Design and implementation of water purification system based on deep ultraviolet light emitting diodes and a multi-pass geometry reactor

Author:

Pramanik Pallabi1,Das Shaswati2,Adhikary Arghya2,Chaudhuri Chirasree Roy1,Bhattacharyya Anirban3

Affiliation:

1. Department of Electronics and Telecommunication Engineering, Indian Institute of Engineering Science and Technology, Shibpur, Howrah 711103, India

2. Centre for Research in Nanoscience and Nanotechnology, University of Calcutta, Kolkata 700106, India

3. Institute of Radio Physics and Electronics, University of Calcutta, Kolkata 700009, India

Abstract

Abstract A novel reactor was designed and implemented for water purification using deep ultraviolet light emitting diodes (LEDs). The focus was on minimizing the number of LEDs required for effective germicidal action. Simulation studies were carried out on the flow of water as well as the irradiance of UV. Variation was made in the beam divergence of the UV sources and reflectivity of optical coatings used for photon recycling. Based on optimized reactor designs, water purification was carried out both in the static and flow-through configuration. Water from various sources was spiked with a known bacterial strain, exposure studies were carried out and germicidal effect was determined. Our results indicate that under optimal design, a 3 mL volume of water shows a three order inactivation using a single UV-LED in a static reactor in 180 s. For a flow-through geometry, only three LEDs were used in the reactor implementation, and a multi-pass procedure was used to purify 150 mL of water from an Escherichia coli CFU count of 4.3 × 104/mL to 12/mL. While slow, this process requires less than 2 W, and can be powered from rechargeable sources. Faster processes can be implanted using multiple such reactor units in parallel, and can be optimized to the requirement and power levels.

Funder

Science and Engineering Research Board, Government of India

Publisher

IWA Publishing

Subject

Infectious Diseases,Microbiology (medical),Public Health, Environmental and Occupational Health,Waste Management and Disposal,Water Science and Technology

Reference19 articles.

1. An investigation on the use of ultraviolet light emitting diodes (UV LEDs) in a plug-flow reactor for water treatment;Environ. Prog. Sustain. Energy,2017

2. Bettles T. 2011 Putting Deep UV LEDs to Work. Compound SemiconductorJanuary/February, 37–41.

3. Microbial UV fluence-response assessment using a novel UV-LED collimated beam system;Water Res.,2011

4. Crawford M. H. Banas M. A. Ross M. P. Ruby D. S. Nelson J. S. Boucher R. Allerman A. A. 2005 Final LDRD Report: Ultraviolet Water Purification Systems for Rural Environments and Mobile Applications. Sandia Report SAND2005-7245. Sandia National Laboratories, Albuquerque, New Mexico, pp. 1–37.

5. Efficient disinfection of tap and surface water with single high power 285 nm LED and square quartz tube;Photonics,2016

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