Evaluation, characterization, and engine performance of complementary fuel blends of butanol–biodiesel–diesel from Aleurites moluccanus as potential alternative fuels for CI engines

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2018

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SAGE Publications Inc.

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17.05. Department of Machine and Metal Technologies / Makine ve Metal Teknolojileri Bölümü
Makine ve Metal Teknolojileri bölümü öğrenim süresi: 4 yarıyıldan oluşan 2 yıllık bir süreci kapsamaktadır. Bu süre içerisinde öğrenciler teorik derslerle birlikte atölye dersleri de alarak eğitimlerini tamamlamaktadırlar. Almış oldukları derslerin seçimleri özellikle öğrencilerin mezun olduktan sonra işe girme imkanlarını arttırıcı yönde yapılmaktadır. Mesleki eğitim sürecinin sonunda mezunlarımız; iyi derecede teknik resim çizebilen, torna, freze, taşlama gibi konvansiyonel takım tezgahlarını, gelişmiş bilgisayar kontrollü CNC tezgahlarını, Autocad ve SolidWorks gibi çizim programlarını kullanarak makine parçalarının yapımı için gerekli beceriyi ve teknolojik bilgiyi kazanırlar. Ayrıca rahatlıkla iş sahibi olabilmeleri ve işlerinde ilerleyebilmeleri için öğrenim süreci boyunca bulmuş, tasarlamış ve yapmış oldukları projeler ve verdiğimiz görevlerle mezunlarımıza hem girişimcilik ruhunu hem de çözüm odaklı ilerleyebilme yeteneğini kazandırmak da amaçlarımız arasındadır.

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Abstract

Biodiesel has gained worldwide attention due to its renewable aspects. However, it needs more quality improvement. Recently, butanol has been considered as a favorable alternative fuel or additive over methanol and ethanol in compression ignition (CI) engines. In this regard, the present work deals with the evaluation of butanol–diesel–biodiesel blends as potential alternative fuels. In this work, biodiesel has been produced from Aleurites moluccanus oil followed by blending with Euro-diesel and butanol. Important characteristics such as kinematic viscosity, density and cloud point besides FT-IR, UV-vis spectra, TGA, DSC and NMR (13C and 1H) were analyzed. Some important engine and emission performance parameters, such as BP, BSFC, CO, HC, NOx and EGT were also studied in this work. Results revealed that blending butanol and Euro-diesel with biodiesel improves the properties of pure biodiesel such as kinematic viscosity (2.41–3.55 mm2/s) and density (841.8–884.6 kg/m3), while maintaining an acceptable range for cold flow properties that are analogous to Euro-diesel. In addition, reduction in BP (24.65–26.35%), HC (52.57–38.71%), and CO (39.18–30.4%) was observed for all the blends at full load compared to Euro-diesel. However, increases in both BSFC (38.17–41.14%) and NOx (24.18–8.35%) were observed. Overall, the blends appear to be good alternatives to biodiesel–diesel blends. Thus, butanol–biodiesel–diesel blends can be considered as potential sustainable fuels for fossil diesel. © The Author(s) 2018.

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Aleurites moluccanus, biodiesel–diesel–butanol blends, DSC, engine and emission analyses, FT-IR, NMR, TGA, UV-vis

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Energy and Environment

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