[1] Mohr S., Wang J., Ellem G., Ward J., Giurco D.,
Projection of World Fossil Fuels by Country,
Fuel, 141: 120-135 (2015).
[2] U.S. Environmental Protection Agency,
Integrated Science Assessment for Sulfur Oxides, Health Criteria, (2009).
[3] U.S. Environmental Protection Agency,
Integrated Science Assessment for Oxides of Nitrogen, Health Criteria, (2016).
[4]
Fang W.,
Inventory of US Greenhouse Gas Emissions and Sinks, 1990–2003,
Clean Air Markets Division, 12: 759-783 (2004).
[6] Paucar N.E., Kiggins P., Blad B., De Jesus K., Afrin F., Pashikanti S., Sharma K.,
Ionic Liquids for the Removal of Sulfur and Nitrogen Compounds in Fuels: A Review,
Environmental Chemistry Letters, 19: 1205-1228 (2021).
[8] Subhan F., Aslam S., Yan Z., Liu Z., Etim U.J., Wadood A., Ullah R.,
Confinement of Mesopores within Zsm-5 and Functionalization with Ni Nps for Deep Desulfurization,
Chemical Engineering Journal, 354: 706-715 (2018).
[9] Tian F., Shen Q., Fu Z., Wu Y., Jia C.,
Enhanced Adsorption Desulfurization Performance over Hierarchically Structured Zeolite Y,
Fuel Processing Technology, 128: 176-182 (2014).
[10]
Ahmadpour J., Ahmadi M., Javdani A.,
Hydrodesulfurization Unit for Natural Gas Condensate,
Journal of Thermal Analysis and Calorimetry, 135(3): 1943-1949 (2018).
[12]
Chen X., Yuan S., Abdeltawab A.A., Al-Deyab S.S., Zhang J., Yu L., Yu G.,
Extractive Desulfurization and Denitrogenation of Fuels using Functional Acidic Ionic Liquids,
Separation and Purification Technology, 133: 187-193 (2014).
[13]
Martinez I., El-Said Mohamed M., Santos V.E., Garcia J.L., Garcia-Ochoa F., Diaz E.,
Metabolic and Process Engineering for Biodesulfurization in Gram-Negative Bacteria,
J Biotechnol, 262: 47-55 (2017).
[17]
Srivastav A., Srivastava V.C.,
Adsorptive Desulfurization by Activated Alumina,
J. Hazard. Mater., 170(2-3): 1133-1140 (2009).
[18]
Subhan F., Aslam S., Yan Z., Ahmad A., Etim U.J., Naeem M., Zhen L., Ikram M., Yaseen M.,
Highly Dispersive Lanthanum Oxide Fabricated in Confined Space of Sba-15 for Adsorptive Desulfurization,
Chemical Engineering Journal, 384: 123271 (2020).
[20]
Takahashi A., Yang F.H., Yang R.T.,
New Sorbents for Desulfurization by Π-Complexation: Thiophene/Benzene Adsorption,
Industrial & Engineering Chemistry Research, 41(10): 2487-2496 (2002).
[21]
Weitkamp J.,
Zeolites and Catalysis,
Solid state ionics, 131(1-2): 175-188 (2000).
[22] رحمانی, نیلوفر؛ باقری گرمارودی, امیر؛ خانمحمدی خرمی, محمدرضا؛
بهینه سازی شرایط سنتز نانوزئولیت ZSM-5 بدون قالب با استفاده از طراحی آزمایش، نشریه شیمی و مهندسی شیمی ایران، 37(3): 27-36 (1397).
[23]
Kanyi C.,
Mesoporous Zeolites: Preparation, Characterization and Applications,
Johnson Matthey Technology Review, 60(1): 25-28 (2016).
[24]
Hemelsoet K., Van der Mynsbrugge J., De Wispelaere K., Waroquier M., Van Speybroeck V.,
Unraveling the Reaction Mechanisms Governing Methanol‐to‐Olefins Catalysis by Theory and Experiment,
Chem. Phys. Chem, 14(8): 1526-1545 (2013).
[25] دشت پیما, قاسم؛ شعبانیان, سیدرضا؛ احمدپور, جواد؛ نیک زاد, مریم؛
بررسی آزمایشگاهی جذب سطحی ترکیبهای گوگردی از نمونه سوخت بنزینی ساختگی توسط جاذب زئولیتی NaY اصلاح شده، نشریه شیمی و مهندسی شیمی ایران، 41(4): 131-154 (1401).
