The Impact of Solution Concentration on Process Parameters: A Research Perspective

Authors

  • Dr. Anand Krishna Lecturer (Selection Grade-ll), Department of Textile Engineering, Govt. Polytechnic, Gulzarbagh, Patna- 800007, Bihar, India Author

DOI:

https://doi.org/10.32628/IJSRST2512810

Keywords:

Textile, Nanotechnology, Fiber, Fabric, Sensing

Abstract

Solution concentration plays a critical role in determining the efficiency and outcome of numerous industrial and scientific processes. This research paper aims to explore the multifaceted effects of solution concentration on various process parameters, highlighting its importance in achieving optimal results across diverse applications. We will examine the relationship between concentration and key process parameters such as reaction rates, material properties (e.g., fiber morphology in electrospinning), and process stability, drawing on examples from fields like chemical engineering, pharmaceuticals, and manufacturing.

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References

Atkins, P., & de Paula, J. (2014). Atkins' Physical Chemistry (10th ed.). Oxford University Press. A comprehensive textbook covering fundamental principles of chemistry, including reaction kinetics, thermodynamics, and electrochemistry.

Bird, R. B., Stewart, W. E., & Lightfoot, E. N. (2007). Transport Phenomena (2nd ed.). John Wiley & Sons. This textbook provides a detailed treatment of momentum, heat, and mass transfer, which are crucial for understanding concentration-dependent phenomena in chemical engineering.

Dalal, M. (2018). A Textbook of Physical Chemistry – Volume 1. Dalal Institute. Provides a clear explanation of the collision theory and its implications for reaction rates.

Shiksha. (2025, June 26). Nernst Equation Derivation With Applications and Examples. Shiksha.com. A resource explaining the Nernst equation, which quantifies the relationship between cell potential and ion concentration.

Trautz, M., & Lewis, W. C. (1916–1918). Collision Theory of Chemical Interactions. The foundational work establishing the collision theory of reaction rates, explaining how molecular collisions drive chemical reactions.

Unacademy. (n.d.). Collision Theory of Chemical Reactions: A detailed study. A study resource on collision theory, detailing its history, principles, and limitations concerning factors like concentration.

Electrospinning and Material Properties

Garg, K., & Ramakrishna, S. (2017). Electrospinning of Polymer Nanofibers. Polymer Reviews, 57(1), 76–99. A review covering the principles and parameters of electrospinning, including the significant impact of solution concentration on fiber morphology.

He, P., et al. (2016). Electrospinning Solution: An overview. In Energy Storage Materials (pp. 513–539). ScienceDirect. This source details the properties of electrospinning solutions, emphasizing how concentration, viscosity, and conductivity influence fiber formation.

MDPI. (2023). Electrospinning: Processes, Structures, and Materials. Materials, 4(1), 4. This open-access journal publication provides recent research and a review of electrospinning processes, including the role of solution parameters. DOI: https://doi.org/10.3390/macromol4010004

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Published

20-12-2024

Issue

Section

Research Articles

How to Cite

The Impact of Solution Concentration on Process Parameters: A Research Perspective. (2024). International Journal of Scientific Research in Science and Technology, 11(6), 1106-1109. https://doi.org/10.32628/IJSRST2512810