School of Environment, South China Normal University, Guangzhou, 510006, China.
School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou, 510006, China.
Environ Sci Pollut Res Int. 2020 May;27(14):17401-17411. doi: 10.1007/s11356-020-08330-1. Epub 2020 Mar 10.
The ageing of biochar and organic pollutant itself in soils can both influence the retention of organic pollutant in field soils. In this study, column experiments were adopted to determine the effect of ageing process on bisphenol A (BPA) sorption and retention in two typical Chinese agricultural soils with lychee branch biochar added. The effect of biochar ageing on soil organic matter (SOM) was specially investigated. Experimental results showed that the addition of biochar significantly increased the condensation and rigid of SOM, which could further increase with biochar ageing in soils. As a result, the addition of biochar significantly increased BPA sorption capacity (5.86 times and 3.30 times) and retention rate (13.60 times and 4.47 times) in fluvo-aquic soil and phaeozem respectively, while BPA sorption capacity and retention rate decreased obviously after biochar ageing in the two soils for 2 months as compared with the freshly incorporated biochar treatments, which may be attributed to the surface coverage and/or pore blockage of some sorption sites owning to DOC. With biochar incorporated, 2 months of BPA ageing increased BPA retention rate by about 4.50 times in both soils as compared with BPA newly spiked treatments. The results of this study could provide important parameters for prediction and control of organic pollutants such as BPA in soils.
土壤中生物炭和有机污染物自身的老化都会影响田间土壤中有机污染物的保留。本研究采用柱实验,确定了在添加荔枝枝生物炭的两种典型中国农业土壤中,老化过程对双酚 A(BPA)吸附和保留的影响。特别研究了生物炭老化对土壤有机质(SOM)的影响。实验结果表明,生物炭的添加显著增加了 SOM 的缩合和刚性,随着土壤中生物炭的老化,这种情况会进一步增加。结果表明,生物炭的添加显著增加了 BPA 在潮土和黑钙土中的吸附容量(分别增加了 5.86 倍和 3.30 倍)和保留率(分别增加了 13.60 倍和 4.47 倍),而与新加入的生物炭处理相比,在这两种土壤中老化 2 个月后,生物炭的添加导致 BPA 的吸附容量和保留率明显下降,这可能归因于一些吸附位点的表面覆盖和/或孔阻塞。与未添加 BPA 的土壤相比,添加生物炭并老化 2 个月,BPA 在两种土壤中的保留率分别增加了约 4.50 倍。本研究的结果可为预测和控制土壤中 BPA 等有机污染物提供重要参数。