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哈茨木霉 T22 菌株与臭氧化联合作用对柴油污染砂的生物修复效果。

Mycoremediation effect of Trichoderma harzianum strain T22 combined with ozonation in diesel-contaminated sand.

机构信息

School of Agricultural, Forestry, Food and Environmental Sciences (SAFE), University of Basilicata, Via dell'Ateneo Lucano 10, 85100, Potenza, Italy.

School of Agricultural, Forestry, Food and Environmental Sciences (SAFE), University of Basilicata, Via dell'Ateneo Lucano 10, 85100, Potenza, Italy.

出版信息

Chemosphere. 2020 Aug;252:126597. doi: 10.1016/j.chemosphere.2020.126597. Epub 2020 Mar 23.

DOI:10.1016/j.chemosphere.2020.126597
PMID:32229361
Abstract

This study aimed to determine the ability of the fungus Trichoderma harzianum strain T22 (Th-T22) to utilize diesel fuel as a carbon source. The potential use of Th-T22 for diesel bioremediation in an artificial soil was tested by inoculating a diesel-sand mixture with a fungal mycelial suspension of Th-T22. Given the ability of ozone to degrade compounds with low biochemical reactivity, the effect of a pre- and post-ozonation was also evaluated. The survival, growth and sporulation of Th-T22 throughout the bioremediation trial were monitored in all the treatments. In the post-ozonation treatments, the biodegradation percentages of diesel removal were 70.16% and 88.35% in Th-T22-inoculated sand treated or untreated with the antibacterial streptomycin, respectively. The results showed that ozonation alone caused good removal efficiencies (41.9%) but it was much more effective if combined with Th-T22 in a post-ozonation regime, whereas pre-ozonation negatively affected the subsequent biodegradation, likely due to its disinfectant and oxidizing effect on Th-T22. The results obtained demonstrated the significant mycoremediation ability of Th-T22 in diesel-contaminated sand and its possible use as a bioremediation agent for diesel spills in polluted sites.

摘要

本研究旨在确定真菌哈茨木霉菌株 T22(Th-T22)利用柴油作为碳源的能力。通过用 Th-T22 的真菌菌丝悬浮液接种柴油-砂混合物,测试了 Th-T22 在人工土壤中用于柴油生物修复的潜力。鉴于臭氧降解低生化反应性化合物的能力,还评估了预臭氧化和后臭氧化的效果。在所有处理中都监测了 Th-T22 在整个生物修复试验中的存活、生长和孢子形成情况。在后臭氧化处理中,在未用抗菌链霉素处理和处理的 Th-T22 接种砂中,柴油去除的生物降解百分比分别为 70.16%和 88.35%。结果表明,单独臭氧化可达到良好的去除效率(41.9%),但如果在后臭氧化阶段与 Th-T22 结合使用则更为有效,而预臭氧化会对随后的生物降解产生负面影响,可能是因为其对 Th-T22 具有消毒和氧化作用。所得结果表明,Th-T22 在受柴油污染的砂中有显著的真菌修复能力,可作为受污染地点柴油泄漏的生物修复剂。

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