Influence of Cannabis Cultivation on Outdoor Air Quality: Meteorological Drivers in Urban VOC-Limited Regimes

Abstract Cannabis cultivation is a source of biogenic volatile organic compounds (BVOCs), which can contribute to ozone (O3) formation and growth of ultrafine particles (UFPs; <100 nm). This study used mobile monitoring to evaluate outdoor air quality near a large (440,000 m2) commercial cannabis cultivation facility (CCF) in Delta, BC, Canada. Measurements of O3 and UFPs were collected during summer under peak photochemical conditions at urban and Rural upwind and downwind locations and also on roads directly surrounding the greenhouses. Dispersion modeling (CALPUFF v7.2.1) was used to estimate the BVOC concentrations. Median O3 was enhanced by 3 ppb at the downwind Urban area of the CCF. UFP concentrations increased by 700% in the greenhouse area when wind transported urban NOx emissions toward the CCF. Conversely, UFPs decreased in the Urban area when downwind of the facility, suggesting enhanced formation of more volatile products under high-NOx conditions. Our results indicate that large CCFs should be preferentially sited in Rural areas rather than near urban centers in order to avoid an increase in tropospheric O3 concentrations. Future mobile monitoring with real-time VOC observations and boundary layer characterization would improve attribution of secondary pollutant formation near cannabis facilities.

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Publication Details

Journal
ACS ES&T Air
Published
2026-09-15
DOI
https://doi.org/10.1021/acsestair.6c00310
Primary Topic
Atmospheric chemistry and aerosols
Type
article
Field-Weighted Citation Impact
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article

Influence of Cannabis Cultivation on Outdoor Air Quality: Meteorological Drivers in Urban VOC-Limited Regimes

Sahil Bhandari, Naomi Zimmerman, Amanda Giang, Davi de Ferreyro Monticelli et al.
ACS ES&T Air
Atmospheric chemistry and aerosols
article

Influence of Cannabis Cultivation on Outdoor Air Quality: Meteorological Drivers in Urban VOC-Limited Regimes

Sahil Bhandari, Naomi Zimmerman, Amanda Giang, Davi de Ferreyro Monticelli, Jasraj Brar
article en

Abstract

Abstract Cannabis cultivation is a source of biogenic volatile organic compounds (BVOCs), which can contribute to ozone (O3) formation and growth of ultrafine particles (UFPs; <100 nm). This study used mobile monitoring to evaluate outdoor air quality near a large (440,000 m2) commercial cannabis cultivation facility (CCF) in Delta, BC, Canada. Measurements of O3 and UFPs were collected during summer under peak photochemical conditions at urban and Rural upwind and downwind locations and also on roads directly surrounding the greenhouses. Dispersion modeling (CALPUFF v7.2.1) was used to estimate the BVOC concentrations. Median O3 was enhanced by 3 ppb at the downwind Urban area of the CCF. UFP concentrations increased by 700% in the greenhouse area when wind transported urban NOx emissions toward the CCF. Conversely, UFPs decreased in the Urban area when downwind of the facility, suggesting enhanced formation of more volatile products under high-NOx conditions. Our results indicate that large CCFs should be preferentially sited in Rural areas rather than near urban centers in order to avoid an increase in tropospheric O3 concentrations. Future mobile monitoring with real-time VOC observations and boundary layer characterization would improve attribution of secondary pollutant formation near cannabis facilities.

ACS ES&T Air
University of British Columbia (CA)
Sustainable cities and communities
Openalex Percentile: Top 15%
Atmospheric chemistry and aerosols
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Influence of Cannabis Cultivation on Outdoor Air Quality: Meteorological Drivers in Urban VOC-Limited Regimes — Sahil Bhandari, Naomi Zimmerman, et al. · ACS ES&T Air (2026) | TGRS Research Map | TGRS