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Design and Optimization of Chemical Processes for Carbon-Neutral Hydrogen Production

 

Table Of Contents


1. Introduction
  1.1 Background and Rationale for Carbon-Neutral Hydrogen Production
  1.2 Objectives of the Study
2. Literature Review
  2.1 Overview of Hydrogen Production Technologies
  2.2 Integration of Renewable Energy and Carbon Capture in Hydrogen Production
  2.3 Techno-Economic Assessment of Carbon-Neutral Hydrogen Processes
3. Methodology
  3.1 Selection of Hydrogen Production Pathways
  3.2 Process Modeling and Simulation
  3.3 Techno-Economic Analysis and Environmental Impact Assessment
4. Results and Discussion
  4.1 Performance Evaluation of Carbon-Neutral Hydrogen Processes
  4.2 Optimization of Process Parameters
  4.3 Integration with Industrial Infrastructures
5. Conclusions and Recommendations
  5.1 Summary of Findings
  5.2 Implications for Sustainable Hydrogen Production
  5.3 Recommendations for Future Research and Development

Thesis Abstract

This project aims to design and optimize chemical processes for the carbon-neutral production of hydrogen. The study will focus on the development of novel hydrogen production pathways that integrate renewable energy sources and carbon capture technologies to minimize greenhouse gas emissions. Various process configurations such as steam methane reforming with carbon capture, electrolysis using renewable electricity, and thermochemical water splitting will be evaluated for their techno-economic feasibility and environmental impact. The project will also investigate the optimization of process parameters and the integration of hydrogen production with existing industrial infrastructures.

Thesis Overview

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