Department of Geochemistry, Geological Survey of Denmark and Greenland (GEUS) , Øster Voldgade 10, DK-1350 Copenhagen, Denmark.
Center for Permafrost (CENPERM), Department of Geosciences and Natural Resource Management, University of Copenhagen , Copenhagen, Denmark.
Environ Sci Technol. 2017 Jun 6;51(11):6131-6138. doi: 10.1021/acs.est.7b00144. Epub 2017 May 17.
There has been increasing recognition of the occurrence of natural, halogenated organic compounds in marine and terrestrial environments. Chloroform is an example of a halogenated organic compound with natural formation as its primary source. Chloroform emission from soil has been reported from diverse Arctic, temperate, and (sub)tropical ecosystems. The terrestrial environment is a significant source to the atmosphere, but little is known about the formation pathway of chloroform in soil. Here, we present evidence that chloroform is formed through the hydrolysis of trichloroacetyl compounds in natural, organic-rich soils. In situ emissions of chloroform from soil in nine Arctic and subarctic ecosystems were linked to soil trichloroacetyl turnover. The residence time from formation of the trichloroacetyl compounds in soil to the release of chloroform to the atmosphere varied between 1 and 116 active months in unfrozen topsoil, depending on soil pH. Nonspecific halogenation that leads to trihaloacetyl formation does not discriminate between chloride and bromide, and brominated analogues were formed alongside chloroform. Soil may therefore be a previously unrecognized, natural source of brominated haloforms. The formation pathway of haloforms through trihaloacetyl compounds can most likely be extended to other ecosystems with organic topsoils.
人们越来越认识到自然的含卤素有机化合物在海洋和陆地环境中的存在。氯仿是一种含卤素的有机化合物,其主要来源是自然形成。已经有报道称,在不同的北极、温带和(亚热带)热带生态系统中,土壤会排放氯仿。陆地环境是大气的重要来源,但人们对土壤中氯仿的形成途径知之甚少。在这里,我们提供的证据表明,氯仿是通过水解天然富含有机物土壤中的三氯乙酰化合物形成的。在 9 个北极和亚北极生态系统中,土壤原位排放的氯仿与土壤中三氯乙酰化合物的周转有关。在未冻结的表土中,从土壤中三氯乙酰化合物的形成到氯仿释放到大气中的停留时间因土壤 pH 值而异,介于 1 到 116 个活跃月之间。导致三卤乙酰形成的非特异性卤化不会区分氯和溴,因此与氯仿一起形成了溴代类似物。因此,土壤可能是以前未被认识到的、自然产生的溴代卤代烃源。通过三卤乙酰化合物形成卤代烃的途径很可能可以扩展到其他具有有机表土的生态系统。