<?xml version="1.0" encoding="UTF-8"?>
<doi_batch version="4.3.0" xmlns="http://www.crossref.org/doi_resources_schema/4.3.0" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.crossref.org/doi_resources_schema/4.3.0 http://www.crossref.org/schema/deposit/doi_resources4.3.0.xsd">
<head>
<doi_batch_id>aaab160f-cbd5-44d1-aa43-0b8052dd65d9</doi_batch_id>
<depositor>
<name>beie</name>
<email_address>director@blueeyesintelligence.org</email_address>
</depositor>
</head>
<body>
<doi_citations>
<doi>10.35940/ijitee.J9427.08101021</doi>
<citation_list><citation key="ref0"><unstructured_citation>WIRTZ C. Energy, Transport and Environment Statistics, STATISTICAL BOOKS. Publications Office of the European Union. Belgium. IMPRIMERIES BIETLOT FRERES. 2019. Retrieved from https://ec.europa.eu&gt; documents &gt;KS-DK-19-001-EN-N; November 14, 2020.</unstructured_citation></citation><citation key="ref1"><unstructured_citation>MOURA PCM, REICHMUTH D and GATTI D. Inequitable Exposure to Air Pollution from Vehicles in Massachusetts. Union of Concerned Scientists 2019; Retrieved from https://www.jstor.org/ stable/resrep 24098; November 14, 2020.</unstructured_citation></citation><citation key="ref2"><doi>10.1016/B978-0-12-816774-8.00004-9</doi><unstructured_citation>Air and water pollution: An important nexus of transportation and health. Transportation and Public Health. 2019; 65-106. Retrieved from https://www.sciencedirect.com&gt;pii; November 14, 2000.</unstructured_citation></citation><citation key="ref3"><journal_title>Atmospheric Environment</journal_title><author>RAMANATHAN</author><volume>43</volume><issue>1</issue><first_page>37</first_page><cYear>2009</cYear><doi>10.1016/j.atmosenv.2008.09.063</doi><article_title>Air pollution, Greenhouse Gases and Climate Change: Global and Regional perspectives</article_title><unstructured_citation>RAMANATHAN V. and FENG Y. Air pollution, Greenhouse Gases and Climate Change: Global and Regional perspectives. Atmospheric Environment 2009; 43(1): 37-50.</unstructured_citation></citation><citation key="ref4"><journal_title>Journal of Geography Environment and Earth Science International</journal_title><author>Herndon</author><volume>17</volume><issue>2</issue><first_page>1</first_page><cYear>2018</cYear><doi>10.9734/JGEESI/2018/44290</doi><article_title>Air Pollution, Not Greenhouse Gases: The Principal Cause of Global Warming</article_title><unstructured_citation>Herndon M. Air Pollution, Not Greenhouse Gases: The Principal Cause of Global Warming. Journal of Geography, Environment and Earth Science International 2018; 17(2): 1-8.</unstructured_citation></citation><citation key="ref5"><journal_title>Toxicology</journal_title><author>T.O</author><volume>180</volume><first_page>139</first_page><cYear>2002</cYear><doi>10.1016/S0300-483X(02)00387-6</doi><article_title>Metabolic Modulation of Carbon Monoxide Toxicity</article_title><unstructured_citation>Stanley T.O. Metabolic Modulation of Carbon Monoxide Toxicity. Toxicology 2002; 180: 139-150.</unstructured_citation></citation><citation key="ref6"><doi>10.3390/ijerph13121219</doi><unstructured_citation>Yana J, Henrik A and Zhang S. Air Pollution Control Policies in China: A Retrospective and Prospects. International Journal of Environmental Research and Public Health 2016; 13(12): 12-19.</unstructured_citation></citation><citation key="ref7"><journal_title>Energy Procedia</journal_title><author>MOFIJUR</author><volume>160</volume><first_page>791</first_page><cYear>2019</cYear><doi>10.1016/j.egypro.2019.02.159</doi><article_title>Investigation of exhaust emissions from a stationary diesel engine fuel with biodiesel</article_title><unstructured_citation>MOFIJUR M, RASUL M, HASSAN NMS, UDDIN MN. Investigation of exhaust emissions from a stationary diesel engine fuel with biodiesel. Energy Procedia 2019; 160: 791-797.