Javascript must be enabled to continue!
EDTA functionalized pine needle biochar (EDTA@BC); a valorized bio‐material for removal of Ni(II) from aqueous solution
View through CrossRef
AbstractThe preparation of ethylenediaminetetraacetic acid (EDTA) functionalized pine needles biochar (EDTA@BC) as a low‐cost active adsorbent and its effectiveness in removing Ni(II) from aqueous solution at various conditions is reported in this paper. First, alkali activation was selected to render the pine needle biochar with an excellent porous structure and increased concentration of hydroxyl groups to facilitate grafting. Subsequently, a simple method was utilized to graft EDTA onto the biochar. The prepared EDTA@BC was characterized by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and energy dispersive x‐ray spectrometry (EDX). Batch adsorption studies were conducted to assess the impact of various parameters such as solution pH, adsorbent dosage, adsorbate volume, and shaking time on the removal efficiency of Ni(II). At pH 6, 100 mg dosage, 4 mL of adsorbate volume, and 10 min of shaking time, the maximum removal efficiency of Ni(II) was observed to be 89%. EDTA@BC showed reasonable sorption performance still after the third cycle of regeneration. The effect of interfering ions such as Pb, Cr, Cu, and Hg was evaluated, resulting a decrease of 69%, 78%, 76%, and 68%, respectively, in its sorption capacity. The Langmuir model provided a better fit for Ni(II) in the concentration range of 0.1–2000 ppm under optimized conditions, with qmax of 46.69 ± 1.031 mg/g and KL of 0.001, compared with the Freundlich isotherm, which yielded n = 0.234 and χ2 = 2.7899, Temkin isotherm (R2 = 0.9520), and Redlich‐Peterson isotherm (R2 = 0.9725). The removal of Ni(II) by EDTA@BC was found to be the pseudo‐second‐order kinetics. Thermodynamic studies indicated adsorption process to be endothermic and nonspontaneous. Hence, a sustainable valorized bio‐material (EDTA@BC) is prepared having better sorption efficiency of Ni(II) from aqueous solution with possible wide applicability.Research Highlights
New EDTA functionalized indigenous pine needles biochar (EDTA@BC) was prepared.
This low‐cost active adsorbent found effective in removing Ni(II) from aqueous solution.
FTIR, SEM, and EDX proved synthesis and uptake of Ni(II) from aqueous solution.
Ni(II) removal, regeneration, interfering and adsorption studies were performed by UV–Vis spectroscopy.
Title: EDTA functionalized pine needle biochar (EDTA@BC); a valorized bio‐material for removal of Ni(II) from aqueous solution
Description:
AbstractThe preparation of ethylenediaminetetraacetic acid (EDTA) functionalized pine needles biochar (EDTA@BC) as a low‐cost active adsorbent and its effectiveness in removing Ni(II) from aqueous solution at various conditions is reported in this paper.
First, alkali activation was selected to render the pine needle biochar with an excellent porous structure and increased concentration of hydroxyl groups to facilitate grafting.
Subsequently, a simple method was utilized to graft EDTA onto the biochar.
The prepared EDTA@BC was characterized by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and energy dispersive x‐ray spectrometry (EDX).
Batch adsorption studies were conducted to assess the impact of various parameters such as solution pH, adsorbent dosage, adsorbate volume, and shaking time on the removal efficiency of Ni(II).
At pH 6, 100 mg dosage, 4 mL of adsorbate volume, and 10 min of shaking time, the maximum removal efficiency of Ni(II) was observed to be 89%.
EDTA@BC showed reasonable sorption performance still after the third cycle of regeneration.
The effect of interfering ions such as Pb, Cr, Cu, and Hg was evaluated, resulting a decrease of 69%, 78%, 76%, and 68%, respectively, in its sorption capacity.
The Langmuir model provided a better fit for Ni(II) in the concentration range of 0.
1–2000 ppm under optimized conditions, with qmax of 46.
69 ± 1.
031 mg/g and KL of 0.
001, compared with the Freundlich isotherm, which yielded n = 0.
234 and χ2 = 2.
7899, Temkin isotherm (R2 = 0.
