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Aspergillus niger decreases bioavailability of arsenic(V) via biotransformation of manganese oxide into biogenic oxalate minerals
Bence Farkas
, Marek Kolenčík
, Miroslav Hain
, Edmund Dobročka
, Gabriela Kratošová
, Marek Bujdoš
,
Huan Feng
,
Yang Deng
, Qian Yu
, Ramakanth Illa
, B. Ratna Sunil
, Hyunjung Kim
, Peter Matúš
, Martin Urík
Earth and Environmental Studies
Research output
:
Contribution to journal
›
Article
›
peer-review
10
Scopus citations
Overview
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Dive into the research topics of 'Aspergillus niger decreases bioavailability of arsenic(V) via biotransformation of manganese oxide into biogenic oxalate minerals'. Together they form a unique fingerprint.
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Keyphrases
Arsenic
100%
Manganese
100%
Biotransformation
100%
Arsenic(V)
100%
Manganese Oxide
100%
Aspergillus Niger
100%
Hausmannite
100%
Oxalate Minerals
100%
Fungi
66%
Geochemical Factors
33%
Culture Media
33%
Ability to Act
33%
Toxic Metalloids
33%
Bioaccumulation
33%
Lindgrenite
33%
Acidolysis
33%
Static Cultivation
33%
Biogenic Minerals
33%
Arsenic Content
33%
Biogenic Crystals
33%
Manganese Ion
33%
Manganese Species
33%
Microscopic Filamentous Fungi
33%
Toxic Trace Elements
33%
Pharmacology, Toxicology and Pharmaceutical Science
Bioavailability
100%
Aspergillus Niger
100%
Manganese Oxide
100%
Filamentous Fungus
33%
Metalloid
33%
Bioaccumulation
33%
Food Science
Manganese
100%
Aspergillus
100%