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ASTM Selected Technical Papers
NanofluidsAvailable to Purchase
By
K. Narayan Prabhu
K. Narayan Prabhu
JAI Guest Editor
1
National Institute of Technology Karnataka
, Surathkal,
Mangalore,
IN
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ISBN:
978-0-8031-7555-6
No. of Pages:
196
Publisher:
ASTM International
Publication date:
2012

About one-third of passenger vehicles available in the world market are diesel powered, which leads to greater emphasis on improving the performance of a diesel engine without changing the engine configuration. In this study, an attempt has been made to improve the combustion efficiency of nanofuel, CeO2 nanoparticles dispersed diesel. It was prepared using a tip sonicator with different concentration of ceria varied in the range of 0.02, 0.04, 0.06, 0.08, and 0.10 wt. % in diesel. Cerium concentration in diesel played an important role to control the concentration of toxic exhaust gases by influencing the complete combustion of fuel. The maximum reduction of emission gases and an increase of engine performance were observed at an optimum condition of 75 % of load and 0.06 wt. % of CeO2 in diesel, where brake thermal and mechanical efficiency were increased by 10 % and 7 %, respectively and the specific fuel consumption, NOx, and CO was found to be decreased by 10 %, 50 %, and 40 %, respectively. It is concluded that the use of nanofuel is a very efficient tool to protect our environment from the toxic gases emitted from the burning of fossil fuel.

1.
Neeft
,
J. P. A.
,
Makkee
,
M.
, and
Moulijn
,
M.
, “
Diesel particulate emission control
,”
Fuel Process. Technol.
, Vol.
47
,
1996
, pp. 1–69.
2.
Veronica
,
M.
,
Pirovano
,
G.
,
Hofmann
,
A.
, and
Sauer
,
J.
, “
Oxygen Vacancies in Transition Metal and Rare Earth Oxides: Current State of Understanding and Remaining Challenges
,”
Surf. Sci. Rep.
, Vol.
62
,
2007
, pp. 219–270.
3.
Aneggi
,
E.
,
Boaro
,
M.
,
Leitenburg
,
C.
,
Dolcetti
,
G.
, and
Trovarelli
,
A.
, “
Insights Into The Redox Properties of Ceria Based Oxides and Their Implications in Catalysis
,”
J. Alloys Compd.
, Vol.
408-412
,
2006
, pp. 1096–1102.
4.
Tana, Zhang
,
M.
,
Li
,
J.
,
Li
,
H.
,
Li
,
Y.
, and
Shen
,
W.
, “
Morphology Dependent Redox and Catalytic Properties of CeO2 Nanostructures: Nanowires, Nanotubes and Nanoparticles
,”
Catal. Today
, Vol.
148
,
2009
, pp. 179–183.
5.
Jung
,
H.
,
Kittelson
,
D. B.
,
Zachariah
,
M. R.
, “
The Influence of a Cerium Additive on Ultrafine Diesel Particle Emissions and Kinetics of Oxidation
,”
Combust. Flame
, Vol.
142
,
2005
, pp. 276–288.
6.
Mathur
,
S.
,
Bharadwaj
,
A.
, and
Kanagaraj
,
S.
, “
Nanofuel: Next Generation Green Fuel for IC Engines
,”
9th ISHMT-ASME & 20th National HMT Conference
,
IITB, Mumbai
,
2010
, pp. 495–499.
7.
Scattergood, “
Cerium Oxide Nanoparticles as Fuel Additives
,” Pub. No.,- US 2006/0254130 A1, Pub. Date- Nov 16,
2006
, United States of America.
8.
Guo
,
M.
,
Guo
,
C.
,
Jin
,
L.
,
Wang
,
Y.
,
Lu
,
J.
, and
Luo
,
M.
, “
Nano-sized CeO2 with Extra-High Surface Area and its Activity for CO Oxidation
,”
Mater. Lett.
, Vol.
64
,
2010
, pp. 1638–1640.
9.
Xiuyan
,
X.
and
Jinjun
,
L.
, “
CeO2- Co3O4 Catalyst for CO Oxidation
,”
J. Rare Earths
, Vol.
24
,
2006
, pp. 172–176.
10.
Sajith
,
V.
,
Sobhan
,
C. B.
, and
Peterson
,
G.
, “
Experimental Investigation on the Effects of Cerium Oxide Nanoparticle Fuel Additives on Biodiesel
,”
Adv. Mech. Eng.
, Vol.
2010
,
2010
, Article ID-581407-6.
11.
Ladommatos
,
N.
,
Parsi
,
M.