</unstructured_citation></citation><citation key="ref8"><journal_title>Egyptian Journal of Petroleum</journal_title><author>A.K</author><volume>28</volume><first_page>183</first_page><cYear>2019</cYear><doi>10.1016/j.ejpe.2019.03.001</doi><article_title>Effect of biodiesel fuels on diesel engine emission</article_title><unstructured_citation>ABED A.K, GAD S.M, El-MORSI K.A, SAYED M.M. Effect of biodiesel fuels on diesel engine emission. Egyptian Journal of Petroleum 2019; 28: 183-188.</unstructured_citation></citation><citation key="ref9"><unstructured_citation>James S.P, Busch S, McCormick L.R, Pihl A.J, Splitter A.D, Ratcliff A.M, Scott S, Miles P. What fuel Properties Enable Higher Thermal Efficiency in Spark-Ignited-engine. Progress in Energy and Combustion Science 2020; 00: 34-40.</unstructured_citation></citation><citation key="ref10"><journal_title>Progress in Energy and Combustion Science</journal_title><author>Wang</author><volume>61</volume><first_page>78</first_page><cYear>2017</cYear><doi>10.1016/j.pecs.2017.03.004</doi><article_title>Knocking Combustion in Spark-Ignition Engines</article_title><unstructured_citation>Wang Z, Liu H and Reitz D.R. Knocking Combustion in Spark-Ignition Engines. Progress in Energy and Combustion Science 2017; 61: 78-112.</unstructured_citation></citation><citation key="ref11"><journal_title>International Journal of Automotive and Mechanical Engineering</journal_title><author>KHALILIKHAH</author><volume>16</volume><issue>4</issue><first_page>7225</first_page><cYear>2019</cYear><doi>10.15282/ijame.16.4.2019.05.0539</doi><article_title>Modelling and Fuzzy-Threshold Control of SI Engine for Emission Reduction during Cold Start Phase</article_title><unstructured_citation>KHALILIKHAH O and SHALCHIAN M. Modelling and Fuzzy-Threshold Control of SI Engine for Emission Reduction during Cold Start Phase. International Journal of Automotive and Mechanical Engineering 2019; 16(4): 7225-7242.</unstructured_citation></citation><citation key="ref12"><doi>10.1590/S1678-58782005000300002</doi><unstructured_citation>VIANNA S.N.J, REIS V.A, OLIVEIRA S.B.A, SOUSA T.M. Reduction of Pollutants Emissions on SI Engines-Accomplishments with Efficiency Increase. Journal of the Brazilian Society of Mech. Sci. and Eng. 2005; 27(3): 217-222.</unstructured_citation></citation><citation key="ref13"><journal_title>Atmospheric Environment</journal_title><author>Asif</author><volume>40</volume><issue>31</issue><first_page>5967</first_page><cYear>2006</cYear><doi>10.1016/j.atmosenv.2005.11.064</doi><article_title>The Role of Inspection and Maintenance in Controlling Vehicular Emissions in Kathmandu Valley</article_title><unstructured_citation>Asif F, Bhakta B.B, Kumar N. The Role of Inspection and Maintenance in Controlling Vehicular Emissions in Kathmandu Valley. Atmospheric Environment 2006; 40(31): 5967-5975.</unstructured_citation></citation><citation key="ref14"><unstructured_citation>GADLEGAONKAR N, PATIL V, PARDESHI V, BAJGUDE T, PATEL A. Design and Analysis of Catalytic Converter of Automobile Engine. International Research Journal of Engineering and Technology 2019; 06(5): 7637-7644.</unstructured_citation></citation><citation key="ref15"><journal_title>International Journal of Energy Research</journal_title><author>A.A</author><volume>22</volume><first_page>483</first_page><cYear>1998</cYear><doi>10.1002/(SICI)1099-114X(199805)22:6&lt;483::AID-ER377&gt;3.0.CO;2-Z</doi><article_title>On The Emissions from Internal-Combustion Engines: A Review</article_title><unstructured_citation>Rahman A.A. On The Emissions from Internal-Combustion Engines: A Review. International Journal of Energy Research 1998; 22: 483-513.