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首页> 外文期刊>Journal of Contaminant Hydrology >Evaluation of trichloroethene recovery processes in heterogeneous aquifer cells flushed with biodegradable surfactants
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Evaluation of trichloroethene recovery processes in heterogeneous aquifer cells flushed with biodegradable surfactants

机译:评价用可生物降解的表面活性剂冲洗的非均质含水层细胞中三氯乙烯的回收过程

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摘要

The ability of two biodegradable surfactants, polyoxyethylene (20) sorbitan monooleate (Tween~® 80) and sodium dihexyl sulfosuccinate (Aerosol~® MA), to recover a representative dense non-aqueous-phase liquid (DNAPL), trichloroethene (TCE), from heterogeneous porous media was evaluated through a combination of batch and aquifer cell experiments. An aqueous solution containing 3.3% Aerosol MA, 8% 2-propanol and 6 g/l CaCl_2 yielded a weight solubilization ratio (WSR) of 1.21 g TCE/g surfactant, with a corresponding liquid-liquid interfacial tension (IFT) of 0.19 dyn/cm. Flushing of aquifer cells containing a TCE-DNAPL source zone with approximately two pore volumes of the AMA formulation resulted in substantial ( > 30%) mobilization of TCE-DNAPL. However, a TCE mass recovery of 81% was achieved when the aqueous-phase flow rate was sufficient to displace the mobile TCE-DNAPL toward the effluent well. Aqueous solutions of Tween 80 exhibited a greater capacity to solubilize TCE (WSR=1.74 g TCE/g surfactant) and exerted markedly less reduction in IFT (10.4 dyn/cm). These data contradict an accepted empirical correlation used to estimate IFT values from solubilization capacity, and indicate a unique capacity of T80 to form concentrated TCE emulsions. Flushing of aquifer cells with less than 2.5 pore volumes of a 4% T80 solution achieved TCE mass recoveries ranging from 66 to 85%, with only slight TCE-DNAPL mobilization ( < 5%) occurring when the total trapping number exceeded 2 × 10~(-5). These findings demonstrate the ability of Tween 80 and Aerosol MA solutions to efficiently recover TCE from a heterogeneous DNAPL source zone, and the utility of the total trapping number as a design parameter for a priori prediction of DNAPL mobilization and bank angle formation when flushing with low-IFT solutions. Given their potential to stimulate microbial reductive dechlorination at low concentrations, these surfactants are well-suited for remedial action plans that couple aggressive mass removal followed by enhanced bioremediation to treat chlorinated solvent source zones.
机译:两种可生物降解的表面活性剂聚氧乙烯(20)脱水山梨醇单油酸酯(Tween®80)和二己基磺基琥珀酸钠(Aerosol®MA)回收代表性的致密非水相液体(DNAPL),三氯乙烯(TCE)的能力,通过分批和含水层细胞实验相结合的方法,对异质多孔介质中的有机污染物进行了评估。包含3.3%的Aerosol MA,8%的2-丙醇和6 g / l的CaCl_2的水溶液的重量增溶比(WSR)为1.21 g TCE / g表面活性剂,相应的液-液界面张力(IFT)为0.19 dyn /厘米。冲洗含有约两个孔径的AMA制剂的TCE-DNAPL源区的含水层细胞会导致TCE-DNAPL大量动员(> 30%)。但是,当水相流速足以将流动的TCE-DNAPL移向污水井时,TCE的质量回收率达到81%。 Tween 80的水溶液显示出更大的溶解TCE的能力(WSR = 1.74 g TCE / g表面活性剂),并且IFT的降低明显更少(10.4 dyn / cm)。这些数据与用于从增溶能力估算IFT值的公认的经验相关性相矛盾,并且表明T80形成浓缩TCE乳液的独特能力。用4%T80溶液的2.5孔以下的体积冲洗含水层细胞可实现TCE质量回收率从66%到85%,当总捕集数超过2×10时仅发生少量TCE-DNAPL动员(<5%)。 (-5)。这些发现证明了Tween 80和Aerosol MA解决方案能够有效地从异质DNAPL源区域回收TCE的能力,以及总捕集数作为设计参数的实用性,从而可以在低冲洗时预先预测DNAPL的动员和堤岸角的形成。 -IFT解决方案。鉴于它们在低浓度下具有刺激微生物还原性脱氯的潜能,因此这些表面活性剂非常适合于补救行动计划,该计划应结合积极的质量去除和随后的强化生物治理以处理氯化溶剂源区域。

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