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المؤلفNasir, Muntaha
المؤلفJavaid, Farhan
المؤلفMasood, M. Talha
المؤلفArshad, Muhammad
المؤلفYasir, Muhammad
المؤلفSedlarik, Vladimir
المؤلفQadir, Muhammad Abdel
المؤلفQiblawey, Hazim
المؤلفZhang, Wenjuan
المؤلفDeen, Kashif Mairaj
المؤلفAsselin, Edouard
المؤلفAhmad, Nasir M.
تاريخ الإتاحة2026-01-20T10:05:15Z
تاريخ النشر2024
اسم المنشورEnvironmental Science: Advances
المصدرScopus
المعرّفhttp://dx.doi.org/10.1039/d3va00351e
الاقتباسNasir, Muntaha, Farhan Javaid, M. Talha Masood, Muhammad Arshad, Muhammad Yasir, Vladimir Sedlarik, Muhammad Abdel Qadir et al. "Regenerable chitosan-embedded magnetic iron oxide beads for nitrate removal from industrial wastewater." Environmental Science: Advances 3, no. 4 (2024): 572-584.
الرقم المعياري الدولي للكتاب27547000
معرّف المصادر الموحدhttp://hdl.handle.net/10576/69440
الملخصIndustrial sites worldwide significantly contribute to water pollution. Nitrates are a common effluent pollutant from such sites. Effective means to remove nitrate ions (NO3−) from polluted waters are needed. Chitosan beads, which are a non-toxic, biocompatible, and biodegradable polymer, are used for this purpose in this research. Iron-oxide nanoparticles are synthesized via the co-precipitation route and embedded into chitosan by chemical co-precipitation to form ion exchange chitosan beads (IECBs) for NO3− removal. The performance of the IECBs in a batch system was studied against NO3− adsorption from industrial water. Morphological, structural, and chemical characterization was performed by SEM, EDX mapping, BET, XRD, and FTIR, while the extent of NO3− adsorption was quantified using UV-vis spectroscopy. Different factors influencing the adsorption of NO3− on the IECBs were investigated, including the adsorbent dosage, pH of the solution, initial concentration, and interaction time. It is demonstrated that pseudo-second-order isothermal and kinetic models were best fits to the experimental data. It was found that the IECBs had a maximum adsorption capacity of 47.07 mg g−1 and could load up to ∼93% of the NO3− from the batch system. The regeneration efficiency for the IECBs over 5 cycles remained high in the range of 93% to 79%, indicating their potential for industrial water treatment use.
راعي المشروعThe authors are thankful to the National University of Sciences and Technology (NUST) Research Directorate, HEC, and NRPU through Project No. 6020 for all the technical assistance and financial support. The financial support from the Ministry of Education, Youth, and Sports of the Czech Republic DKRVO (RP/CPS/2022/002) is recognized by M. Y and V. S. The use of resources at the University of British Columbia is also acknowledged.
اللغةen
الناشرRoyal Society of Chemistry
الموضوعChitosan-based adsorbents
Magnetic iron oxide nanoparticles
Nitrate removal
Industrial wastewater treatment
Adsorption kinetics and isotherms
العنوانRegenerable chitosan-embedded magnetic iron oxide beads for nitrate removal from industrial wastewater
النوعArticle
الصفحات572-584
رقم العدد4
رقم المجلد3
dc.accessType Open Access


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