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2,4,6-三硝基甲苯(TNT)的非生物-生物耦合矿化作用

Coupled abiotic-biotic mineralization of 2,4,6-trinitrotoluene (TNT).

作者信息

Hess Thomas F, Schrader Paul S

机构信息

Center for Hazardous Waste Remediation and Research, Univ. of Idaho, Moscow 83844-0904, USA.

出版信息

J Environ Qual. 2002 May-Jun;31(3):736-44. doi: 10.2134/jeq2002.7360.

Abstract

Munitions wastes such as TNT are widespread contaminants in soils and ground waters. We investigated a coupled abiotic-biotic treatment scheme for remediation of aqueous solutions of TNT. Mineralization of aqueous TNT (0.22 mM) was initially optimized with minimum reactant use (Fe3+ and H2O2) in light-assisted and dark, modified Fenton reactions at acidic and neutral pH. Complete TNT degradation occurred under all reaction conditions within 24 h. Using the optimum reactant concentrations, coupled abiotic-biotic reactions showed an increase in TNT mineralization, from 47 to 80%, after biomass addition to the acidic, dark Fenton-like reaction. Comparable increases of TNT mineralization were observed under neutral pH with similar reaction conditions. In light-assisted Fenton-like reactions at neutral pH, no increase in cumulative TNT mineralization (66%) was seen in coupled abiotic-biotic reactions. Abiotic photo-Fenton-like reactions alone, at acidic pH, produced complete TNT mineralization and required no biotic assistance. While light-enhanced Fenton reactions alone can provide high levels of TNT mineralization, the dark abiotic-biotic reaction scheme has perhaps a wider use due to a similar extent of TNT mineralization in the absence of light, leading to possible applications in soil slurry and in situ processes in the subsurface.

摘要

诸如三硝基甲苯(TNT)之类的弹药废物是土壤和地下水中广泛存在的污染物。我们研究了一种用于修复TNT水溶液的非生物-生物联合处理方案。在酸性和中性pH条件下,通过光辅助和黑暗条件下的改性芬顿反应,以最少的反应物用量(Fe3+和H2O2)对TNT水溶液(0.22 mM)的矿化进行了初步优化。在所有反应条件下,24小时内TNT完全降解。使用最佳反应物浓度,在向酸性黑暗类芬顿反应中添加生物质后,非生物-生物联合反应显示TNT矿化率从47%提高到了80%。在类似反应条件下的中性pH条件下,也观察到了TNT矿化率的类似提高。在中性pH的光辅助类芬顿反应中,非生物-生物联合反应中TNT的累积矿化率(66%)没有增加。仅在酸性pH条件下的非生物光类芬顿反应就能实现TNT的完全矿化,且无需生物辅助。虽然仅光增强芬顿反应就能实现高水平的TNT矿化,但黑暗非生物-生物反应方案可能具有更广泛的用途,因为在没有光照的情况下TNT矿化程度相似,这使得其有可能应用于土壤泥浆和地下原位处理过程。

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