DISSERTATION

Transesterification of palm oil using heterogeneous NaOH/A12O3 catalyst for biodiesel production

Abstract

Amazon.com Inc. seeks alternative ways to improve manual transactions system of granting employees resources access in the field of data science. The work constructs a modified Artificial Neural Network (ANN) by incorporating a Discrete Hopfield Neural Network (DHNN) and Clonal Selection Algorithm (CSA) with 3-Satisfiability (3-SAT) logic to initiate an Artificial Intelligence (AI) model that executes optimization tasks for industrial data. The selection of 3-SAT logic is vital in data mining to represent entries of Amazon Employees Resources Access (AERA) via information theory. The proposed model employs CSA to improve the learning phase of DHNN by capitalizing features of CSA such as hypermutation and cloning process. This resulting the formation of the proposed model, as an alternative machine learning model to identify factors that should be prioritized in the approval of employees resources applications. Subsequently, reverse analysis method (SATRA) is integrated into our proposed model to extract the relationship of AERA entries based on logical representation. The study will be presented by implementing simulated, benchmark and AERA data sets with multiple performance evaluation metrics. Based on the findings, the proposed model outperformed the other existing methods in AERA data extraction.

Keywords:
Transesterification Biodiesel Catalysis Methanol Biodiesel production Sodium hydroxide Materials science Calcination Diesel fuel Chemistry Nuclear chemistry Chemical engineering Organic chemistry

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Topics

Biodiesel Production and Applications
Physical Sciences →  Engineering →  Biomedical Engineering
Lubricants and Their Additives
Physical Sciences →  Engineering →  Mechanical Engineering
Petroleum Processing and Analysis
Physical Sciences →  Chemistry →  Analytical Chemistry

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