The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water

The crisis of freshwater has been a big concern worldwide. Water contamination that occurs through the discharge of toxic pollutants from different natural and anthropogenic sources have worsened the situation. Adsorption has emerged as a simple and economical water treatment procedure although the...

Full description

Bibliographic Details
Main Author: Rashid, Mohammad Mamunur
Format: Others
Published: FIU Digital Commons 2018
Subjects:
Online Access:https://digitalcommons.fiu.edu/etd/3745
https://digitalcommons.fiu.edu/cgi/viewcontent.cgi?article=5065&context=etd
id ndltd-fiu.edu-oai-digitalcommons.fiu.edu-etd-5065
record_format oai_dc
spelling ndltd-fiu.edu-oai-digitalcommons.fiu.edu-etd-50652019-10-11T03:10:37Z The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water Rashid, Mohammad Mamunur The crisis of freshwater has been a big concern worldwide. Water contamination that occurs through the discharge of toxic pollutants from different natural and anthropogenic sources have worsened the situation. Adsorption has emerged as a simple and economical water treatment procedure although the challenge is to find the right adsorbent that can efficiently remove the target contaminant followed by their easy recovery from the reaction vessel. In this dissertation, I have focused on the synthesis, characterizations and applications of environmentally compatible and magnetic humic acid coated magnetite nanoparticles (HA-MNP) as a potential adsorbent for water purification. Phosphate is an essential nutrient for many plants and organisms in the environment. However, it can also cause water pollution when present in excess amounts. The adsorption experiments showed that the laboratory synthesized nanoparticles (HA-MNP) can remove more than 90% of phosphate from water mainly through the mechanism of chemisorption. The overall removal process is spontaneous, endothermic and favorable. Water contamination by arsenic is considered one of the biggest natural disasters in human history. In the study, HA-MNP has been applied for the successful trapping and separation of two highly toxic inorganic As species, As(III) and As(V) from water. The removal of As(V) was faster than As(III) for the same initial arsenic concentration and HA-MNP loading. The binding of As species is mainly attributed to three different phases, rapid surface association, intraparticle diffusion and equilibrium adsorption. Selenium is a micronutrient for humans that can be toxic at modest concentrations. The remediation of toxic selenium species, Se(IV) and Se(VI) by using HA-MNP has been found effective under a variety of environmental conditions except at highly alkaline pH and the presence of sulfate and phosphate in aqueous solution. Selenite or Se(IV) forms strong inner sphere complexes while Se(VI) forms relatively weaker outer sphere complexes with the adsorbent sites. The oxidation and adsorption of As(III) is explored by using the photocatalytic and adsorptive behavior of HA-MNP. The higher removal efficiency is attained through the reactive oxygen species mediated photo-conversion As(III) to As(V). Combination of oxygen and 350 nm light provides the best results. 2018-06-11T07:00:00Z text application/pdf https://digitalcommons.fiu.edu/etd/3745 https://digitalcommons.fiu.edu/cgi/viewcontent.cgi?article=5065&context=etd http://creativecommons.org/licenses/by/4.0/ FIU Electronic Theses and Dissertations FIU Digital Commons Nanoparticles humic acid adsorption water treatment arsenic selenium phosphorous photocatalysis magnetite Analytical Chemistry Environmental Chemistry Materials Chemistry
collection NDLTD
format Others
sources NDLTD
topic Nanoparticles
humic acid
adsorption
water treatment
arsenic
selenium
phosphorous
photocatalysis
magnetite
Analytical Chemistry
Environmental Chemistry
Materials Chemistry
spellingShingle Nanoparticles
humic acid
adsorption
water treatment
arsenic
selenium
phosphorous
photocatalysis
magnetite
Analytical Chemistry
Environmental Chemistry
Materials Chemistry
Rashid, Mohammad Mamunur
The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water
description The crisis of freshwater has been a big concern worldwide. Water contamination that occurs through the discharge of toxic pollutants from different natural and anthropogenic sources have worsened the situation. Adsorption has emerged as a simple and economical water treatment procedure although the challenge is to find the right adsorbent that can efficiently remove the target contaminant followed by their easy recovery from the reaction vessel. In this dissertation, I have focused on the synthesis, characterizations and applications of environmentally compatible and magnetic humic acid coated magnetite nanoparticles (HA-MNP) as a potential adsorbent for water purification. Phosphate is an essential nutrient for many plants and organisms in the environment. However, it can also cause water pollution when present in excess amounts. The adsorption experiments showed that the laboratory synthesized nanoparticles (HA-MNP) can remove more than 90% of phosphate from water mainly through the mechanism of chemisorption. The overall removal process is spontaneous, endothermic and favorable. Water contamination by arsenic is considered one of the biggest natural disasters in human history. In the study, HA-MNP has been applied for the successful trapping and separation of two highly toxic inorganic As species, As(III) and As(V) from water. The removal of As(V) was faster than As(III) for the same initial arsenic concentration and HA-MNP loading. The binding of As species is mainly attributed to three different phases, rapid surface association, intraparticle diffusion and equilibrium adsorption. Selenium is a micronutrient for humans that can be toxic at modest concentrations. The remediation of toxic selenium species, Se(IV) and Se(VI) by using HA-MNP has been found effective under a variety of environmental conditions except at highly alkaline pH and the presence of sulfate and phosphate in aqueous solution. Selenite or Se(IV) forms strong inner sphere complexes while Se(VI) forms relatively weaker outer sphere complexes with the adsorbent sites. The oxidation and adsorption of As(III) is explored by using the photocatalytic and adsorptive behavior of HA-MNP. The higher removal efficiency is attained through the reactive oxygen species mediated photo-conversion As(III) to As(V). Combination of oxygen and 350 nm light provides the best results.
author Rashid, Mohammad Mamunur
author_facet Rashid, Mohammad Mamunur
author_sort Rashid, Mohammad Mamunur
title The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water
title_short The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water
title_full The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water
title_fullStr The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water
title_full_unstemmed The Investigation of Photocatalytic and Adsorptive Properties of Humic Acid Grafted Magnetite Nanoparticles for the Remediation of Arsenic, Selenium and Phosphorous from Water
title_sort investigation of photocatalytic and adsorptive properties of humic acid grafted magnetite nanoparticles for the remediation of arsenic, selenium and phosphorous from water
publisher FIU Digital Commons
publishDate 2018
url https://digitalcommons.fiu.edu/etd/3745
https://digitalcommons.fiu.edu/cgi/viewcontent.cgi?article=5065&context=etd
work_keys_str_mv AT rashidmohammadmamunur theinvestigationofphotocatalyticandadsorptivepropertiesofhumicacidgraftedmagnetitenanoparticlesfortheremediationofarsenicseleniumandphosphorousfromwater
AT rashidmohammadmamunur investigationofphotocatalyticandadsorptivepropertiesofhumicacidgraftedmagnetitenanoparticlesfortheremediationofarsenicseleniumandphosphorousfromwater
_version_ 1719264015165685760