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Assessment of the Lowland Bog Biomass for Ex Situ Remediation of Petroleum-Contaminated Soils

机译:评估低地沼泽生物量以进行石油污染土壤的原因修复

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摘要

Bog petroleum-contaminated soils have been remediated ex situ in conditions close to natural ones. It was found that during the first 30 days in natural conditions, the decomposition of total petroleum hydrocarbons (TPH) was 30 ± 5%. On the 60th and 90th days, the process of TPH decomposition was 45 ± 5% and 60 ± 5%, respectively. The effect of various stimulant supplements was negligible. For the entire observed period, bog soil showed a very high self-cleaning potential with pollution concentration of 5 g of petroleum per 100 g of soil sample. Such diagnostic indicators of soil condition as urease and cellulase activities turned out to be most sensitive in the bog soil. The introduction of mineral fertilizers to stimulate the TPH decomposition increased the activity of urease in comparison with the background soil. On the other hand, the nonionic surfactant acted as an inhibitor of microorganisms involved in nitrogen metabolism, even in the presence of mineral fertilizers. The introduction of mineral fertilizers to petroleum-polluted bog soil stimulated the cellulases activity, while surfactants suppressed them in the early stages. The simultaneous introduction of surfactants and fertilizers kept the cellulase activity at the background level. It is concluded that in the case of petroleum pollution of infertile soils, the introduction of the upper layers of the phytomass of lowland bogs by providing looseness and long-term supply of nutrients from the dying parts of the moss will accelerate the self-cleaning processes.
机译:沼泽石油污染的土壤已在靠近自然的条件下进行了补救。发现在自然条件下的前30天内,总石油烃(TPH)的分解为30±5%。在第60和第90天,TPH分解的过程分别为45±5%和60±5%。各种兴奋剂补充剂的效果可忽略不计。对于整个观察期,沼泽土壤显示出非常高的自清洁电位,每100克土壤样品污染污染浓度为5克石油。这种诊断指标作为释放释放的释放释放和纤维素酶活性的土壤状况。矿物肥料引入刺激TPH分解的增加与背景土壤相比,释放释放的活性。另一方面,即使在矿物肥料的存在下,非离子表面活性剂的作用是涉及氮代谢的微生物抑制剂。将矿物肥料引入石油污染的沼泽土壤刺激纤维素酶活性,而表面活性剂在早期阶段抑制它们。同时引入表面活性剂和肥料在背景水平保持纤维素酶活性。结论是,在不育土壤的石油污染的情况下,通过从苔藓的垂死部分提供松动和长期供应营养素的低地沼泽植物植物的上层将加速自清洁过程。

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    Dmitriy V. Tarabukin;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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