Original language | English |
---|---|
Pages (from-to) | 1601-1610 |
Number of pages | 10 |
Journal | Environ. Sci. Process. Impacts |
Volume | 17 |
Issue number | 9 |
DOIs | |
Publication status | Published (VoR) - 2015 |
Keywords
- biodiesel
- carbon
- fatty acid ester
- oxygen
- polyunsaturated fatty acid
- reactive oxygen metabolite
- air pollutant
- biofuel
- particulate matter
- Article
- biofuel production
- biotechnological production
- combustion
- density
- exhaust gas
- microalga
- nonhuman
- oxidation reduction potential
- oxygen concentration
- priority journal
- surface tension
- viscosity
- analysis
- oxidation reduction reaction
- Air Pollutants
- Biofuels
- Microalgae
- Oxidation-Reduction
- Particulate Matter
- Reactive Oxygen Species
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In: Environ. Sci. Process. Impacts, Vol. 17, No. 9, 2015, p. 1601-1610.
Research output: Contribution to journal › Article › peer-review
TY - JOUR
T1 - Particle emissions from microalgae biodiesel combustion and their relative oxidative potential
T2 - Environmental Sciences: Processes and Impacts
AU - Rahman, M.M.
AU - Stevanovic, S.
AU - Islam, M.A.
AU - Heimann, K.
AU - Nabi, M.N.
AU - Thomas, G.
AU - Feng, B.
AU - Brown, R.J.
AU - Ristovski, Z.D.
N1 - Cited By :33 Export Date: 17 February 2023 Correspondence Address: Ristovski, Z.D.; International Laboratory of Air Quality and Health (ILAQH), Australia Chemicals/CAS: carbon, 7440-44-0; oxygen, 7782-44-7; Air Pollutants; Biofuels; Particulate Matter; Reactive Oxygen Species References: Salvi, B.L., Panwar, N.L., Biodiesel resources and production technologies-A review (2012) Renewable Sustainable Energy Rev., 16 (6), pp. 3680-3689; Salamanca, M., Mondragón, F., Agudelo, J.R., Santamaría, A., Influence of palm oil biodiesel on the chemical and morphological characteristics of particulate matter emitted by a diesel engine (2012) Atmos. Environ., 62, pp. 220-227; Lapuerta, M., Armas, O., Rodríguez-Fernández, J., Effect of the Degree of Unsaturation of Biodiesel Fuels on NOx and Particulate Emissions (2008) SAE Int. J. Fuels Lubr., 1 (1), pp. 1150-1158; Kousoulidou, M., Ntziachristos, L., Fontaras, G., Martini, G., Dilara, P., Samaras, Z., Impact of biodiesel application at various blending ratios on passenger cars of different fueling technologies (2012) Fuel, 98, pp. 88-94; Hoekman, S.K., Robbins, C., Review of the effects of biodiesel on NOx emissions (2012) Fuel Process. Technol., 96, pp. 237-249; Varatharajan, K., Cheralathan, M., Influence of fuel properties and composition on NOx emissions from biodiesel powered diesel engines: A review (2012) Renewable Sustainable Energy Rev., 16 (6), pp. 3702-3710; Lackey, L.G., Paulson, S.E., Influence of feedstock: Air pollution and climate-related emissions from a diesel generator operating on soybean, canola, and yellow grease biodiesel (2012) Energy Fuels, 26 (1), pp. 686-700; Demirbas, A.H., Inexpensive oil and fats feedstocks for production of biodiesel (2009) Energy Educ. Sci. Technol., Part A, 23 (1), pp. 1-13; Demirbas, A., Fatih Demirbas, M., Importance of algae oil as a source of biodiesel (2011) Energy Convers. Manage., 52 (1), pp. 163-170; Chisti, Y., Biodiesel from microalgae (2007) Biotechnol. Adv., 25 (3), pp. 294-306; Makarevičiene, V., Lebedevas, S., Rapalis, P., Gumbyte, M., Skorupskaite, V., Žaglinskis, J., Performance and emission characteristics of diesel fuel containing microalgae oil methyl esters (2014) Fuel, 120, pp. 233-239; Patel, J.S., Kumar, N., Deep, A., Sharma, A., Gupta, D., Evaluation of Emission Characteristics of Blend of Algae Oil Methyl Ester with Diesel in a Medium Capacity Diesel