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February 25, 20260 citationsOpen Access

A Multi-Stage Passive Solar Distillation System with Radiative Cooling and Zero-Liquid Discharge for Sustainable Water Security in Arid and Coastal Regions

SRSumeru Ray

Key Points

  • To develop a passive, multi-stage solar distillation system for enhanced water productivity in arid regions.
  • Designed a multi-stage solar distillation system with cascading evaporation trays
  • Implemented radiative cooling condenser panels to maximize cooling efficiency
  • Incorporated a natural draft solar chimney for enhanced ventilation
  • Developed a zero-liquid discharge system for effective salt recovery
  • Significantly improved water productivity compared to traditional single-basin systems
  • Enabled modular expansion from community to semi-urban scale without electricity
  • Outlined design parameters that enhance feasibility in water-stressed environments

Abstract

Global freshwater scarcity is intensifying due to climate change, population growth, aquifer depletion, and industrial expansion. Conventional desalination technologies such as reverse osmosis require substantial electrical energy, high operational costs, and complex maintenance infrastructure, making them unsuitable for decentralized deployment in vulnerable regions. This study proposes a fully passive, electricity-free, multi-stage solar distillation system optimized for arid coastal and saline inland environments. The system integrates:(1) shallow multi-basin cascading evaporation trays,(2) radiative cooling condenser panels,(3) natural draft solar chimney ventilation, and(4) zero-liquid discharge salt recovery channels. By thermally cascading latent heat across multiple evaporation stages and enhancing night-time radiative cooling, the proposed model significantly improves water productivity compared to traditional single-basin solar stills. The design enables modular expansion from community-scale (1,000 m²) to semi-urban scale (10,000 m² and above) without grid electricity. The study outlines engineering design parameters, thermodynamic basis, material selection, salt management strategy, and feasibility for desert regions such as coastal Middle East and future water-stressed South Asian zones.

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Cite This Study

Sumeru Ray (2026) studied this question.

synapsesocial.com/papers/699e920af5123be5ed04ff34https://doi.org/10.5281/zenodo.18738783
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