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December 4, 2025Air2 citationsOpen Access

Key Elements to Project and Realize a Network of Anti-Smog Cannons (ASC) to Protect Sensitive Receptors from Severe Air Pollution Episodes in Urban Environment

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ARAngelo RobottoCBCristina BargeroEREnrico Racca

Key Points

  • Air pollution reduction is achievable with targeted intervention strategies, emphasizing urban environments.
  • The proposed system includes elements of industrial sectors and replicates natural processes for effective results.
  • Assessment of urban contexts highlights the effectiveness of emergency measures to protect sensitive receptors during pollution episodes.
  • Findings indicate implementation of anti-smog technology is both feasible and economically sustainable for local authorities.

Abstract

When it rains or snows over a city, water droplets capture airborne pollutants and transport them to the ground. Prolonged precipitation over the same area can remove a larger amount of pollution; however, rainfall systems vary in duration and tend to move rapidly across regions. Wet deposition sprinklers replicate this natural scavenging process. They can operate for extended periods as needed and can be installed at specific locations where pollution mitigation is most necessary. Despite encouraging experimental results and the widespread use of similar technologies in industrial sectors—such as mining, the construction industry, and waste management—very limited scientific research has focused on their application in urban environments. In particular, their use as an emergency measure during severe pollution episodes as a protective intervention for sensitive subjects, while awaiting the effects of long-term structural solutions, remain largely unexplored. In the present work, we systematically discuss the key elements required to design and implement a network of anti-smog cannons (ASC) to protect sensitive receptors from severe air pollution events in large cities. Based on this analysis, we established a generalized framework that can be applied to any urban context worldwide. We also examine the potential application of the proposed method to the city of Turin (≈850,000 inhabitants, north-western Italy), which is considered a representative case study for other cities in Western Europe. Our findings indicate that such a network is both technically feasible and economically sustainable for local government authorities.

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Cite This Study

Robotto et al. (2025) studied this question.

synapsesocial.com/papers/6930e8dbea1aef094cca3c87https://doi.org/10.3390/air3040032
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