Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis

Also available in printed version

Bibliographic Details
Main Author: Amni Haslinda Alpandi
Other Authors: Farhana Aziz, supervisor
Format: Master's thesis
Language:English
Published: Universiti Teknologi Malaysia 2025
Subjects:
Online Access:https://utmik.utm.my/handle/123456789/57310
Abstract Abstract here
_version_ 1855605546387767296
author Amni Haslinda Alpandi
author2 Farhana Aziz, supervisor
author_facet Farhana Aziz, supervisor
Amni Haslinda Alpandi
author_sort Amni Haslinda Alpandi
description Also available in printed version
format Master's thesis
id utm-123456789-57310
institution Universiti Teknologi Malaysia
language English
publishDate 2025
publisher Universiti Teknologi Malaysia
record_format DSpace
record_pdf Restricted
spelling utm-123456789-573102025-08-20T22:14:04Z Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis Amni Haslinda Alpandi Farhana Aziz, supervisor Chemical engineering Also available in printed version Humic acid (HA) is categorised as a natural organic matter (NOM). Excessive concentrations of HA present in water treatment system may lead to adverse effects such as undesirable taste, effluent coloration towards and production of carcinogenic by-products such as trihalomethanes. One promising way of HA elimination is by photocatalysis. Lanthanum orthoferrites (LaFeO3) has been regarded as an efficient visible-light driven photocatalyst due to its narrow band gap. In order to synthesize LaFeO3 nanoparticles, chelation is one of the important chemical processes to form the interaction between metals that directly affects the physicochemical properties of the nanoparticles. One of the common chelating agents used is glucose. However, synthesized LaFeO3 face issues in their physicochemical properties such as low surface area and poor morphology when glucose is used as the main chelating agent. Therefore, the effect of citric acid addition on glucose as a secondary chelating agent was investigated in this study. Interestingly, after the addition of citric acid (LFO2), the BET surface area dramatically increased from 15.68 m2/g to 40.77 m2/g. The field emission scanning electron microscopic (FESEM) images showed that LFO2 possesses a better spherical-shaped like growth and less agglomeration. More importantly, results revealed that LFO2 degraded 80% of HA within 120 minutes, which is a 1.3-fold increment compared to LFO1 (glucose only). Furthermore, the effects of different calcination temperatures (400 癈, 500 癈 and 600 癈) were also investigated using glucose and citric acid as a dual chelating agent. From the study, LaFeO3 nanoparticles calcined at 400 癈 were selected as the most promising photocatalyst due to its amorphous nature which benefits from the presence of surface defect. In addition, the amorphous LaFeO3 also recorded the highest surface area with a value of 70.02 m2/g which contributed to the enhancement of photocatalytic activity for the degradation of HA. Besides that, effect of operational parameters such as photocatalyst loading (0.6-1.20 g/L), initial concentration of HA (10-40 mg/L) and aeration (presence of oxygen) for HA degradation under visible light irradiation were studied using the amorphous LaFeO3. Overall, the optimal values for degradation of HA were observed to be at a catalyst loading of 1.0 g/L and initial concentration of 10 mg/L. The result also showed that the presence of oxygen as electron acceptor from aerated samples preventing recombination of electrons and holes, thus enhancing the photocatalytic degradation. In a nutshell, the perovskite basedphotocatalyst, LaFeO3 was successfully synthesized using glucose and citric acid as a dual chelating agent assisted by low temperature calcination. fahmimoksen UTM 155 p. Thesis (Sarjana Falsafah) - Universiti Teknologi Malaysia, 2019 2025-03-17T04:38:38Z 2025-03-17T04:38:38Z 2019 Master's thesis https://utmik.utm.my/handle/123456789/57310 vital:131607 valet-20200129-084151 ENG Closed Access UTM Complete Completion Unpublished application/pdf Universiti Teknologi Malaysia
spellingShingle Chemical engineering
Amni Haslinda Alpandi
Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis
thesis_level Master
title Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis
title_full Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis
title_fullStr Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis
title_full_unstemmed Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis
title_short Preparation, characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis
title_sort preparation characterization and performance evaluation of lanthanum orthoferrites for humic acid removal via photocatalysis
topic Chemical engineering
url https://utmik.utm.my/handle/123456789/57310
work_keys_str_mv AT amnihaslindaalpandi preparationcharacterizationandperformanceevaluationoflanthanumorthoferritesforhumicacidremovalviaphotocatalysis