</unstructured_citation></citation><citation key="ref16"><unstructured_citation>VENKATESH, V, JAIKUMAR M, MYLAUDY, S RAJADURAI. CO Capture by Using Modified ZMS-5 Zeolite in Diesel Powered Vehicle. IOSR Journal of Mechanical and Civil Engineering 2016; 13: 2278-1684.</unstructured_citation></citation><citation key="ref17"><doi>10.1016/S0167-2991(04)80743-2</doi><unstructured_citation>CAPUTO D, COLELLA C, LUCOLANO F, CORBO P, MIGLIARDINI F, AIELLO R, CREA F. Reduction of Hydrocarbon Emission from Engine Exhaust Using Zeolite Adsorbent. Studies in Surface Science and Catalysis 2004; 154 (B).</unstructured_citation></citation><citation key="ref18"><journal_title>Chemical Engineering Journal</journal_title><author>Wang</author><volume>156</volume><first_page>11</first_page><cYear>2010</cYear><doi>10.1016/j.cej.2009.10.029</doi><article_title>Natural zeolites as effective adsorbents in water and wastewater treatment</article_title><unstructured_citation>Wang S, Peng Y. Natural zeolites as effective adsorbents in water and wastewater treatment. Chemical Engineering Journal 2010; 156: 11-24.</unstructured_citation></citation><citation key="ref19"><doi>10.1016/j.jhazmat.2006.10.036</doi><unstructured_citation>KULEYIN A. Removal of phenol and 4-chlorophenol by surfactant-modified natural zeolite, Journal of Hazardous Materials 2007; (144): 307-315.</unstructured_citation></citation><citation key="ref20"><journal_title>Journal of Molecular Liquids</journal_title><author>Wang</author><volume>207</volume><first_page>338</first_page><cYear>2015</cYear><doi>10.1016/j.molliq.2015.04.029</doi><article_title>Uptake of P b (II) and U (VI) ions from aqueous solutions by the ZSM-5 zeolite</article_title><unstructured_citation>Wang X, Shao D, Hou G, Wang XK, Alsaedi A, Ahmad B. Uptake of P b (II) and U (VI) ions from aqueous solutions by the ZSM-5 zeolite. Journal of Molecular Liquids 2015; 207: 338-342.</unstructured_citation></citation><citation key="ref21"><journal_title>Cogent Engineering</journal_title><author>ELBOUGHDIRI</author><volume>7</volume><first_page>1</first_page><cYear>2020</cYear><doi>10.1080/23311916.2020.1782623</doi><article_title>The use of natural zeolite to remove heavy metals Cu (II), Pb (II) and Cd (II), from industrial wastewater</article_title><unstructured_citation>ELBOUGHDIRI N. The use of natural zeolite to remove heavy metals Cu (II), Pb (II) and Cd (II), from industrial wastewater. Cogent Engineering 2020; 7: 1-13.</unstructured_citation></citation><citation key="ref22"><unstructured_citation>Rashad M, Salim M.E, and Assad F.F. Removal of Some Environmental Pollutants from Aqueous Solutions by Linde-Zeolite: Adsorption and Kinetic Study. Advances in Environmental Biology, 2012; 6(5): 1716-1724.</unstructured_citation></citation><citation key="ref23"><journal_title>Water Sci</journal_title><author>TAAMNEH</author><volume>7</volume><first_page>2021</first_page><cYear>2017</cYear><doi>10.1007/s13201-016-0382-7</doi><article_title>Appl</article_title><unstructured_citation>TAAMNEH Y, SHARADQAH S, The removal of heavy metals from aqueous solution using natural Jordanian zeolite. Appl. Water Sci. 2017; 7: 2021-2028.</unstructured_citation></citation><citation key="ref24"><doi>10.1186/2052-336X-12-7</doi><unstructured_citation>MEHDIZADEH S, SADJADI S, AHMADI J.S and OUTOKESH M. Removal of Heavy Metals from Aqueous Solution Using Platinum Nanoparticles/Zeolite-4A. Journal of Environmental Health Science &amp; Engineering 2014; 12(7).</unstructured_citation></citation><citation key="ref25"><doi>10.1016/j.jcis.2004.08.028</doi><unstructured_citation>ERDEM E, KARAPINAR N and DOONAT R. The removal of heavy metal cations by natural zeolites. J. of Colloid and Interface Sci. 2004; (280): 309-314.