首页> 外文期刊>The Science of the Total Environment >Enhanced bioremediation of nutrient-amended, petroleum hydrocarbon-contaminated soils over a cold-climate winter: The rate and extent of hydrocarbon biodegradation and microbial response in a pilot-scale biopile subjected to natural seasonal freeze-thaw temperatures
【24h】

Enhanced bioremediation of nutrient-amended, petroleum hydrocarbon-contaminated soils over a cold-climate winter: The rate and extent of hydrocarbon biodegradation and microbial response in a pilot-scale biopile subjected to natural seasonal freeze-thaw temperatures

机译:在寒冷气候冬季增强营养改良剂,石油碳氢化合物污染的土壤的生物修复作用:经受自然季节性冻融温度的中试规模生物堆中碳氢化合物生物降解的速率和程度以及微生物响应

获取原文
获取原文并翻译 | 示例
       

摘要

A pilot-scale biopile field experiment for nutrient-amended petroleum-contaminated fine-grained soils was performed over the winter at a cold-dimate site. The rate and extent of hydrocarbon biodegradation and microbial responses were determined and corresponded to the on-site soil phase changes (from unfrozen to partially frozen, deeply frozen, and thawed) associated with natural seasonal freeze-thaw conditions. Treated and untreated biopiles were constructed (-3500 kg each) on an open outdoor surface at a remediation facility in Saskatoon, Canada. The treated biopile received N-P-K-based nutrient and humate amendments before seasonal freezing. Real-time field monitoring indicated significant unfrozen water content in the treated and untreated biopiles throughout the freezing period, from the middle of November to early March. Unfrozen water was slightly more available in the treated biopile due to the aqueous nutrient supply. Soil CO_2 production and O_2 consumption in the treated biopile were generally greater than in the untreated biopile. Total removal percentages for F2 (> C10-C16), F3 (>C16-C34), and total petroleum hydrocarbons (TPH) in the treated biopile were 57, 58, and 58%, respectively, of which 26,39, and 33% were removed during seasonal freezing and early thawing between November to early March. F3 degradation largely occurred during freezing while F2 hydrocarbons were primarily removed during thawing. Biomarker-based hydrocarbon analyses confirmed enhanced biodegradation in the treated biopile during freezing. The soil treatment increased the first-order rate constants for F2, F3, and TPH degradation by a factor of 2 to 7 compared to the untreated biopile. Shifts in bacterial community appeared in both biopiles as the biopile soils seasonally froze and thawed. Increased alkB1 gene copy numbers in the treated biopile, especially in the partially thawed phase during early thawing, suggest extended hydrocarbon biodegra-dation to the seasonal freeze-thaw season, due to the nutrients supplied prior to seasonal freezing.
机译:整个冬季,在寒冷的大自然环境中,对营养物质改良的石油污染的细粒土壤进行了中试规模的生物堆田间试验。确定了碳氢化合物生物降解率和微生物响应的速率和程度,并与自然季节冻融条件相关的现场土壤相变化(从未冻结到部分冻结,深度冻结和融化)相对应。在加拿大萨斯卡通的修复设施中,在敞开的室外表面上建造了处理过的和未处理过的生物堆(每个-3500千克)。处理过的生物堆在季节性冻结之前接受了基于N-P-K的养分和腐殖酸的改良剂。实时现场监测表明,从11月中旬到3月初,整个冷冻期间,经过处理和未经处理的生物堆中的未冻结水含量都很大。由于含水营养物的供应,未冻结的水在处理过的生物堆中的可用性更高。处理过的生物堆中的土壤CO_2产生和O_2消耗通常大于未处理过的生物堆中。在处理过的生物堆中,F2(> C10-C16),F3(> C16-C34)和总石油烃(TPH)的总去除百分比分别为57%,58%和58%,其中26.39%和33%在11月至3月初之间的季节性冻结和早期解冻过程中,去除了%。 F3降解主要发生在冷冻过程中,而F2碳氢化合物在融化过程中主要被去除。基于生物标志物的碳氢化合物分析证实了冷冻过程中处理过的生物堆中生物降解的增强。与未处理的生物堆相比,土壤处理将F2,F3和TPH降解的一级速率常数提高了2到7倍。随着生物堆土壤的季节性冻结和融化,两种生物堆中都出现了细菌群落的变化。处理过的生物堆中alkB1基因拷贝数的增加,尤其是在早期解冻过程中的部分解冻阶段,表明烃生物降解作用已扩展到季节性冻融季节,这是由于季节性冻融之前提供了养分。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号