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May 12, 2026Journal of industrial safety.0 citationsOpen Access

Microwave-Assisted Biodiesel Production from Karanja Oil: Implementation of an Artificial Neural Network Approach

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SKSunil KumarAAnshikaVGVivek Goel

Key Points

  • This research aims to predict biodiesel synthesis from Karanja oil using an artificial neural network.
  • Conducted transesterification experiments to produce biodiesel from Karanja oil.
  • Developed an artificial neural network model with a 4-10-1 topology using the Levenberg–Marquardt algorithm.
  • Divided data into training (70%), testing (15%), and validation (15%) subsets.
  • The ANN model achieved an R² of 0.9487, signifying strong predictive performance.
  • Predicted biodiesel yield closely matched experimental outcomes, confirming model accuracy.

Abstract

This study investigated biodiesel synthesis prediction alongside transesterification experiments using Karanja oil. It was carried out in two phases: the first involved experimental trials, and the second focused on predicting biodiesel yield using an artificial neural network (ANN). A 4-10-1 topology was utilized for network training, and the Levenberg–Marquardt algorithm was employed to further enhance yield prediction. The input data were divided into three subsets: 70% for training, 15% for testing, and 15% for model validation. The predicted results were then compared with the experimental outcomes. The ANN model achieved an R 2 of 0.9487, indicating strong predictive performance. The analysis demonstrated that the ANN approach was highly effective and produced satisfactory results.

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Cite This Study

Kumar et al. (2026) studied this question.

synapsesocial.com/papers/6a02c2b9ce8c8c81e96403cfhttps://doi.org/10.1016/j.jinse.2026.04.002
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