Department of Earth, Ocean and Atmospheric Sciences, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4.
Department of Mechanical Engineering, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4.
Environ Sci Technol. 2022 Mar 1;56(5):2880-2896. doi: 10.1021/acs.est.1c06372. Epub 2022 Feb 9.
This review addresses knowledge gaps in cannabis cultivation facility (CCF) air emissions by synthesizing the peer-reviewed and gray literature. Focus areas include compounds emitted, air quality indoors and outdoors, odor assessment, and the potential health effects of emitted compounds. Studies suggest that β-myrcene is a tracer candidate for CCF biogenic volatile organic compounds (BVOCs). Furthermore, β-myrcene, d-limonene, terpinolene, and α-pinene are often reported in air samples collected in and around CCF facilities. The BVOC emission strength per dry weight of plant is higher than most conventional agriculture crops. Nevertheless, reported total CCF BVOC emissions are lower compared with VOCs from other industries. Common descriptors of odors coming from CCFs include "skunky", "herbal", and "pungent". However, there are few peer-reviewed studies addressing the odor impacts of CCFs outdoors. Atmospheric modeling has been limited to back trajectory models of tracers and ozone impact assessment. Health effects of CCFs are mostly related to odor annoyance or occupational hazards. We identify 16 opportunities for future studies, including an emissions database by strain and stage of life (growing cycle) and odor-related setback guidelines. Exploration and implementation of key suggestions presented in this work may help regulators and the industry reduce the environmental footprint of CCF facilities.
这篇综述通过综合同行评议文献和灰色文献,解决了大麻种植设施(CCF)空气排放中的知识空白。重点领域包括排放的化合物、室内和室外空气质量、气味评估以及排放化合物的潜在健康影响。研究表明,β-月桂烯是 CCF 生物挥发性有机化合物(BVOC)的示踪候选物。此外,β-月桂烯、d-柠檬烯、萜品烯和α-蒎烯经常在 CCF 设施内外收集的空气样本中报告。与大多数传统农业作物相比,每单位干重植物的 BVOC 排放强度更高。然而,与其他行业的 VOC 相比,报告的 CCF 总 BVOC 排放量较低。来自 CCF 的气味的常见描述包括“恶臭”、“草药”和“刺鼻”。然而,很少有同行评议的研究探讨 CCF 室外的气味影响。大气模型仅限于示踪剂的后轨迹模型和臭氧影响评估。CCF 的健康影响主要与气味烦恼或职业危害有关。我们确定了 16 项未来研究的机会,包括按菌株和生命阶段(生长周期)以及气味相关的倒退指南的排放数据库。探索和实施本工作中提出的关键建议可能有助于监管机构和行业减少 CCF 设施的环境足迹。