Engine (2014) SAE Technical Paper.2014-01-1378; Rinaldini, C.A., Mattarelli, C.A., Magri, M., Beraldi, M., Experimental Investigation on Biodiesel from Microalgae as Fuel for Diesel Engines (2014) SAE Technical paper.2014-01-1386; Tüccar, G., Özgür, T., Aydin, K., Effect of diesel-microalgae biodiesel-butanol blends on performance and emissions of diesel engine (2014) Fuel, 132, pp. 47-52; Fisher, B.C., Marchese, A.J., Volckens, J., Lee, T., Collett, J.L., Measurement of Gaseous and Particulate Emissions from Algae-Based Fatty Acid Methyl Esters (2010) SAE Int. J. Fuels Lubr., 3 (2), p. 292; Schönborn, A., Ladommatos, N., Allan, R., Williams, J., Rogerson, J., Effect of the Molecular Structure of Individual Fatty Acid Alcohol Esters (Biodiesel) on the Formation of NOx and Particulate Matter in the Diesel Combustion Process (2008) SAE Int. J. Fuels Lubr., 1 (1), pp. 849-872; Islam, M.A., Rahman, M.M., Heimann, K., Nabi, M.N., Ristovski, Z.D., Dowell, A., Combustion analysis of microalgae methyl ester in a common rail direct injection diesel engine (2015) Fuel, 143, pp. 351-360; Rahman, M., Pourkhesalian, A., Jahirul, M., Stevanovic, S., Pham, P., Wang, H., Particle emissions from biodiesels with different physical properties and chemical composition (2014) Fuel, 134 (C), pp. 201-208; Symonds, J.P.R., Reavell, K.S.J., Olfert, J.S., Campbell, B.W., Swift, S.J., Diesel soot mass calculation in real-time with a differential mobility spectrometer (2007) J. Aerosol Sci., 38 (1), pp. 52-68; Fairfull-Smith, K.E., Bottle, S.E., The synthesis and physical properties of novel polyaromatic profluorescent isoindoline nitroxide probes (2008) European J. Org. Chem., 2008 (32), pp. 5391-5400; Stevanovic, S., Miljevic, B., Eaglesham, G.K., Bottle, S.E., Ristovski, Z.D., Fairfull-Smith, K.E., The use of a nitroxide probe in DMSO to capture free radicals in particulate pollution (2012) Eur. J. Org. Chem., 2012 (30), pp. 5908-5912; Stevanović, S., Ristovski, Z., Miljević, B., Fairfull-Smith, K.E., Bottle, S., Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles (2012) Chem. Ind. Chem. Eng. Q., 18 (42), pp. 653-659; Benjumea, P., Agudelo, J., Agudelo, A., Basic properties of palm oil biodiesel-diesel blends (2008) Fuel, 87 (1011), pp. 2069-2075; Allen, C.A.W., Watts, K.C., Ackman, R.G., Pegg, M.J., Predicting the viscosity of biodiesel fuels from their fatty acid ester composition (1999) Fuel, 78 (11), pp. 1319-1326; Quiros, D.C., Yoon, S., Dwyer, H.A., Collins, J.F., Zhu, Y., Huai, T., Measuring particulate matter emissions during parked active diesel particulate filter regeneration of heavy-duty diesel trucks (2014) J. Aerosol Sci., 73, pp. 48-62; Hoekman, S.K., Broch, A., Robbins, C., Ceniceros, E., Natarajan, M., Review of biodiesel composition, properties, and specifications (2012) Renewable Sustainable Energy Rev., 16 (1), pp. 143-169; Park, J.-Y., Choi, S.-A., Jeong, M.-J., Nam, B., Oh, Y.-K., Lee, J.-S., Changes in fatty acid composition of Chlorella vulgaris by hypochlorous acid (2014) Bioresour. Technol., 162, pp. 379-383; Silitonga, A.S., Masjuki, H.H., Mahlia, T.M.I., Ong, H.C., Chong, W.T., Boosroh, M.H., Overview properties of biodiesel diesel blends from edible and non-edible feedstock (2013) Renewable Sustainable Energy Rev., 22, pp. 346-360; Shang, Q., Jiang, W., Lu, H., Liang, B., Properties of Tung oil biodiesel and its blends with 0# diesel (2010) Bioresour. Technol., 101 (2), pp. 826-828; Al-Hamamre, Z., Al-Salaymeh, A., Physical properties of (jojoba oil + biodiesel), (jojoba oil + diesel) and (biodiesel + diesel) blends (2014) Fuel, 123, pp. 175-188; Chen, Y.-H., Huang, B.-Y., Chiang, T.-H., Tang, T.