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Information Journal Paper

Title

OPTIMIZATION OF HYDRODYNAMIC CAVITATIONS REACTOR EFFICIENCY FOR BIODIESEL PRODUCTION BY RESPONSE SURFACE METHODS (CASE STUDY: SUNFLOWER OIL)

Pages

  260-269

Abstract

 Introduction: Biofuels are considered as one of the largest sources of renewable fuels or replacement of fossil fuels. Combustion of plant-based fuels is the indirect use of solar energy. Biofuels significantly have less pollution than other fossil fuels and can easily generate from residual plant material. Waste and residues of foods and wastewater can also be a good source for biofuel production. …

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    APA: Copy

    JAVADIKIA, H., NOSRATI, Y., MOSTAFAEI, M., NADERLOU, L., & TABATABAEI, M.. (2017). OPTIMIZATION OF HYDRODYNAMIC CAVITATIONS REACTOR EFFICIENCY FOR BIODIESEL PRODUCTION BY RESPONSE SURFACE METHODS (CASE STUDY: SUNFLOWER OIL). JOURNAL OF AGRICULTURAL MACHINERY, 7(1), 260-269. SID. https://sid.ir/paper/201314/en

    Vancouver: Copy

    JAVADIKIA H., NOSRATI Y., MOSTAFAEI M., NADERLOU L., TABATABAEI M.. OPTIMIZATION OF HYDRODYNAMIC CAVITATIONS REACTOR EFFICIENCY FOR BIODIESEL PRODUCTION BY RESPONSE SURFACE METHODS (CASE STUDY: SUNFLOWER OIL). JOURNAL OF AGRICULTURAL MACHINERY[Internet]. 2017;7(1):260-269. Available from: https://sid.ir/paper/201314/en

    IEEE: Copy

    H. JAVADIKIA, Y. NOSRATI, M. MOSTAFAEI, L. NADERLOU, and M. TABATABAEI, “OPTIMIZATION OF HYDRODYNAMIC CAVITATIONS REACTOR EFFICIENCY FOR BIODIESEL PRODUCTION BY RESPONSE SURFACE METHODS (CASE STUDY: SUNFLOWER OIL),” JOURNAL OF AGRICULTURAL MACHINERY, vol. 7, no. 1, pp. 260–269, 2017, [Online]. Available: https://sid.ir/paper/201314/en

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