The Role of Oxygenated Functional Groups on Cadmium Removal using Pyrochar and Hydrochar Derived from Guadua angustifolia Residues

Author:

Navas-Cárdenas Carlos12ORCID,Caetano Manuel1,Endara Diana3,Jiménez Rocío2,Lozada Ana B.3,Manangón Lucía E.3ORCID,Navarrete Angélica2,Reinoso Carlos4,Sommer-Márquez Alicia E.1,Villasana Yanet2ORCID

Affiliation:

1. School of Chemical Sciences & Engineering, Yachay Tech University, Urcuquí 100119, Ecuador

2. Biomass Laboratory, Biomass to Resources Group, Universidad Regional Amazónica Ikiam, Tena 096975, Ecuador

3. Department of Extractive Metallurgy, Escuela Politécnica Nacional, Quito 170517, Ecuador

4. School of Physical Sciences & Nanotechnology, Yachay Tech University, Urcuquí 100119, Ecuador

Abstract

In the Ecuadorian Amazonia, there is a concern about the presence of high concentrations of cadmium (Cd) in rivers and sediments because of changes in land use and anthropogenic activities, e.g., mining and oil exploitation. Hence, the research related to water treatment processes to meet environmental standards has gained relevance. The use of biochar (BC) as adsorbent is considered a promising and low-cost alternative to improve the water quality in developing countries. In this work, lignocellulosic wastes from Guadua angustifolia were transformed through thermochemical treatments, into a promising carbonaceous material, such as BC. BC samples were prepared by pyrolysis (termed pyrochar, PC) and hydrothermal carbonization (termed hydrochar, HC). Their physicochemical properties were correlated with the Cd adsorption removal performance, analyzing the effect of adsorbent dosage, initial solution pH, adsorption kinetics and adsorption isotherms. HC showed the highest Cd adsorption performance, due to the presence of a higher number of oxygenated functional groups, as confirmed by FTIR, XPS and Raman spectroscopy. This research has proposed a sustainable alternative for the recovery of an available waste, contributing to mitigate the effects of the presence of metals on the health and economy of the most vulnerable sectors of society.

Funder

Ecuadorian Corporation for the Development of Research and the Academy

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

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