-C., Fuel properties of microalgae (Chlorella protothecoides) oil biodiesel and its blends with petroleum diesel (2012) Fuel, 94, pp. 270-273; Schönborn, A., Ladommatos, N., Williams, J., Allan, R., Rogerson, J., The influence of molecular structure of fatty acid monoalkyl esters on diesel combustion (2009) Combust. Flame, 156, pp. 1396-1412; Pinzi, S., Rounce, P., Herreros, J.M., Tsolakis, A., Pilar Dorado, M., The effect of biodiesel fatty acid composition on combustion and diesel engine exhaust emissions (2013) Fuel, 104, pp. 170-182; Sukjit, E., Herreros, J.M., Dearn, K.D., García-Contreras, R., Tsolakis, A., The effect of the addition of individual methyl esters on the combustion and emissions of ethanol and butanol-diesel blends (2012) Energy, 42 (1), pp. 364-374; Su, J., Zhu, H., Bohac, S.V., Particulate matter emission comparison from conventional and premixed low temperature combustion with diesel, biodiesel and biodiesel-ethanol fuels (2013) Fuel, 113, pp. 221-227; Inoue, M., Murase, A., Yamamoto, M., Kubo, S., Analysis of volatile nanoparticles emitted from diesel engine using TOF-SIMS and metal-assisted SIMS (MetA-SIMS) (2006) Appl. Surf. Sci., 252 (19), pp. 7014-7017; Rönkkö, T., Virtanen, A., Kannosto, J., Keskinen, J., Lappi, M., Pirjola, L., Nucleation mode particles with a nonvolatile core in the exhaust of a heavy duty diesel vehicle (2007) Environ. Sci. Technol., 41 (18), pp. 6384-6389; Tan, P.Q., Ruan, S.S., Hu, Z.Y., Lou, D.M., Li, H., Particle number emissions from a light-duty diesel engine with biodiesel fuels under transient-state operating conditions (2014) Appl. Energy, 113, pp. 22-31; Xue, J., Grift, T.E., Hansen, A.C., Effect of biodiesel on engine performances and emissions (2011) Renewable Sustainable Energy Rev., 15 (2), pp. 1098-1116; Rahman, M.M., Stevanovic, S., Brown, R.J., Ristovski, Z., Influence of Different Alternative Fuels on Particle Emission from a Turbocharged Common-Rail Diesel Engine (2013) Procedia Eng., 56, pp. 381-386; Surawski, N.C., Miljevic, B., Ayoko, G.A., Elbagir, S., Stevanovic, S., Fairfull-Smith, K.E., Physicochemical characterization of particulate emissions from a compression ignition engine: The influence of biodiesel feedstock (2011) Environ. Sci. Technol., 45 (24), pp. 10337-10343; Barrios, C.C., Martín, C., Domínguez-Sáez, A., Álvarez, P., Pujadas, M., Casanova, J., Effects of the addition of oxygenated fuels as additives on combustion characteristics and particle number and size distribution emissions of a TDI diesel engine (2014) Fuel, 132, pp. 93-100; Nabi, M.N., Brown, R.J., Ristovski, Z., Hustad, J.E., A comparative study of the number and mass of fine particles emitted with diesel fuel and marine gas oil (MGO) (2012) Atmos. Environ., 57, pp. 22-28; Wang, X., Cheung, C.S., Di, Y., Huang, Z., Diesel engine gaseous and particle emissions fueled with diesel-oxygenate blends (2012) Fuel, 94, pp. 317-323; Zhu, R., Cheung, C.S., Huang, Z., Particulate Emission Characteristics of a Compression Ignition Engine Fueled with Diesel-DMC Blends (2011) Aerosol Sci. Technol., 45 (2), pp. 137-147; Kohse-Hoinghaus, K., Osswald, P., Cool, T.A., Kasper, T., Hansen, N., Qi, F., Biofuel combustion chemistry: From ethanol to biodiesel (2010) Angew. Chem., 49 (21), pp. 3572-3597; Khalek, I.A., Kittelson, D.B., Brear, F., Nanoparticle growth during dilution and cooling of diesel exhaust: Experimental investigation and theoretical assessment SAE Technical paper2000; Giechaskiel, B., Ntziachristos, L., Samaras, Z., Scheer, V., Casati, R., Vogt, R., Formation potential of vehicle exhaust nucleation mode particles on-road and in the laboratory (2005) Atmos. Environ., 39 (18), pp. 