孔雀石
铜
草酸盐
生物地球化学循环
生物
铵
黑曲霉
氮气
孔雀绿
硝酸盐
环境化学
核化学
植物
无机化学
化学
生物化学
生态学
有机化学
吸附
作者
Marina Fomina,Andrew J. Bowen,John Charnock,V. S. Podgorsky,Geoffrey Michael Gadd
标识
DOI:10.1111/1462-2920.13664
摘要
This work elucidates spatio-temporal aspects of the biogeochemical transformation of copper mobilized from malachite (Cu2 (CO3 )(OH)2 ) and bioaccumulated within Aspergillus niger colonies when grown on different inorganic nitrogen sources. It was shown that the use of either ammonium or nitrate determined how copper was distributed within the colony and its microenvironment and the copper oxidation state and succession of copper coordinating ligands within the biomass. Nitrate-grown colonies yielded ∼1.7× more biomass, bioaccumulated ∼7× less copper, excreted ∼1.9× more oxalate and produced ∼1.75× less water-soluble copper in the medium in contrast to ammonium-grown colonies. Microfocus X-ray absorption spectroscopy revealed that as the mycelium matured, bioaccumulated copper was transformed from less stable and more toxic Cu(I) into less toxic Cu(II) which was coordinated predominantly by phosphate/malate ligands. With time, a shift to oxalate coordination of bioaccumulated copper occurred in the central older region of ammonium-grown colonies.
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