Swaren Logan, Safari Salman, Konhauser Kurt O, Alessi Daniel S
Department of Earth and Atmospheric Sciences, University of Alberta, 3-16 Earth Sciences Building, Edmonton, AB T6G 2E3 Canada.
Biochar. 2022;4(1):33. doi: 10.1007/s42773-022-00152-3. Epub 2022 Jun 2.
Nanoparticles are abundant in the subsurface, soil, streams, and water bodies, and are often a critical control on elemental speciation, transport and cycling in the natural environment. This review provides an overview of pyrolyzed biomass-derived nanoparticles (PBNPs), their surface properties and reactivity towards aqueous species. We focus specifically on biochar-derived nanoparticles and activated carbon-derived nanoparticles which fall under our classification of PBNPs. Activated carbon-iron (nano)composites are included in some instances where there are significant gaps in literature because of their environmental relevance. Increased use of activated carbon, along with a resurgence in the manufacture and application of biochar for water treatment and soil amendment, has generated significant concerns about the mobility and toxicity of PBNPs derived from the bulk material in environmental applications. Recent examples are discussed to highlight current progress in understanding the influence of PBNPs on contaminant transport, followed by a critical discussion of gaps and future research directions.
纳米颗粒在地下、土壤、溪流和水体中大量存在,并且常常是自然环境中元素形态、迁移和循环的关键控制因素。本综述概述了热解生物质衍生的纳米颗粒(PBNPs)、它们的表面性质以及对水相物质的反应活性。我们特别关注生物炭衍生的纳米颗粒和活性炭衍生的纳米颗粒,它们属于我们对PBNPs的分类范畴。在某些情况下,由于文献中存在重大空白,活性炭-铁(纳米)复合材料因其与环境的相关性也被纳入其中。活性炭使用的增加,以及生物炭在水处理和土壤改良方面制造和应用的复兴,引发了人们对环境应用中大量材料衍生的PBNPs的迁移性和毒性的重大关注。文中讨论了近期的实例,以突出当前在理解PBNPs对污染物迁移影响方面的进展,随后对存在的差距和未来研究方向进行了批判性讨论。