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Further validation of the HPCD-technique for the evaluation of PAH microbial availability in soil

机译:进一步验证用于评估土壤中PAH微生物有效性的HPCD技术

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There is currently considerable scientific interest in finding a chemical technique capable of predicting bioavailability; non-exhaustive extraction techniques (NEETs) offer such potential. Hydroxypropyl-beta-cyclodextrin (HPCD), a NEET, is further validated through the investigation of concentration ranges, differing soil types, and the presence of co-contaminants. This is the first study to demonstrate the utility of the HPCD-extraction technique to predict the microbial availability to phenanthrene across a wide concentration range and independent of soil-contaminant contact time (123 d). The efficacy of the HPCD-extraction technique for the estimation of PAH microbial availability in soil is demonstrated in the presence of co-contaminants that have been aged for the duration of the experiment together in the soil. Desorption dynamics are compared in co-contaminant and single-PAH contaminated spiked soils to demonstrate the occurrence of competitive displacement. Overall, a single HPCD-extraction technique proved accurate and reproducible for the estimation of PAH bioavailability from soil.
机译:目前,寻找能够预测生物利用度的化学技术具有相当大的科学兴趣。非穷举性提取技术(NEET)提供了这样的潜力。 NEET羟丙基-β-环糊精(HPCD)通过研究浓度范围,不同土壤类型和共污染物的存在得到了进一步验证。这是第一项证明使用HPCD萃取技术预测广泛浓度范围内且不受土壤污染物接触时间(123 d)影响的菲可利用的微生物的研究。通过在实验过程中在土壤中一起老化的共污染物的存在,证明了HPCD萃取技术对土壤中PAH微生物利用度的估算效力。比较了在共污染土壤和单一PAH污染的加标土壤中的解吸动力学,以证明竞争性置换的发生。总的来说,单一的HPCD提取技术被证明是准确且可重复的,可用于估算土壤中PAH的生物利用度。

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