Javascript must be enabled to continue!
Modification of motor gasoline with bioethanol in the cavitation field
View through CrossRef
The article presents the results of the study on the influence of bioethanol content and parameters of cavitation field on the octane number of motor natural gasoline. The effects of the parameters of cavitation field on the modification of fuel and the changes of qualitative and quantitative composition of gasoline were investigated. The influence of the content of a biocomponent on the increase in the octane number was established. It was stated that the problem of the phase separation in alcohol-gasoline mixture can be solved by means of dynamic cavitation. The paper presents the results of the study of the change of octane number as a function of the intensity of cavitation treatment for gas condensate gasoline with addition of bioethanol. The physical stability of gas condensate and bioethanol mixture after cavitation treatment is investigated. It was shown that the gas condensate gasoline modified with bioethanol and cavitation field can be used as a high-quality motor gasoline. It was stated that low-octane gas condensate gasoline can be transformed into high-quality motor fuel by means of modification with bioethanol in the cavitation field. It was established that the alcohol-gasoline cavitation treatment leads to the homogenization and provides at least 30 days' mixture stability before separation. With increasing bioethanol content in the mixture, the number of cavitation cycles (intensity) required to achieve a constant octane number value decreases from 8 cycles for gas condensate gasoline without bioethanol to 4 cycles at the content of bioethanol of 3% and above.
SHEI Ukrainian State University of Chemical Technology
Title: Modification of motor gasoline with bioethanol in the cavitation field
Description:
The article presents the results of the study on the influence of bioethanol content and parameters of cavitation field on the octane number of motor natural gasoline.
The effects of the parameters of cavitation field on the modification of fuel and the changes of qualitative and quantitative composition of gasoline were investigated.
The influence of the content of a biocomponent on the increase in the octane number was established.
It was stated that the problem of the phase separation in alcohol-gasoline mixture can be solved by means of dynamic cavitation.
The paper presents the results of the study of the change of octane number as a function of the intensity of cavitation treatment for gas condensate gasoline with addition of bioethanol.
The physical stability of gas condensate and bioethanol mixture after cavitation treatment is investigated.
It was shown that the gas condensate gasoline modified with bioethanol and cavitation field can be used as a high-quality motor gasoline.
It was stated that low-octane gas condensate gasoline can be transformed into high-quality motor fuel by means of modification with bioethanol in the cavitation field.
It was established that the alcohol-gasoline cavitation treatment leads to the homogenization and provides at least 30 days' mixture stability before separation.
With increasing bioethanol content in the mixture, the number of cavitation cycles (intensity) required to achieve a constant octane number value decreases from 8 cycles for gas condensate gasoline without bioethanol to 4 cycles at the content of bioethanol of 3% and above.
Related Results
Investigation on Fuel Properties of Synthetic Gasoline-like Fuels
Investigation on Fuel Properties of Synthetic Gasoline-like Fuels
Article
Investigation on Fuel Properties of Synthetic Gasoline-like Fuels
Weidi Huang 1,2, Koichi Kinoshita 1,*, Yohko Abe 1, Mitsuharu Oguma 1, and Kotaro Tanaka 2,3
1 Research...
Bioethanol Production: An Overview
Bioethanol Production: An Overview
Bioethanol is currently being considered as a potential replacement for the conventional gasoline, especially as it possesses similar and some superior qualities enabling reduction...
CFD INVESTIGATION OF TURBULENT WATER FLOW IN A PIPE ELBOW: ASSESSMENT OF CAVITATION RISK
CFD INVESTIGATION OF TURBULENT WATER FLOW IN A PIPE ELBOW: ASSESSMENT OF CAVITATION RISK
Cavitation represents the formation and subsequent collapse of vapor or gas bubbles in the vicinity of solid surfaces. Depending on the mechanism of initiation, cavitation can be c...
Study on Unsteady Cavitation Flow and Pressure Pulsation Characteristics in the Regulating Valve
Study on Unsteady Cavitation Flow and Pressure Pulsation Characteristics in the Regulating Valve
A combined numerical‐experiment investigation on the unsteady cavitation flow and pressure fluctuation characteristics in the regulating valves is conducted in this paper. The cavi...
Ultrasound stimulated microbubbles cavitation enhanced the therapeutic effect of colchicine in rats with acute gouty arthritis
Ultrasound stimulated microbubbles cavitation enhanced the therapeutic effect of colchicine in rats with acute gouty arthritis
Abstract
Objective
To investigate whether cavitation induced by ultrasound stimulated microbubbles (USMB) can enhance the therapeutic effect of colchicine and reduce its s...
EVALUATION OF CAVITATION PERFORMANCE OF AN AXI-SYMMETRIC BODY WITH PUMPJET PROPULSOR
EVALUATION OF CAVITATION PERFORMANCE OF AN AXI-SYMMETRIC BODY WITH PUMPJET PROPULSOR
A Pumpjet (PJP) was designed for an underwater body (UWB) with an axi-symmetric configuration as part of a technology development program for design and development of pumpjet. Its...
CHARACTERIZATION AND SI ENGINE TESTING OF GASOLINE AND BLENDS OF GASOLINE AND BIOETHANOL PRODUCED FROM CO-FERMENTED WATERMELON AND PINEAPPLE WASTES
CHARACTERIZATION AND SI ENGINE TESTING OF GASOLINE AND BLENDS OF GASOLINE AND BIOETHANOL PRODUCED FROM CO-FERMENTED WATERMELON AND PINEAPPLE WASTES
Industrial development and population growth are two key factors that have led to increased energy consumption. Conventional energy sources are fast becoming insufficient in matchi...
Numerical Modelling of Cavitation Erosion
Numerical Modelling of Cavitation Erosion
The goal of the work is to develop an expert system for monitoring and control of cavitation in hydraulic machines and to research the possibility of cavitation erosion prediction ...

