Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva

Concentration of heavy metals present in industrial wastewaters should be reduced to permissible discharge level to prevent their harmful environmental effect. Adsorption provides effective removal of metals from wastewater. Palm shell activated carbon (PSAC) and microbial biomass of Bacillus subti...

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Main Author: Issabayeva, Gulnaziya
Format: Article
Language:English
Published: Universiti Teknologi MARA Cawangan Pulau Pinang 2017
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Online Access:http://ir.uitm.edu.my/id/eprint/28779/1/AJ_GULNAZIYA%20ISSABAYEVA%20EAJ%2017.pdf
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Institution: Universiti Teknologi Mara
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spelling my.uitm.ir.287792020-04-07T06:18:45Z http://ir.uitm.edu.my/id/eprint/28779/ Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva Issabayeva, Gulnaziya Adsorption Biomass Concentration of heavy metals present in industrial wastewaters should be reduced to permissible discharge level to prevent their harmful environmental effect. Adsorption provides effective removal of metals from wastewater. Palm shell activated carbon (PSAC) and microbial biomass of Bacillus subtilis (BS) and Aspergillus niger (AN) are low cost adsorbents. Their ability to adsorb Cu(II), Cd(II) and Zn(II) ions from wastewater in batch mode was investigated in this study. Combination of PSAC with microbial biomass resulted in the decrease of pHpzc, surface area and porosity of the adsorbents compared to the original PSAC. However, the concentration of surface functional groups and negative charge density increased. Each biosorbent exhibited selective adsorption affinity. Thus, BS-PSAC showed highest sorption of zinc ions, 0.27mol/L; AN-PSAC showed the highest removal of copper, 0.51mol/L; and cadmium was best removed by original PSAC, 0.28mol/L. The adsorption capacity of the original and biomodified PSACs was higher at pH 5-6; positive ΔH° values indicated endothermic nature of adsorption process. Kinetics data showed that adsorption followed pseudosecond-order reaction model.Overall, the results demonstrated that modification of PSAC with microbial biomass selectively improved adsorption efficiency of heavy metals removal from wastewater. Universiti Teknologi MARA Cawangan Pulau Pinang 2017-08 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/28779/1/AJ_GULNAZIYA%20ISSABAYEVA%20EAJ%2017.pdf Issabayeva, Gulnaziya (2017) Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva. ESTEEM Academic Journal, 13. 185 -194. ISSN 1675-7939 http://uppp.uitm.edu.my
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Adsorption
Biomass
spellingShingle Adsorption
Biomass
Issabayeva, Gulnaziya
Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva
description Concentration of heavy metals present in industrial wastewaters should be reduced to permissible discharge level to prevent their harmful environmental effect. Adsorption provides effective removal of metals from wastewater. Palm shell activated carbon (PSAC) and microbial biomass of Bacillus subtilis (BS) and Aspergillus niger (AN) are low cost adsorbents. Their ability to adsorb Cu(II), Cd(II) and Zn(II) ions from wastewater in batch mode was investigated in this study. Combination of PSAC with microbial biomass resulted in the decrease of pHpzc, surface area and porosity of the adsorbents compared to the original PSAC. However, the concentration of surface functional groups and negative charge density increased. Each biosorbent exhibited selective adsorption affinity. Thus, BS-PSAC showed highest sorption of zinc ions, 0.27mol/L; AN-PSAC showed the highest removal of copper, 0.51mol/L; and cadmium was best removed by original PSAC, 0.28mol/L. The adsorption capacity of the original and biomodified PSACs was higher at pH 5-6; positive ΔH° values indicated endothermic nature of adsorption process. Kinetics data showed that adsorption followed pseudosecond-order reaction model.Overall, the results demonstrated that modification of PSAC with microbial biomass selectively improved adsorption efficiency of heavy metals removal from wastewater.
format Article
author Issabayeva, Gulnaziya
author_facet Issabayeva, Gulnaziya
author_sort Issabayeva, Gulnaziya
title Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva
title_short Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva
title_full Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva
title_fullStr Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva
title_full_unstemmed Effect of microbial biomass presence on palm shell activated carbon for the adsorption of Cu, Cd and Zn/ Gulnaziya Issabayeva
title_sort effect of microbial biomass presence on palm shell activated carbon for the adsorption of cu, cd and zn/ gulnaziya issabayeva
publisher Universiti Teknologi MARA Cawangan Pulau Pinang
publishDate 2017
url http://ir.uitm.edu.my/id/eprint/28779/1/AJ_GULNAZIYA%20ISSABAYEVA%20EAJ%2017.pdf
http://ir.uitm.edu.my/id/eprint/28779/
http://uppp.uitm.edu.my
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