| [1] |
Smith GL, Eyley JE, Han X, Zhang X, Li J, et al. 2019. Reversible coordinative binding and separation of sulfur dioxide in a robust metal-organic framework with open copper sites. |
| [2] |
Ahmed I, Jhung SH. 2016. Adsorptive desulfurization and denitrogenation using metal-organic frameworks. |
| [3] |
Danmaliki GI, Saleh TA, Shamsuddeen AA. 2017. Response surface methodology optimization of adsorptive desulfurization on nickel/activated carbon. |
| [4] |
Liao J, Wang Y, Chang L, Bao W. 2015. Preparation of M/γ-Al2O3 sorbents and their desulfurization performance in hydrocarbons. |
| [5] |
Yu M, Zhang N, Fan L, Zhang C, He X, et al. 2015. Removal of organic sulfur compounds from diesel by adsorption on carbon materials. |
| [6] |
Lee KX, Valla JA. 2019. Adsorptive desulfurization of liquid hydrocarbons using zeolite-based sorbents: a comprehensive review. |
| [7] |
Zhou Y, Li P, Wang Y, Zhao Q, Sun H. 2023. Progress in the separation and purification of carbon hydrocarbon compounds using MOFs and molecular sieves. |
| [8] |
Ghadiri M, Ghaemi A, Shayanmehr M. 2026. A comprehensive review on exploring the potential and behavior of carbon-based adsorbents in the adsorptive desulfurization processes. |
| [9] |
Saha B, Vedachalam S, Dalai AK. 2021. Review on recent advances in adsorptive desulfurization. |
| [10] |
Dehghan R, Anbia M. 2017. Zeolites for adsorptive desulfurization from fuels: a review. |
| [11] |
Yoosuk B, Silajan A, Prasassarakich P. 2020. Deep adsorptive desulfurization over ion-exchanged zeolites: individual and simultaneous effect of aromatic and nitrogen compounds. |
| [12] |
Duan J, Pan Y, Liu G, Jin W. 2018. Metal-organic framework adsorbents and membranes for separation applications. |
| [13] |
Blanco-Brieva G, Campos-Martin JM, Al-Zahrani SM, Fierro JLG. 2011. Effectiveness of metal–organic frameworks for removal of refractory organo-sulfur compound present in liquid fuels. |
| [14] |
Cychosz KA, Wong-Foy AG, Matzger AJ. 2008. Liquid phase adsorption by microporous coordination polymers: removal of organosulfur compounds. |
| [15] |
Ullman AM, Brown JW, Foster ME, Léonard F, Leong K, et al. 2016. Transforming MOFs for energy applications using the Guest@MOF concept. |
| [16] |
Park JH, Ok YS, Kim SH, Cho JS, Heo JS, et al. 2016. Competitive adsorption of heavy metals onto sesame straw biochar in aqueous solutions. |
| [17] |
Kökçam-Demir Ü, Goldman A, Esrafili L, Gharib M, Morsali A, et al. 2020. Coordinatively unsaturated metal sites (open metal sites) in metal–organic frameworks: design and applications. |
| [18] |
Van de Voorde B, Hezinová M, Lannoeye J, Vandekerkhove A, Marszalek B, et al. 2015. Adsorptive desulfurization with CPO-27/MOF-74: an experimental and computational investigation. |
| [19] |
Vitillo JG, Regli L, Chavan S, Ricchiardi G, Spoto G, et al. 2008. Role of exposed metal sites in hydrogen storage in MOFs. |
| [20] |
Jia SY, Zhang YF, Liu Y, Qin FX, Ren HT, et al. 2013. Adsorptive removal of dibenzothiophene from model fuels over one-pot synthesized PTA@MIL-101(Cr) hybrid material. |
| [21] |
Kaur P, Chopra HK. 2022. SBA-15 supported benzoxazolium-based ionic liquids: synthesis, characterization, and application in the adsorptive desulfurization. |
| [22] |
Luo J, Chao Y, Tang Z, Hua M, Li X, et al. 2019. Design of Lewis acid centers in bundlelike boron nitride for boosting adsorptive desulfurization performance. |
| [23] |
Xiang Y, Liu Z, Cheng ZL. 2024. Diatomite supported highly-dispersed ZnO/Zn-co-embedded ZIF-8 derived porous carbon composites for adsorption desulfurization. |
| [24] |
Wang C, Lu W, Wu W, Zhang L, Guo W, et al. 2023. Mechanical grinding of FeNC nanomaterial with Fe3O4 to construct magnetic adsorbents for desulfurization. |
| [25] |
He WW, Li SL, Li WL, Li JS, Yang GS, et al. 2013. Multipoint interactions enhanced H2 storage and organosulfur removal in a microporous metal–organic framework. |
| [26] |
Huang C, Tong Y, Li J, Peng J, Dong D, et al. 2023. Protonation-induced site and field reconstruction for ultrafast adsorptive desulfurization over Cu−N−C. |
| [27] |
Shah SS, Ahmad I, Ahmad W, Ishaq M, Gul K, et al. 2018. Study on adsorptive capability of acid activated charcoal for desulphurization of model and commercial fuel oil samples. |
| [28] |
Shah SS, Ahmad I, Ahmad W. 2016. Adsorptive desulphurization study of liquid fuels using Tin (Sn) impregnated activated charcoal. |
| [29] |
Li SL, Lan YQ, Sakurai H, Xu Q. 2012. Unusual regenerable porous metal–organic framework based on a new triple helical molecular necklace for separating organosulfur compounds. |
| [30] |
Van de Voorde B, Bueken B, Denayer J, De Vos D. 2014. Adsorptive separation on metal–organic frameworks in the liquid phase. |
| [31] |
Maes M, Trekels M, Boulhout M, Schouteden S, Vermoortele F, et al. 2011. Selective removal of N-heterocyclic aromatic contaminants from fuels by Lewis acidic metal–organic frameworks. |
| [32] |
Ghassa M, Khorashe F, Hajjar Z, Soltanali S. 2023. Comparative study on adsorptive desulfurization of thiophenic compounds over terephthalic acid-based and trimesic acid-based metal–organic frameworks. |
| [33] |
Gupta NK, Kim S, Bae J, Kim KS. 2021. Chemisorption of hydrogen sulfide over copper-based metal–organic frameworks: methanol and UV-assisted regeneration. |
| [34] |
Kundu M, Hasegawa T, Terabe K, Yamamoto K, Aono M. 2008. Structural studies of copper sulfide films: effect of ambient atmosphere. |
| [35] |
Foo KY, Hameed BH. 2010. Insights into the modeling of adsorption isotherm systems. |
| [36] |
Ru J, Wang X, Wang F, Cui X, Du X, et al. 2021. UiO series of metal-organic frameworks composites as advanced sorbents for the removal of heavy metal ions: synthesis, applications and adsorption mechanism. |
| [37] |
Matoori H, Pour AN, Shadmehri MA. 2025. Adsorptive desulfurization of model fuel by using Co/g-C3N4 as an adsorbent. |
| [38] |
Simonin JP. 2016. On the comparison of pseudo-first order and pseudo-second order rate laws in the modeling of adsorption kinetics. |