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Comparing the desorption and biodegradation of low concentrations of phenanthrene sorbed to activated carbon, biochar and compost

机译:比较吸附到活性炭,生物炭和堆肥上的低浓度菲的解吸和生物降解

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摘要

Carbonaceous soil amendments are applied to contaminated soils and sediments to strongly sorb hydro-phobic organic contaminants (HOCs) and reduce their freely dissolved concentrations. This limits bioup-take and toxicity, but also biodegradation. To investigate whether HOCs sorbed to such amendments can be degraded at all, the desorption and biodegradation of low concentrations of ~(14)C-labelled phenanthrene (≤5 μg L~(-1)) freshly sorbed to suspensions of the pure soil amendments activated carbon (AC), biochar (charcoal) and compost were compared. Firstly, the maximum abiotic desorption of phenanthrene from soil amendment suspensions in water, minimal salts medium (MSM) or tryptic soy broth (TSB) into a dominating silicone sink were measured. Highest fractions remained sorbed to AC (84 ±2.3%, 87+4.1%, and 53 ±1.2% for water, MSM and TSB, respectively), followed by charcoal (35 + 2.2%, 32 + 1.7%, and 12 ± 0.3%, respectively) and compost (1.3 ± 0.21%, similar for all media). Secondly, the mineralization of phenanthrene sorbed to AC, charcoal and compost by Sphingomonas sp. 10-1 (DSM 12247) was determined. In contrast to the amounts desorbed, phenanthrene mineralization was similar for all the soil amendments at about 56 + 11% of the initially applied radioactivity. Furthermore, HPLC analyses showed only minor amounts (<5%) of residual phenanthrene remaining in the suspensions, indicating almost complete biodegradation. Fitting the data to a coupled desorption and biodegradation model revealed that desorption did not limit biodegradation for any of the amendments, and that degradation could proceed due to the high numbers of bacteria and/or the production of biosurfactants or biofilms. Therefore, reduced desorption of phenanthrene from AC or charcoal did not inhibit its biodegradation, which implies that under the experimental conditions these amendments can reduce freely dissolved concentration without hindering biodegradation. In contrast, phenanthrene sorbed to compost was fully desorbed and biodegraded.
机译:含碳土壤改良剂适用于受污染的土壤和沉积物,以强烈吸收疏水性有机污染物(HOC)并降低其自由溶解的浓度。这限制了生物摄取和毒性,还限制了生物降解。为了研究吸附到此类改良剂上的HOC是否能完全降解,将新鲜吸附到纯土壤改良剂悬浮液中的低浓度〜(14)C标记的菲(≤5μgL〜(-1))进行解吸和生物降解。比较了活性炭(AC),生物炭(木炭)和堆肥。首先,测定了菲从水中的土壤改良剂悬浮液,最小盐介质(MSM)或胰蛋白酶大豆肉汤(TSB)进入非有机硅水槽的最大非生物解吸量。最高的馏分保持吸附到AC上(水,MSM和TSB分别为84±2.3%,87 + 4.1%和53±1.2%),其次是木炭(35 + 2.2%,32 + 1.7%和12±0.3分别为%和堆肥(1.3±0.21%,所有培养基相似)。其次,鞘氨醇单胞菌(Sphingomonas sp。)吸附到AC,木炭和堆肥上的菲的矿化作用。确定10-1(DSM 12247)。与解吸的量相比,所有土壤改良剂的菲矿化作用相似,约为最初应用的放射性的56 + 11%。此外,HPLC分析显示悬浮液中仅残留了少量(<5%)的残留菲,表明几乎完全生物降解。将数据拟合为耦合的解吸和生物降解模型后,发现解吸不限制任何修正的生物降解,并且由于细菌数量高和/或生物表面活性剂或生物膜的产生,降解可能会继续进行。因此,减少的菲从AC或木炭中的解吸不会抑制其生物降解,这意味着在实验条件下,这些修饰物可以降低自由溶解的浓度,而不会阻碍生物降解。相反,吸附到堆肥中的菲被完全解吸并被生物降解。

著录项

  • 来源
    《Chemosphere》 |2013年第6期|1767-1778|共12页
  • 作者单位

    Department of Environmental Science, Aarhus University, Frederiksborgvej 399, 4000 Roskilde, Denmark;

    Department of Environmental Science, Aarhus University, Frederiksborgvej 399, 4000 Roskilde, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Miljovej Building 113, 2800 Kgs. Lyngby, Denmark;

    Department of Environmental Science, Aarhus University, Frederiksborgvej 399, 4000 Roskilde, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Miljovej Building 113, 2800 Kgs. Lyngby, Denmark;

    Department of Environmental Science, Aarhus University, Frederiksborgvej 399, 4000 Roskilde, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    activated carbon; charcoal; compost; phenanthrene; desorption; biodegradation;

    机译:活性炭;木炭;堆肥;菲;解吸生物降解;

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