Northwest Institute of Nuclear Technology, P. O. Box 69-14, Xi'an City, Shanxi Province 710024, PR China.
Northwest Institute of Nuclear Technology, P. O. Box 69-14, Xi'an City, Shanxi Province 710024, PR China.
J Hazard Mater. 2017 Oct 5;339:347-353. doi: 10.1016/j.jhazmat.2017.06.054. Epub 2017 Jun 23.
The role of humic acid concentration in the microbially-mediated reductive solubilization of Pu(IV) polymers remains unclear until now. The effects of humic concentration (0-150.5mg/L) on the rate and extent of reduction of polymeric Pu(IV) were studied under anaerobic and pH 7.2 conditions. The results show that Shewanella putrefaciens, secreting flavins as endogenous electron shuttles, cannot notably stimulate the reduction of polymeric Pu(IV). In the presence of humic acids, the reduction rate of polymeric Pu(IV) increased with increasing humic concentrations (0-15.0mg/L): e.g., a 102-fold increase from 4.1×10 (HA=0) to 4.2×10mol Pu(III)/h (HA=15.0mg/L). The bioreduced humic acids by S. putrefaciens facilitated the extracellular electron transfer to Pu(IV) polymers and thus the reduction of polymeric Pu(IV) to Pu(III) became thermodynamically favorable. However, the reduction rate did not increase but decrease with increasing humic concentrations from 15.0 to 150.5mg/L. Humic coatings formed on the polymer surfaces at relatively high humic concentrations limited the electron transfer to the polymers and thus decreased the reduction rate. The finding of the dynamic role of humic acids in the bioreductive solubilization may be helpful in evaluating Pu mobility in the geosphere.
目前,腐殖酸浓度在微生物介导的 Pu(IV)聚合物还原溶解中的作用仍不清楚。本研究在厌氧和 pH7.2 条件下,考察了腐殖酸浓度(0-150.5mg/L)对聚合物 Pu(IV)还原速率和程度的影响。结果表明,作为内源性电子穿梭体分泌黄素的腐生脱硫肠弧菌并不能显著刺激聚合物 Pu(IV)的还原。在腐殖酸存在的情况下,聚合物 Pu(IV)的还原速率随腐殖酸浓度(0-15.0mg/L)的增加而增加:例如,从 4.1×10(HA=0)增加到 4.2×10mol Pu(III)/h(HA=15.0mg/L),增加了 102 倍。腐生脱硫肠弧菌还原的腐殖酸促进了 Pu(IV)聚合物的细胞外电子转移,从而使聚合物 Pu(IV)还原为 Pu(III)变得更具热力学优势。然而,当腐殖酸浓度从 15.0 增加到 150.5mg/L 时,还原速率并没有增加反而下降。在相对较高的腐殖酸浓度下,腐殖酸在聚合物表面形成的涂层限制了电子向聚合物的转移,从而降低了还原速率。腐殖酸在生物还原溶解中动态作用的发现,可能有助于评估 Pu 在地球圈中的迁移性。