[27]
Möller K., Bein T.,
Mesoporosity–a New Dimension for Zeolites,
Chemical Society Reviews, 42(9): 3689-3707 (2013).
[28]
Li H., Dong L., Zhao L., Cao L., Gao J., Xu C.,
Enhanced Adsorption Desulfurization Performance over Mesoporous ZSM-5 by Alkali Treatment,
Industrial & Engineering Chemistry Research, 56(14): 3813-3821 (2017).
[31]
Hernández-Maldonado A.J., Yang R.T.,
Desulfurization of Commercial Liquid Fuels by Selective Adsorption Via Π-Complexation with Cu (I)− Y Zeolite,
Industrial & engineering chemistry research, 42(13): 3103-3110 (2003).
[32]
Zhang Z.Y., Shi T.B., Jia C.Z., Ji W.J., Chen Y., He M.Y.,
Adsorptive Removal of Aromatic Organosulfur Compounds over the Modified Na-Y Zeolites,
Applied Catalysis B: Environmental, 82(1-2): 1-10 (2008).
[33]
Groen J.C., Jansen J.C., Moulijn J.A., Pérez-Ramírez J.,
Optimal Aluminum-Assisted Mesoporosity Development in Mfi Zeolites by Desilication,
The Journal of Physical Chemistry B, 108(35): 13062-13065 (2004).
[35]
Sadowska K., Góra-Marek K., Drozdek M., Kuśtrowski P., Datka J., Martinez Triguero J., Rey F.,
Desilication of Highly Siliceous Zeolite ZSM-5 with Naoh and Naoh/Tetrabutylamine Hydroxide,
Microporous and Mesoporous Materials, 168: 195-205 (2013).
[38]
Velu S., Ma X., Song C.,
Selective Adsorption for Removing Sulfur from Jet Fuel over Zeolite-Based Adsorbents,
Industrial & engineering chemistry research, 42(21): 5293-5304 (2003).
[39]
Mo Z., Wang S., Hui Y., Kong W., Zhai P., Wang H., Zu Y., Qin Y., Song L.,
Enhanced Adsorption Desulfurization Performance over Cucey Zeolites Prepared by Low‐Temperature Calcination under H2 Atmosphere,
ChemistrySelect, 5(41): 12711-12720 (2020).
[40]
Liao J., Zhang Y., Fan L., Chang L., Bao W.,
Insight into the Acid Sites over Modified Nay Zeolite and Their Adsorption Mechanisms for Thiophene and Benzene,
Industrial & Engineering Chemistry Research, 58(11): 4572-4580 (2019).
[41]
Sun H.-Y., Sun L.-P., Li F., Zhang L.,
Adsorption of Benzothiophene from Fuels on Modified Nay Zeolites,
Fuel Processing Technology, 134: 284-289 (2015).
[42]
Wang J., Xu F., Xie W.J., Mei Z.J., Zhang Q.Z., Cai J., Cai W.M.,
The Enhanced Adsorption of Dibenzothiophene onto Cerium/Nickel-Exchanged Zeolite Y,
J. Hazard Mater., 163(2-3): 538-543 (2009).
[43]
Montazerolghaem M., Rahimi A., Seyedeyn-Azad F.,
Equilibrium and Kinetic Modeling of Adsorptive Sulfur Removal from Gasoline by Synthesized Ce–Y Zeolite,
Applied Surface Science, 257(2): 603-609 (2010).
[45]
Huang Y., Ma X., Liang G., Yan Y., Wang S.,
Adsorption Behavior of Cr (VI) on Organic-Modified Rectorite,
Chemical Engineering Journal, 138(1-3): 187-193 (2008).
[46]
Ho Y.-S.,
Review of Second-Order Models for Adsorption Systems,
Journal of hazardous materials, 136(3): 681-689 (2006).
[48]
Kan C.-C., Ibe A.H., Rivera K.K.P., Arazo R.O., de Luna M.D.G.,
Hexavalent Chromium Removal from Aqueous Solution by Adsorbents Synthesized from Groundwater Treatment Residuals,
Sustainable Environment Research, 27(4): 163-171 (2017).
[49]
Saha P., Chowdhury S.,
Insight into Adsorption Thermodynamics,
Thermodynamics, 16: 349-364 (2011).