Recent progresses, challenges, and opportunities of carbon-based materials applied in heavy metal polluted soil remediation

T Fu, B Zhang, X Gao, S Cui, CY Guan, Y Zhang… - Science of The Total …, 2023 - Elsevier
The application of carbon-based materials (CBMs) for heavy metal polluted soil remediation
has gained growing interest due to their versatile properties and excellent remediation …

Arsenic removal from water and soils using pristine and modified biochars

W Zhang, Y Cho, M Vithanage, SM Shaheen… - Biochar, 2022 - Springer
Arsenic (As) is recognized as a persistent and toxic contaminant in the environment that is
harmful to humans. Biochar, a porous carbonaceous material with tunable functionality, has …

Synthesis, characterization and application of novel MnO and CuO impregnated biochar composites to sequester arsenic (As) from water: modeling, thermodynamics …

M Imran, MM Iqbal, J Iqbal, NS Shah, ZUH Khan… - Journal of Hazardous …, 2021 - Elsevier
The present study aimed at enhancing the adsorption potential of novel nanocomposites of
Sesbania bispinosa biochar (SBC) with copper oxide (SBC/CuO) and manganese oxide …

Arsenic sorption on zero-valent iron-biochar complexes

S Bakshi, C Banik, SJ Rathke, DA Laird - Water research, 2018 - Elsevier
Arsenic (As) is toxic to human and is often found in drinking water in India and Bangladesh,
due to the natural abundance of arsenides ores. Different removal procedures such as …

[图书][B] Arsenic: environmental chemistry, health threats and waste treatment

K Henke - 2009 - books.google.com
This book presents an overview of the chemistry, geology, toxicology and environmental
impacts of arsenic, presenting information on relatively common arsenic minerals and their …

Comparative study of graphene oxide, activated carbon and carbon nanotubes as adsorbents for copper decontamination

X Ren, J Li, X Tan, X Wang - Dalton Transactions, 2013 - pubs.rsc.org
This paper presents a comparative study of Cu (II) decontamination by three different
carbonaceous materials, ie, graphene oxide, multiwalled carbon nanotubes, and activated …

Ferrate (VI)-induced arsenite and arsenate removal by in situ structural incorporation into magnetic iron (III) oxide nanoparticles

R Prucek, J Tucek, J Kolařík, J Filip… - … science & technology, 2013 - ACS Publications
We report the first example of arsenite and arsenate removal from water by incorporation of
arsenic into the structure of nanocrystalline iron (III) oxide. Specifically, we show the …

Highly enhanced adsorption performance of U (VI) by non-thermal plasma modified magnetic Fe3O4 nanoparticles

S Duan, X Xu, X Liu, Y Wang, T Hayat, A Alsaedi… - Journal of colloid and …, 2018 - Elsevier
In this study, magnetic Fe 3 O 4 nanoparticles (MNP) modified with O-
phosphorylethanolamine (O-PEA) were successfully prepared by non-thermal plasma …

Adsorption of As (V) on surfactant-modified natural zeolites

P Chutia, S Kato, T Kojima, S Satokawa - Journal of Hazardous Materials, 2009 - Elsevier
Natural mordenite (NM), natural clinoptilolite (NC), HDTMA-modified natural mordenite
(SMNM) and HDTMA-modified natural clinoptilolite (SMNC) have been proposed for the …

Iron impregnated activated carbon as an efficient adsorbent for the removal of methylene blue: regeneration and kinetics studies

I Shah, R Adnan, WS Wan Ngah, N Mohamed - PloS one, 2015 - journals.plos.org
In this study, iron impregnated activated carbon (FeAC) was synthesized following an
oxidation and iron impregnation of activated carbon (AC). Both the AC and FeAC were …