, and
Knowles
,
A.
, “
The Effect of Fuel Cetane Improver on Diesel Pollutant Emissions
,”
Fuel
, Vol.
75
,
1996
, pp. 8–14.
12.
Santana
,
R. C.
,
Santikunaporn
,
M.
,
Alvarez
,
W. E.
,
Sughrue
,
E. L.
, and
Rusasco
,
D. E.
, “
Evaluation of Different Reaction Strategies for the Improvement of Cetane Number of Diesel Fuels
,”
Fuel
, Vol.
85
,
2006
, pp. 643–656.
13.
Chen
,
Y.
,
Guo
,
Z.
, and
Wang
,
Z.
, “
Influence of CeO2 on NOx Emission during Iron Ore Sintering
,”
Fuel Process. Technol.
, Vol.
90
,
2009
, pp. 933–938.
14.
Issa
,
M.
,
Petit
,
C.
,
Brillard
,
A.
, and
Brilhac
,
J.
, “
Oxidation of Carbon by CeO2: Effect of Contact between Carbon and Catalyst Particles
,”
Fuel
, Vol.
87
,
2008
, pp. 740–750.
15.
Nikolaou
,
K.
, “
Emission Reduction Of High and Low Polluting New Technology Vehicles Equipped with a CeO2 Catalytic System
,”
Sci. Total Environ.
, Vol.
235
,
1999
, pp. 71–76.
16.
Summers
,
J.
,
Houtte
,
S.
, and
Psaras
,
D.
, “
Simultaneous Control of Particulate and NOx Emissions from Diesel Engines
,”
Appl. Catal., B
, Vol.
10
,
1996
, pp. 139–156.
17.
Lahaye
,
J.
,
Boehm
,
S.
,
Chambrion
,
P. H.
, and
Ehrburger
,
P.
, “
Influence of Cerium Oxide on Formation and Oxidation of Soot
,”
Combust. Flame
, Vol.
104
,
1996
, pp. 199–207.
18.
Rotavera
,
B.
,
Kumar
,
A.
,
Seal
,
S.
, and
Petersen
,
E. L.
, “
Effect of Ceria Nanoparticles in Soot Inception and Growth in Toluene-Oxygen-Argon Mixtures
,”
Proc. Combust. Inst.
, Vol.
32
,
2009
, pp. 811–819.
19.
Tyagi
,
H.
,
Phelan
,
P. E.
,
Prasher
,
R.
,
Peck
,
R.
,
Lee
,
T.
,
Pacheko
,
J. R.
, and
Arentzen
,
P.
, “
Increased Hot Plate Ignition Probability for Nanoparticle Laden Diesel Fuel
,”
Nano Lett.
, Vol.
8
,
2008
, pp. 1410–1416.
20.
Sharma
,
S. K.
,
Nirala
,
A. K.
, and
Kanagaraj
,
S.
, “
Studies on the Effect of Cerium Oxide Nanoparticle as an Anti-Wear Lubricant Additive using Taguchi Technique
,”
Proceedings of 7th International Conference on Industrial Tribology
,
Tribology Society of India, Ranchi, India
, Vol.
V(B)-2
,
2010
, pp. 1–9.
21.
Hwang
,
Y.
,
Lee
,
J.
,
Jeong
,
Y.
,
Cheong
,
S.
,
Ahn
,
Y.
, and
Kim
,
S. H.
, “
Production and Dispersion Stability of Nanoparticles in Nanofluids
,”
Powder Technol.
, Vol.
186
,
2008
, pp. 145–153.
22.
Piao
,
L.
,
Lee
,
K. H.
,
Kwon
,
W. J.
,
Kim
,
S. H.
, and
Yoon
,
S.
, “
The Simple and Facile Methods to Improve Dispersion Stability of Nanoparticles: Different Chain Length Alkylcarboxylate Mixtures
,”
Journal Colloid Interface Sci.
, Vol.
334
,
2009
, pp. 208–211.
23.
Hong
,
K. S.
,
Hong
,
T. K.
, and
Yang
,
H. S.
, “
Thermal Conductivity of Fe Nanofluids Depending on the Cluster Size of Nanoparticles
,”
Appl. Phys. Lett.
, Vol.
88
,
2006
, p. 031901.
24.
Peng
,
D. X.
,
Kang
,
Y.
,
Hwang
,
R. M.
,
Shyr
,
S. S.
, and
Chang
,
Y. P.
, “
Tribological Properties of Diamond and SiO2 Nanoparticles Added in Paraffin
,”
Tribol. Int.
, Vol.
42
,
2009
, pp. 911–917.
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