</unstructured_citation></citation><citation key="ref26"><journal_title>Asian Journal of Environment &amp; Ecology</journal_title><author>El-AZIM A.H</author><volume>7</volume><issue>1</issue><first_page>1</first_page><cYear>2018</cYear><doi>10.9734/AJEE/2018/41004</doi><article_title>Removal of Heavy Metals Cd (II), Fe (III) and Ni (II), from Aqueous Solutions by Natural Zeolites and Application to Industrial Wastewater</article_title><unstructured_citation>El-AZIM A.H, and MOURAD A.F. Removal of Heavy Metals Cd (II), Fe (III) and Ni (II), from Aqueous Solutions by Natural Zeolites and Application to Industrial Wastewater. Asian Journal of Environment &amp; Ecology 2018; 7(1): 1-13.</unstructured_citation></citation><citation key="ref27"><unstructured_citation>SALMAN H, SHAHEEN H, ABBAS G and KHALOUF N. Use of Syrian natural zeolite for heavy metals removal from industrial wastewater: Factors and mechanism. Journal of Entomology and Zoology Studies 2017; 5(4): 452-461.</unstructured_citation></citation><citation key="ref28"><journal_title>Desalination</journal_title><author>A.A</author><volume>225</volume><first_page>70</first_page><cYear>2008</cYear><doi>10.1016/j.desal.2007.07.006</doi><article_title>Utilization of Natural zeolite as ion-exchange and sorbent material in the removal of iron</article_title><unstructured_citation>Mohammed A.A, Zaid A.A. Utilization of Natural zeolite as ion-exchange and sorbent material in the removal of iron. Desalination 2008; 225: 70-81.</unstructured_citation></citation><citation key="ref29"><journal_title>International Journal of Innovative Technology and Exploring Engineering</journal_title><author>RAJAKRISHNAMOORTHY</author><volume>8</volume><issue>9</issue><first_page>1423</first_page><cYear>2019</cYear><doi>10.35940/ijitee.H6993.078919</doi><article_title>Emission Reduction in SI Engines by using metal doped Cu- ZSM5 and Ce-Cu-ZSM5 zeolite as Catalysts</article_title><unstructured_citation>RAJAKRISHNAMOORTHY P, ELAVARASAN G, KARTHIKEYAN D, SARAYANAN G.C. Emission Reduction in SI Engines by using metal doped Cu- ZSM5 and Ce-Cu-ZSM5 zeolite as Catalysts. International Journal of Innovative Technology and Exploring Engineering 2019; 8(9): 1423-1427.</unstructured_citation></citation><citation key="ref30"><unstructured_citation>PRASANNA V.D et al. Investigation of Nitrogen Reduction in Four Stroke Petrol Engine Using Zeolites As Adsorbent. Research Journal of Life Sciences, Bioinformatics, Pharmaceutical and Chemical Sciences 2019; 5(2): 897.</unstructured_citation></citation><citation key="ref31"><journal_title>Energy &amp; Fuels</journal_title><author>V.R</author><volume>17</volume><first_page>571</first_page><cYear>2003</cYear><doi>10.1021/ef020135l</doi><article_title>Adsorption of CO2, N2, and O2 on Natural Zeolites</article_title><unstructured_citation>SIRIWARDANE V.R, Shen S.M, and Fisher P.E. Adsorption of CO2, N2, and O2 on Natural Zeolites. Energy &amp; Fuels 2003; 17: 571-576.</unstructured_citation></citation><citation key="ref32"><journal_title>Mineral</journal_title><author>C.V</author><volume>8</volume><first_page>595</first_page><cYear>2018</cYear><doi>10.3390/min8120595</doi><article_title>Basic Treatment in Natural CLINOPTILOLITE for Improvement of Physicochemical Properties</article_title><unstructured_citation>Souza C.V, Rocha V.J, Araujo G.J.M, SAPAG K, and PERGHER C.B.S. Basic Treatment in Natural CLINOPTILOLITE for Improvement of Physicochemical Properties. Mineral 2018; 8: 595.</unstructured_citation></citation><citation key="ref33"><journal_title>Applied Surface Science</journal_title><author>WANG</author><volume>478</volume><first_page>319</first_page><cYear>2019</cYear><doi>10.1016/j.apsusc.2019.01.263</doi><article_title>Acid and Alkali Treatments for regulation of hydrophilicity/hydrophobicity of natural zeolite</article_title><unstructured_citation>WANG C, LENG S, GUO H, CAO L, HUANG J. Acid and Alkali Treatments for regulation of hydrophilicity/hydrophobicity of natural zeolite. Applied Surface Science 2019; 478: 319-326.