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Assessing multicomponent DNAPL biostabilization potential. II: Aroclor 1242

机译:评估多组分DNAPL的生物稳定潜力。 II:阿罗克洛1242

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Aroclors are dense nonaqueous-phase liquids (DNAPLs) composed of polychlorinated biphenyls, which are common subsurface contaminants. Because complete remediation of Aroclor is very difficult, biostabilization may offer an alternative where risk reduction can be achieved without destruction of the DNAPL mass. The potential for aerobic in situ biostabilization of Aroclor 1242 was evaluated using laboratory protocols similar to those described in the companion paper. Total microbial concentrations increased and stabilized in both mixed and unmixed systems, while the respiring cells did not stabilize in either system. After 100 days, the DNAPL in mixed biometers was depleted in dichlorobiphenyls; the DNAPL composition in unmixed biometers did not change significantly. The total aqueous polychlorinated biphenyl concentration was lower in the unmixed than mixed biometers, both were below the predicted equilibrium concentration. After 100 days, the chronic toxicity of the aqueous phase to Cerodaphnia was greater in the biotreated systems than in the unbiotreated systems. The results indicate that aerobic microbiological activity may be insufficient to fully stabilize Aroclor in the subsurface, in contrast to the clear biostabilization potential of coal tar. [References: 23]
机译:Aroclors是由多氯联苯组成的致密非水相液体(DNAPL),它们是常见的地下污染物。由于对Aroclor进行完全修复非常困难,因此生物稳定化可以提供一种替代方法,即可以在不破坏DNAPL量的情况下降低风险。 Aroclor 1242有氧原位生物稳定的潜力是通过使用实验室方法进行评估的,该方法与随附文件中所述方法相似。在混合和未混合系统中,总微生物浓度均增加并稳定,而在任一系统中呼吸细胞均未稳定。 100天后,将混合生物计中的DNAPL耗尽二氯联苯。未混合生物测定仪中的DNAPL组成没有明显变化。在未混合状态下,多氯联苯水溶液中的总多氯联苯浓度低于混合生物计量器,均低于预期的平衡浓度。 100天后,在生物处理系统中,水相对鹿角藻的慢性毒性要比未生物处理系统中的慢性毒性更大。结果表明,与明显的煤焦油生物稳定潜力相反,好氧微生物活性可能不足以完全稳定地下的Aroclor。 [参考:23]

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