9520), and Redlich‐Peterson isotherm (R2 = 0.
9725).
The removal of Ni(II) by EDTA@BC was found to be the pseudo‐second‐order kinetics.
Thermodynamic studies indicated adsorption process to be endothermic and nonspontaneous.
Hence, a sustainable valorized bio‐material (EDTA@BC) is prepared having better sorption efficiency of Ni(II) from aqueous solution with possible wide applicability.
Research Highlights
New EDTA functionalized indigenous pine needles biochar (EDTA@BC) was prepared.
This low‐cost active adsorbent found effective in removing Ni(II) from aqueous solution.
FTIR, SEM, and EDX proved synthesis and uptake of Ni(II) from aqueous solution.
Ni(II) removal, regeneration, interfering and adsorption studies were performed by UV–Vis spectroscopy.
Related Results
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct
Introduction
Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
APPLIKASI BIOCHAR BERBAHAN DASAR LIMBAH KAYU MERANTI (Shorea spp.) UNTUK PERTUMBUHAN MAHONI (Swietenia macrophylla) MENGGUNAKAN MEDIA TAILING EMAS MERANTI (Shorea spp.) BIOCHAR APPLICATION TO MAHONI (Swietenia macrophylla) GROWTH IN GOLD TAILING MEDIA
APPLIKASI BIOCHAR BERBAHAN DASAR LIMBAH KAYU MERANTI (Shorea spp.) UNTUK PERTUMBUHAN MAHONI (Swietenia macrophylla) MENGGUNAKAN MEDIA TAILING EMAS MERANTI (Shorea spp.) BIOCHAR APPLICATION TO MAHONI (Swietenia macrophylla) GROWTH IN GOLD TAILING MEDIA
ABSTRACTTailings are the final result of mining industry activities. Tailings are in the form of sludge waste produced from mining gold, copper, silver and other minerals. Tailings...
Impact of biochar amendment on soil microbial biomass carbon enhancement under field experiments: a meta-analysis
Impact of biochar amendment on soil microbial biomass carbon enhancement under field experiments: a meta-analysis
Abstract
Biochar is well-accepted as a viable climate mitigation strategy to promote agricultural and environmental benefits such as soil carbon sequestration and crop pr...
MAGNETICALLY MODIFIED SUGARCANE BAGASSE BIOCHAR AS CADMIUM REMOVAL AGENT IN WATER
MAGNETICALLY MODIFIED SUGARCANE BAGASSE BIOCHAR AS CADMIUM REMOVAL AGENT IN WATER
Heavy metals are hazardous to health at certain levels. Currently, heavy metals are removed by physicochemical treatments, such as adsorption, flotation, and electrochemical deposi...
Biochar enhanced microbial carbon use efficiency, while reducing mineralization of added and native soil organic carbon
Biochar enhanced microbial carbon use efficiency, while reducing mineralization of added and native soil organic carbon
Biochar can increase long-term soil organic carbon (SOC) storage due to its polyaromatic structure. In addition to the recalcitrant carbon (C) contained in the biochar itself, bioc...
A Fit-for-Purpose Biochar Index for Classifying Hard and Soft Biochars in Circular Carbon Storage Applications
A Fit-for-Purpose Biochar Index for Classifying Hard and Soft Biochars in Circular Carbon Storage Applications
As a multifunctional material for the circular bioeconomic applications and carbon storage, biochar is getting rapid attention. Addressing the lack of industrial application-orient...
What are the Implications for Public Policy in New Zealand regarding Biochar as a Climate Change Mitigation Tool?
What are the Implications for Public Policy in New Zealand regarding Biochar as a Climate Change Mitigation Tool?
<p>The past years have seen biochar appearing on the political radar as a potential greenhouse gas (GHG) mitigation tool. Biochar is a charcoal-like substance that is produce...
Improved removal performance of Gram-negative and Gram-positive bacteria in sand filtration system with arginine modified biochar amendment
Improved removal performance of Gram-negative and Gram-positive bacteria in sand filtration system with arginine modified biochar amendment
<p><span>Bacterial removal by sand filtration system is commonly inefficient due to the low bacterial adsorption capacity of sand. To improve the bacter...