</unstructured_citation></citation><citation key="ref34"><unstructured_citation>NHA-406EN, Automotive Emission Analyzer. Retrieved from https://www.alibaba.com/product-detail/07172255060.html; October 10, 2020.</unstructured_citation></citation><citation key="ref35"><unstructured_citation>CHAHAN Y.P, and TALIBA I.M. Design of Laboratory Scale Packed Bed Column for Adsorption of Phenol on to Modified Coal Fly Ash (MCFA). International Journal of Sci., Eng. and Tech. Research 2017; 6(4): 2278 -7798.</unstructured_citation></citation><citation key="ref36"><unstructured_citation>DJAMBAZOV S, YOLVA A. An Effect of a Natural Zeolite on the Characteristics of spring or Electrochemically Activated Water. Journal of Chemical Technology and Metallurgy 2018; 53(6):1195-1202.</unstructured_citation></citation><citation key="ref37"><journal_title>Journal of Molecular Liquids</journal_title><author>Wang</author><volume>207</volume><first_page>338</first_page><cYear>2015</cYear><doi>10.1016/j.molliq.2015.04.029</doi><article_title>Uptake of Pb (II) and U (VI) ions from aqueous solutions by the ZSM-5 zeolite</article_title><unstructured_citation>Wang X, Shao D, Hou G, Wang X.K, Alsaedi A, Ahmad B. Uptake of Pb (II) and U (VI) ions from aqueous solutions by the ZSM-5 zeolite. Journal of Molecular Liquids 2015; 207: 338-342.</unstructured_citation></citation><citation key="ref38"><doi>10.1186/2052-336X-12-7</doi><unstructured_citation>MEHDIZADEH S, SADJADI S, AHMADI JS and OUTOKESH M. Removal of Heavy Metals from Aqueous Solution Using Platinum Nanoparticles/Zeolite-4A. Journal of Environmental Health Science &amp; Engineering 2014; 12(7).</unstructured_citation></citation><citation key="ref39"><doi>10.1016/S1001-0742(07)60116-8</doi><unstructured_citation>HUANG SL, NG CO, GUO QZ, Experimental investigation of the effect of flow turbulence and sediment transport patterns on the adsorption of cadmium ions onto sediment particles. Journal of Environmental Sciences 2007; 19: 696-703.</unstructured_citation></citation><citation key="ref40"><unstructured_citation>HELFFERICH F. Ion Exchange. New York. Dover Publications. 1995. Retrieved from https://files.isec.pt BIBLIO; November 14, 2020.</unstructured_citation></citation><citation key="ref41"><journal_title>of Colloid and Interface Sci</journal_title><author>ZORPAS</author><volume>250</volume><first_page>1</first_page><cYear>2002</cYear><doi>10.1006/jcis.2002.8246</doi><article_title>J</article_title><unstructured_citation>ZORPAS AA, VASILIS I, LOIZIDOU M, and GRIGOROPOULOU H. Particle Size Effects on Uptake of Heavy Metals from Sewage Sludge Compost Using Natural Zeolite Clinoptilolite. J. of Colloid and Interface Sci. 2002; 250: 1-4.</unstructured_citation></citation><citation key="ref42"><journal_title>Technol</journal_title><author>WINGENFELDER</author><volume>39</volume><first_page>4606</first_page><cYear>2005</cYear><doi>10.1021/es048482s</doi><article_title>Sci</article_title><unstructured_citation>WINGENFELDER U, HANSEN C, FURER G, SCHULIN R. Removal of heavy metals from mine waters by natural zeolites environ. Sci. Technol. 2005; 39: 4606-4613.</unstructured_citation></citation><citation key="ref43"><doi>10.1016/j.jhazmat.2005.09.027</doi><unstructured_citation>ӦREN H.A and KAYA A. Factors Affecting Adsorption Characteristics of Zn2+ on Two Natural Zeolites. Journal of Hazardous Materials 2006; 131(B): 59-65.</unstructured_citation></citation></citation_list>
</doi_citations>
</body>
</doi_batch>
