首页> 外文会议>The Meeting of the International Humic Substances Society >Effects of Cation Saturation, Substrate Addition, and Aging on the Mineralization and Formation of Non-extractable Residues of Nonylphenol and Phenanthrene in a Sandy Soil
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Effects of Cation Saturation, Substrate Addition, and Aging on the Mineralization and Formation of Non-extractable Residues of Nonylphenol and Phenanthrene in a Sandy Soil

机译:阳离子饱和,基材添加和老化对砂土中的壬基酚和菲苯甲酸的不可萃取残留物的矿化和形成的影响

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Based on the assumption that the relative density and flexibility of soil organic matter is affected by cations at the exchange sites, a sandy soil treated with Na~+, Ca~(2+), or Al~(3+) was used to determine the long-term sorption and further mineralization and extractability of nonylphenol (NP) and phenanthrene (Phe). The sandy topsoil was percolated by either 0.1 M NaCl, CaCl2, AlCl3 solutions or water, then sterilized by y radiation and spiked with ~(14)C-labeled NP or Phe at 10 μg g~(-1) of soil. Freshly spiked soils and stored under sterile conditions for 2, 5, or 9 months were used for degradation experiments. Mineralization was determined by monitoring of ~(14)CO2 efflux from samples that were additionally supplemented with wood flour. After 8 weeks of incubation, the sequestered xenobiotics were extracted by water and ethanol. Results showed no significant effect of cations on total respiration, while mineralization of both xenobiotics was substantially lower in Na~+-and Al~(3+)-treated soils. The wood flour addition increased respiration in all samples. The effect of wood flour on xenobiotics mineralization became less significant with time of aging. Sterile aging led to decreased mineralization and extractability of NP and Phe. Formation of non-extractable fractions of xenobiotics depended on the mineralization rate and cation saturation of soil.
机译:基于假设土壤有机物质的相对密度和柔韧性受到交换位点的阳离子的影响,使用用Na〜+,Ca〜(2+)或Al〜(3+)处理的砂土进行测定长期吸附和壬基酚(NP)和菲的矿化和萃取性和菲苯甲苯(PHE)。通过0.1M NaCl,CaCl 2,AlCl3溶液或水渗滤砂质表皮,然后通过Y辐射灭菌,并用〜(14)C-标记的NP或PHE在10μgg〜(-1)的土壤中掺入。新鲜尖刺的土壤并在2,5或9个月下储存2,5或9个月的降解实验。通过监测来自另外补充木粉的样品的〜(14)CO 2 Efflux来确定矿化。孵育8周后,通过水和乙醇萃取螯合的异丙酚。结果表明,阳离子对总呼吸的显着效果,而异恶素的矿化在Na〜+ - Al〜(3 +)处理的土壤中基本上基本上较低。在所有样品中加入呼吸的木种。木面粉对十二生卵矿化的影响随着衰老时间而变得不太显着。无菌老化导致NP和PHE的矿化和萃取性降低。无可萃取分数的异恶液依赖于土壤的矿化率和阳离子饱和度。

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