Preparation and characterisation of chitosan-Hura crepitans pod biochar and evaluation of its fuel properties and adsorption capacity for methylene blue remediation

被引:0
作者
Nwanji, Obianuju L. [1 ,2 ,3 ]
Babalola, Jonathan O. [2 ,4 ]
Arotiba, Omotayo A. [3 ,5 ]
机构
[1] Alex Ekwueme Fed Univ Ndufu Alike, Dept Chem, Abakalik, Ebonyi, Nigeria
[2] Univ Ibadan, Dept Chem, Ibadan, Nigeria
[3] Univ Johannesburg, Ctr Nanomat Sci Res, Johannesburg, South Africa
[4] Bowen Univ, Ind Chem Programme, Iwo, Nigeria
[5] Univ Johannesburg, Dept Chem Sci, Doornfontein, ZA-2028 Johannesburg, South Africa
来源
ADSORPTION-JOURNAL OF THE INTERNATIONAL ADSORPTION SOCIETY | 2025年 / 31卷 / 04期
关键词
Biochar; Hura crepitans; Pyrolysis; Adsorption; Methylene blue; AQUEOUS-SOLUTION; LOW-COST; REMOVAL; ACID; SORPTION; WATER; EQUILIBRIUM; PYROLYSIS; SAWDUST;
D O I
10.1007/s10450-025-00625-4
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Towards the beneficiation of agricultural waste for water treatment and energy, Hura crepitans pods (HC), pyrolysed at 500, 600 and 700 degrees C with holding times of 30 and 60 min, were modified with chitosan and used for the adsorption of methylene blue. The biochar was characterised using pH of point of zero charge (pHpzc), elemental analysis, BET, FTIR spectroscopy, XRD and SEM-EDX. The pHpzc of HC was 9.2 and elemental analysis showed that the % carbon of the biochar was higher than that of the feedstock. The higher heating value of HC biochar was greater than 20 MJ kg(-1); projecting it as alternative solid-fuel source. The biochar appeared in the region for anthracite on van Krevelen diagram. Modification of the biochar with chitosan decreased the BET surface area. The FTIR spectra showed distinctive functional groups responsible for adsorption, XRD depicted the amorphous nature of the biochar. The adsorption capacity of HC biochar increased as the pyrolytic temperature and holding time increased from 500 to 700 degrees C and 30 to 60 min, respectively. Langmuir isotherm and pseudo-second order kinetic models gave the best fit to the experimental data. The monolayer adsorption capacity of HC7B biochar was 48.78 mg g(-1). Thermodynamic parameters showed that the adsorption process was endothermic, disorderly and spontaneous. The mechanism of adsorption was mainly by non-electrostatic interaction such as pi-pi interaction. The highest percentage desorption was achieved with 0.1 M H2SO4 and HC biochar was successfully regenerated after 5 cycles. Hura crepitans pod biochar was effective in the adsorption of MB from aqueous solution and modification with chitosan improved its adsorption capacity.
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页数:15
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共 60 条
[1]  
Abdulkadir MN., 2013, INT J SCI RES, V2, P440
[2]  
Adewuyi A., 2014, J FUEL, V2014, P1, DOI 10.1155/2014/464590
[3]   Highly efficient removal of diazinon pesticide from aqueous solutions by using coconut shell-modified biochar [J].
Baharum, Nor Atikah ;
Nasir, Hanisah Mohmad ;
Ishak, Mohd Yusoff ;
Isa, Noorain Mohd ;
Hassan, Mohd Ali ;
Aris, Ahmad Zaharin .
ARABIAN JOURNAL OF CHEMISTRY, 2020, 13 (07) :6106-6121
[4]   Biodegradation of methylene blue dye in a batch and continuous mode using biochar as packing media [J].
Bharti, Vikash ;
Vikrant, Kumar ;
Goswami, Mandavi ;
Tiwari, Himanshu ;
Sonwani, Ravi Kumar ;
Lee, Jechan ;
Tsang, Daniel C. W. ;
Kim, Ki-Hyun ;
Saeed, Mohd ;
Kumar, Sunil ;
Rai, Birendra Nath ;
Giri, Balendu Shekher ;
Singh, Ram Sharan .
ENVIRONMENTAL RESEARCH, 2019, 171 :356-364
[5]   Adsorption of emerging contaminants from water and wastewater by modified biochar: A review [J].
Cheng, Ning ;
Wang, Bing ;
Wu, Pan ;
Lee, Xinqing ;
Xing, Ying ;
Chen, Miao ;
Gao, Bin .
ENVIRONMENTAL POLLUTION, 2021, 273 (273)
[6]   Green Synthesis of Biogenic Zinc Oxide Nanoflower as Dual Agent for Photodegradation of an Organic Dye and Tyrosinase Inhibitor [J].
Ekennia, Anthony C. ;
Uduagwu, Dickson N. ;
Nwaji, Njemuwa N. ;
Oje, Obinna O. ;
Emma-Uba, Chimerem O. ;
Mgbii, Sandra I. ;
Olowo, Olawale J. ;
Nwanji, Obianuju L. .
JOURNAL OF INORGANIC AND ORGANOMETALLIC POLYMERS AND MATERIALS, 2021, 31 (02) :886-897
[7]   Removal of methylene blue from aqueous solution by sewage sludge-derived biochar: Adsorption kinetics, equilibrium, thermodynamics and mechanism [J].
Fan, Shisuo ;
Wang, Yi ;
Wang, Zhen ;
Tang, Jie ;
Tang, Jun ;
Li, Xuede .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2017, 5 (01) :601-611
[8]   Adsorption capacity of methylene blue, an organic pollutant, by montmorillonite clay [J].
Feddal, I. ;
Ramdani, A. ;
Taleb, S. ;
Gaigneaux, E. M. ;
Batis, N. ;
Ghaffour, N. .
DESALINATION AND WATER TREATMENT, 2014, 52 (13-15) :2654-2661
[9]  
Freundlich H., 1906, J PHYS CHEM-US, V57, P385, DOI [10.1515/zpch-1907-5723, DOI 10.1515/ZPCH-1907-5723]
[10]   A novel solid digestate-derived biochar-Cu NP composite activating H2O2 system for simultaneous adsorption and degradation of tetracycline [J].
Fu, Dun ;
Chen, Zheng ;
Xia, Dong ;
Shen, Liang ;
Wang, Yuanpeng ;
Li, Qingbiao .
ENVIRONMENTAL POLLUTION, 2017, 221 :301-310