Valorization of Waste Cooking Oil into Biodiesel via Bacillus stratosphericus Lipase Amine-Functionalized Mesoporous SBA-15 Nanobiocatalyst

Author:

Ismail Abdallah R.12ORCID,Kashtoh Hamdy1ORCID,Betiha Mohamed A.2ORCID,Abu Amr Salem A.3ORCID,Baek Kwang-Hyun1ORCID,El-Gendy Nour Sh.24ORCID

Affiliation:

1. Department of Biotechnology, Yeungnam University, Gyeongsan, Gyeongbuk 38541, Republic of Korea

2. Egyptian Petroleum Research Institute (EPRI), PO 11727, NasrCity, Cairo, Egypt

3. Health Safety and Environmental Management, International College of Engineering and Management, 111 Seeb, PO 2511, Muscat, Oman

4. Center of Excellence, October University for Modern Sciences and Arts (MSA), 6th of October City, PO 12566, Giza, Egypt

Abstract

In this study, evaporation-induced self-assembly was applied to prepare amine-functionalized nano-silica (NH2-Pr-SBA-15). That was simply used to immobilize Bacillus stratosphericus PSP8 lipase (E–NH2–Pr-SBA-15), producing a nanobiocatalyst with good stability under vigorous shaking and a maximum lipase activity of 45 ± 2 U/mL. High-resolution X-ray diffractometer, Fourier transform infrared spectroscopy, N2 adsorption-desorption, field-emission scanning electron, and high-resolution transmission electron microscopic analyses proved the successful SBA-15 functionalization and enzyme immobilization. Response surface methodology based on a 1/2 fraction-three-levels face center composite design was applied to optimize the biodiesel transesterification process. This expressed efficient percentage conversion (97.85%) and biodiesel yield (97.01%) under relatively mild operating conditions: 3.12 : 1 methanol to oil ratio, 3.08 wt.% E–NH2–Pr-SBA-15 loading, 48.6°C, 3.19 h at a mixing rate of 495.53 rpm. E–NH2–Pr-SBA-15 proved to have a long lifetime, operational stability, and reusability.

Funder

National Research Foundation of Korea

Publisher

Hindawi Limited

Subject

General Chemical Engineering

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