University of California Davis, Land, Air and Water Resources, One Shields Ave., Davis, CA 95616, United States of America.
Sci Total Environ. 2019 Aug 15;678:813-820. doi: 10.1016/j.scitotenv.2019.05.007. Epub 2019 May 2.
Amending soils with biochar is increasingly proposed as a solution to many pressing agricultural and environmental challenges. Biochar, created by thermochemical conversion of biomass in an oxygen-limited environment, has several purported benefits, including remediation of contaminated soils, increased crop yields, reduced fertilizer demands, increased plant available water, and mitigation of climate change. Due to these potential benefits, biochar-related research has flourished in the past decade, though there remains a critically understudied area of research regarding biochar's potential impact on human health. Because biochar characteristically has low bulk density and high porosity, the material is susceptible to atmospheric release via natural or mechanical soil disturbance. The specific risks of biochar inhalation have not been elucidated; however, recent publications have demonstrated that biochar can increase soil dust emissions of particles <10 μm (PM) or possess elevated levels of toxic chemicals. These data should not be interpreted to suggest that all biochars are problematic, but rather to highlight an important and overlooked field of study, and to stress the need to critically assess parameters for biochar production and management strategies that safeguard human health. Here the literature on biochar-related dust emissions and potentially toxic properties (PTPs) is reviewed in order to summarize what is known, highlight areas for future study, and aggregate solutions to minimize potential harm.
用生物炭来改良土壤,正日益被提出作为解决许多紧迫的农业和环境挑战的一种办法。生物炭是通过在有限氧的环境中对生物质进行热化学转化而产生的,具有多种据称的好处,包括污染土壤的修复、增加作物产量、减少肥料需求、增加植物可用水以及减缓气候变化。由于这些潜在的好处,过去十年中与生物炭相关的研究蓬勃发展,尽管对于生物炭对人类健康的潜在影响仍然存在一个研究严重不足的领域。由于生物炭的特征是低密度和高孔隙率,因此该物质容易通过自然或机械土壤扰动而从大气中释放。生物炭吸入的具体风险尚未阐明;然而,最近的出版物表明,生物炭可以增加土壤粉尘中小于 10μm(PM)的颗粒的排放,或具有较高水平的有毒化学品。这些数据不应被解释为表明所有生物炭都有问题,而是要强调一个重要而被忽视的研究领域,并强调需要批判性地评估生物炭生产和管理策略的参数,以保护人类健康。本文综述了与生物炭相关的粉尘排放和潜在毒性特性(PTP)的文献,以便总结已知的情况,突出未来研究的领域,并综合解决办法以最小化潜在危害。