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通过生物刺激和对废机油污染土壤的植物修复实现植物毒性碳氢化合物的生物消除

Bioelimination of Phytotoxic Hydrocarbons by Biostimulation and Phytoremediation of Soil Polluted by Waste Motor Oil.

作者信息

Juárez-Cisneros Gladys, Saucedo-Martínez Blanca Celeste, Sánchez-Yáñez Juan Manuel

机构信息

Environmental Microbiology Laboratory, Chemical-Biological Research Institute, Ed-B-1, Michoacán University of San Nicolás de Hidalgo, Morelia C.P. 58060, Michoacán, Mexico.

出版信息

Plants (Basel). 2023 Feb 27;12(5):1053. doi: 10.3390/plants12051053.

Abstract

Soils contaminated by waste motor oil (WMO) affect their fertility, so it is necessary to recover them by means of an efficient and safe bioremediation technique for agricultural production. The objectives were: (a) to biostimulate the soil impacted by WMO by applying crude fungal extract (CFE) and as a green manure (GM), and (b) phytoremediation using with and/or to reduce the WMO below the maximum value according to NOM-138 SEMARNAT/SS or the naturally detected one. Soil impacted by WMO was biostimulated with CFE and GM and then phytoremediated by with and . The initial and final concentrations of WMO were analyzed. The phenology of and colonization of roots by were measured. The results were statistically analyzed by ANOVA/Tukey's HSD test. The WMO in soil that was biostimulated with CFE and GM, after 60 days, was reduced from 34,500 to 2066 ppm, and the mineralization of hydrocarbons from 12 to 27 carbons was detected. Subsequently, phytoremediation with and reduced the WMO to 86.9 ppm after 120 days, which is a concentration that guarantees the restoration of soil fertility for safe agricultural production for human and animal consumption.

摘要

被废机油污染的土壤会影响其肥力,因此有必要通过一种高效且安全的生物修复技术来恢复土壤,以用于农业生产。目标如下:(a) 通过施用粗真菌提取物(CFE)和作为绿肥(GM)来对受废机油影响的土壤进行生物刺激,以及 (b) 使用[植物名称1]和[植物名称2]进行植物修复,以将废机油浓度降低至低于墨西哥自然资源与环境部/卫生部(SEMARNAT/SS)的NOM - 138标准规定的最大值或自然检测值。用CFE和GM对受废机油影响的土壤进行生物刺激,然后用[植物名称1]和[植物名称2]进行植物修复。分析了废机油的初始和最终浓度。测量了[植物名称1]的物候期以及[植物名称2]对[植物名称1]根系的定殖情况。通过方差分析/图基氏 honestly significant difference(HSD)检验对结果进行统计分析。用CFE和GM进行生物刺激60天后,土壤中的废机油从34,500 ppm降至2066 ppm,并且检测到了碳数为12至27的碳氢化合物的矿化。随后,用[植物名称1]和[植物名称2]进行植物修复120天后,废机油浓度降至86.9 ppm,这一浓度能够确保恢复土壤肥力,以用于安全的人类和动物食用的农业生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/035f/10005706/46f3f646635c/plants-12-01053-g001.jpg

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