3191-3198; Ristovski, Z.D., Jayaratne, E.R., Lim, M., Ayoko, G.A., Morawska, L., Influence of diesel fuel sulfur on nanoparticle emissions from city buses (2006) Environ. Sci. Technol., 40 (4), pp. 1314-1320; Rönkkö, T., Virtanen, A., Vaaraslahti, K., Keskinen, J., Pirjola, L., Lappi, M., Effect of dilution conditions and driving parameters on nucleation mode particles in diesel exhaust: Laboratory and on-road study (2006) Atmos. Environ., 40 (16), pp. 2893-2901; Weast, R.C., Astle, M.J., Beyer, W.H., (1988) CRC Handbook of Chemistry and Physics, , CRC press Boca Raton, FL; Benjumea, P., Agudelo, J., Agudelo, A., Basic properties of palm oil biodiesel-diesel blends (2008) Fuel, 87 (10), pp. 2069-2075; Lee, C.S., Park, S.W., Kwon, S.I., An experimental study on the atomization and combustion characteristics of biodiesel-blended fuels (2005) Energy Fuels, 19 (5), pp. 2201-2208; Ahmed, M.A., Ejim, C.E., Fleck, B.A., Amirfazli, A., Effect of Biodiesel Fuel Properties and Its Blends on Atomization (2006) SAE Technical paper.2006-01-0893; Schönborn, A., Ladommatos, N., Williams, J., Allan, R., Rogerson, J., The influence of molecular structure of fatty acid monoalkyl esters on diesel combustion (2009) Combust. Flame, 156 (7), pp. 1396-1412; Rahmat, N., Abdullah, A.Z., Mohamed, A.R., Recent progress on innovative and potential technologies for glycerol transformation into fuel additives: A critical review (2010) Renewable Sustainable Energy Rev., 14 (3), pp. 987-1000; Worton, D.R., Isaacman, G., Gentner, D.R., Dallmann, T.R., Chan, A.W., Ruehl, C., Lubricating oil dominates primary organic aerosol emissions from motor vehicles (2014) Environ. Sci. Technol., 48 (7), pp. 3698-3706; Ayres, J.G., Borm, P., Cassee, F.R., Castranova, V., Donaldson, K., Ghio, A., Evaluating the toxicity of airborne particulate matter and nanoparticles by measuring oxidative stress potential-a workshop report and consensus statement (2008) Inhalation Toxicol., 20 (1), pp. 75-99; Miljevic, B., Fairfull-Smith, K.E., Bottle, S., Ristovski, Z., The application of profluorescent nitroxides to detect reactive oxygen species derived from combustion-generated particulate matter: Cigarette smoke-A case study (2010) Atmos. Environ., 44 (18), pp. 2224-2230; Li, N., Sioutas, C., Cho, A., Schmitz, D., Misra, C., Sempf, J., Ultrafine particulate pollutants induce oxidative stress and mitochondrial damage (2003) Environ. Health Perspect., 111 (4), p. 455; Knaapen, A.M., Borm, P.J., Albrecht, C., Schins, R.P., Inhaled particles and lung cancer. Part A: Mechanisms (2004) Int. J. Cancer, 109 (6), pp. 799-809; Pourkhesalian, A.M., Stevanovic, S., Salimi, F., Rahman, M., Wang, H., Pham, P.X., Influence of Fuel Molecular Structure on the Volatility and Oxidative Potential of Biodiesel Particulate Matter (2014) Environ. Sci. Technol., 48 (21), pp. 12577-12585
PY - 2015
Y1 - 2015
KW - biodiesel
KW - carbon
KW - fatty acid ester
KW - oxygen
KW - polyunsaturated fatty acid
KW - reactive oxygen metabolite
KW - air pollutant
KW - biofuel
KW - particulate matter
KW - Article
KW - biofuel production
KW - biotechnological production
KW - combustion
KW - density
KW - exhaust gas
KW - microalga
KW - nonhuman
KW - oxidation reduction potential
KW - oxygen concentration
KW - priority journal
KW - surface tension
KW - viscosity
KW - analysis
KW - oxidation reduction reaction
KW - Air Pollutants
KW - Biofuels
KW - Microalgae
KW - Oxidation-Reduction
KW - Particulate Matter
KW - Reactive Oxygen Species
U2 - 10.1039/c5em00125k
DO - 10.1039/c5em00125k
M3 - Article
SN - 2050-7887
VL - 17
SP - 1601
EP - 1610
JO - Environ. Sci. Process. Impacts
JF - Environ. Sci. Process. Impacts
IS - 9
ER -