine sediments. However, under diagenesis and mild hydrothe...
International audienceHausmannite is a common low-valence manganese oxide mineral with a distorted s...
International audienceThe mobility and fate of bioessential transition metals, such as Ni and Co, ar...
International audienceThe present work uncovers the geochemical control on the nature (tunnel size) ...
Despite its presence in limited amounts, birnessite has a wide spread distribution and is often high...
International audienceThe geochemical behavior of nickel, an essential trace metal element, strongly...
The phyllomanganate birnessite is the main Mn-bearing phase in oxic marine sediments where it exerts...
Todorokite synthesized by autoclaving Mg-buserite was examined by infrared (IR) spectroscopy, X-ray ...
Todorokite is a common Mn oxide mineral in terrestrial and ocean-floor environments, and it is commo...
Fe-doped hexagonal birnessite was synthesized by adding Fe3+ to the initial reactants, and the effec...
The phyllomanganate birnessite is the dominant Mn-bearing phase in oxic marine sediments and through...
Todorokite is a common manganese oxide mineral, with a tunnel structure, found in Earth surface envi...
Birnessite is the dominant Mn oxide in marine sediments. However, under diagenesis and mild hydrothe...
International audienceHausmannite is a common low-valence manganese oxide mineral with a distorted s...