Enhancement of combustion characteristics of waste cooking oil biodiesel using TiO2 nanofluid blends through RSM

Author:

Singh Pali Harveer,Sharma Abhishek,Kumar Manish,Anand Annakodi Vivek,Nhanh Nguyen Van,Kumar Singh Nishant,Singh Yashvir,Balasubramanian Dhinesh,Deepanraj Balakrishnan,Hai Truong Thanh,Quy Phong Nguyen Phuoc

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference102 articles.

1. Comprehensive assessment from optimum biodiesel yield to combustion characteristics of light duty diesel engine fueled with palm kernel oil biodiesel and fuel additives;Sabapathy;Materials (Basel),2021

2. Integrating renewable sources into energy system for smart city as a sagacious strategy towards clean and sustainable process;Hoang;J Clean Prod,2021

3. Forecasting of future greenhouse gas emissions trajectory for India using energy and economic indexes with various metaheuristic algorithms;Bakır;J Clean Prod,2022

4. Experimental Investigation on Zirconia coated high compression spark ignition engine with ethanol as fuel;Lawrence;J Sci Ind Res,2011

5. A simulation study on a port-injection SI engine fueled with hydroxy-enriched biogas;Bui;Energy Sources, Part A Recover Util Environ Eff,2020

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