首页|Utilization of indigenous gurgure(Monotheca Buxifolia)waste seeds as a potential feedstock for biodiesel production using environmentally benign bismuth modified CaO catalyst

Utilization of indigenous gurgure(Monotheca Buxifolia)waste seeds as a potential feedstock for biodiesel production using environmentally benign bismuth modified CaO catalyst

扫码查看
Herein,we report the synthesis of Bi2O3 modified CaO heterogeneous catalyst for biodiesel production from low valued gurgure(Monotheca Buxifolia)seed oil to develop profitable and sustainable approach.The catalysts were analyzed by X-ray diffractometer(XRD),Brunauer-Emmett-Teller(BET),Temperature programming desorption of CO2(TPD-CO2),Field emission scanning electron microscopy(FESEM),Energy dispersive X-ray(EDX).The activity evaluation results indicated that the CaO-Bi2O3 catalyst enriched with 20 wt% Bi2O3 loading displayed an excellent catalytic performance providing biodiesel yield of 98.7% under optimum reaction parameters of oil to methanol molar ratio 1:12,65 ℃ reaction temperature in 2 hr of reaction time and catalyst loading of 6 wt%.The catalyst depicted better reusability upto six reaction cycles and hence the cost of the biodiesel could be reduced effectively.Response surface methodology(RSM)based on central composite design(CCD)was also applied to investigate the influence of reaction parameters.The statistical deign results showed good consistent with the experimental data,providing p-vale of 0.000 i.e.high level of significance of the model.Finally,it could be summarized that the synthesized catalyst demonstrated remarkable activity and durability in term of biodiesel yield using gurguray oil as a cheap and non-edible feedstock.

Monotheca Buxifolia: BiodieselBi2O3 modified catalyst,reusability

Muhammad Farooq、Anita Ramli、Momil gul

展开 >

National Centre of Excellence in Physical Chemistry,University of Peshawar,Peshawar,Pakistan

Department of Fundamental and Applied Sciences,Universiti Teknologi PETRONAS,Malaysia

2022

Chemical Engineering Research & Design

Chemical Engineering Research & Design

SCI
ISSN:0263-8762
年,卷(期):2022.183
  • 3
  • 46