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Optimizing water purification with Shungite: a metric approach for characterizing its efficiency in removing contaminants

D. Di Luccio; N. H. Campos Campos; A. Lay-Ekuakille; S. Maggi; J. P. Rico Mora; F. Fragnito; M. Palmisano
International Journal of Environmental Science and Technology · Vol. 23, Issue 2 · 2026

Abstract

Shungite is a Precambrian carbon-rich metamorphic rock from the Lake Onega region (Karelia, Russia), consisting of fullerene-like polyhedral carbon within a silicate matrix. Its high carbon content and extended conjugation confer notable sorptive and catalytic behavior. We evaluated its multifunctional potential for water purification targeting organic, inorganic, and microbial contaminants. Two grades (Type I, Type III) were characterized by X-ray diffraction, Scanning Electron Microscopy combined with Energy Dispersive X-ray Spectroscopy, and Raman spectroscopy, and tested under batch conditions within a metric framework combining removal efficiency and distribution coefficient. After 7 days (Type I), removals were: 32.5% for Mercury, 14.9% for Lead, 20.8% for Cadmium, 32.7% for Arsenic, 13.6% for Zinc, and 21.0% for Aluminium. Microbial counts decreased by up to $$0.24 \log _{10}$$ 0.24 log 10 for total coliforms and 0.18 log $$_{10}$$ 10 for Escherichia coli and Enterococcus . Corresponding distribution coefficient values for Type I ranged from 15 to 1300 L/kg, consistently exceeding Type III for cationic metals (notably Mercury), while Arsenic(V) responses depended on pH/speciation. Organic-load indicators (Chemical Oxygen Demand, Biochemical Oxygen Demand (5 days), Total Organic Carbon) increased by 10–16%, consistent with Chemical Oxygen Demand leaching; mitigation (e.g., pre-washing or hybridization with activated carbon) is discussed. Overall, results support Shungite as a versatile sorbent/reactive medium, particularly for cationic metals and microbial indicators. The proposed metrics enable direct comparison with conventional carbons and mineral adsorbents under similar conditions.

Bibliographic Information

JournalInternational Journal of Environmental Science and Technology
PublisherSpringer
Publication Date2026-02-01
Publication Year2026
Volume23
Issue2
Document TypeJournal Article
Print ISSN1735-1472
eISSN1735-2630
DOI10.1007/s13762-025-06837-z

Access Information

NARA Access Coverage2004-01-01~Current
Journal Homepagehttps://www.springer.com/journal/13762
Publisher PageOpen Publisher Page
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