State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, People's Republic of China,
Environ Sci Pollut Res Int. 2015 Feb;22(4):2687-98. doi: 10.1007/s11356-014-3518-z. Epub 2014 Sep 9.
An innovative ex situ soil washing technology was developed to remediate polybrominated diphenyl ethers (PBDEs) and heavy metals in an electronic waste site. Elevated temperature (50 °C) in combination with ultrasonication (40 kHz, 20 min) at 5.0 mL L(-1) sunflower oil and 2.5 g L(-1) carboxymethyl chitosan were found to be effective in extracting mixed pollutants from soil. After two successive washing cycles, the removal efficiency rates for total PBDEs, BDE28, BDE47, BDE209, Pb, and Cd were approximately 94.1, 93.4, 94.3, 99.1, 89.3, and 92.7 %, respectively. Treating the second washed soil with PBDE-degrading bacteria (Rhodococcus sp. strain RHA1) inoculation and nutrient addition for 3 months led to maximum biodegradation rates of 37.3, 52.6, 23.9, and 1.3 % of the remaining total PBDEs, BDE28, BDE47, BDE209, respectively. After the combined treatment, the microbiological functions of washed soil was partially restored, as indicated by a significant increase in the counts, biomass C, N, and functioning diversity of soil microorganisms (p < 0.05), and the residual PBDEs and heavy metals mainly existed as very slow desorbing fractions and residual fractions, as evaluated by Tenax extraction combined with a first-three-compartment model and sequential extraction with metal stability indices (I R and U ts). Additionally, the secondary environmental risk of mixed contaminants in the remediated soil was limited. Therefore, the proposed combined cleanup strategy is an environment-friendly technology that is important for risk assessment and management in mixed-contaminated sites.
一种创新性的异位土壤洗涤技术被开发出来,用于修复电子废物场中的多溴二苯醚 (PBDEs) 和重金属。研究发现,在 50°C 的高温下结合 40 kHz、20 min 的超声波处理,在 5.0 mL L(-1)葵花籽油和 2.5 g L(-1)羧甲基壳聚糖的条件下,从土壤中提取混合污染物的效果非常好。经过两次连续洗涤循环,总 PBDEs、BDE28、BDE47、BDE209、Pb 和 Cd 的去除效率分别约为 94.1%、93.4%、94.3%、99.1%、89.3%和 92.7%。用 PBDE 降解菌(Rhodococcus sp. strain RHA1)接种和营养添加处理第二次洗涤后的土壤 3 个月,导致剩余总 PBDEs、BDE28、BDE47、BDE209 的最大生物降解率分别为 37.3%、52.6%、23.9%和 1.3%。经过联合处理,洗涤土壤的微生物功能得到部分恢复,土壤微生物的数量、生物量 C、N 和功能多样性显著增加(p<0.05),并且残留的 PBDEs 和重金属主要以非常缓慢解吸的分数和残留分数存在,这是通过 Tenax 提取与第一三隔室模型结合和顺序提取金属稳定性指数(I R 和 U ts)来评估的。此外,修复土壤中混合污染物的二次环境风险有限。因此,所提出的联合清理策略是一种环保技术,对于混合污染场地的风险评估和管理非常重要。