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利用生物制品和农业工业废物进行生物过程,对受碳氢化合物污染的工业土壤进行微宇宙系统的生物修复。

Bioremediation of an industrial soil contaminated by hydrocarbons in microcosm system, involving bioprocesses utilizing co-products and agro-industrial wastes.

机构信息

Grupo de Biotecnología y Nanotecnología Aplicada, Facultad Regional Delta, Universidad Tecnológica Nacional, San Martín 1171, Campana, 2804, Buenos Aires, Argentina.

Consejo de Investigaciones Científicas y Técnicas (CONICET), CABA (C1425FQB), 2290, Godoy Cruz, Argentina.

出版信息

World J Microbiol Biotechnol. 2023 Sep 29;39(12):323. doi: 10.1007/s11274-023-03766-2.

Abstract

The present study describes practical implication of bioaugmentation and biostimulation processes for bioremediation of an industrial soil chronically contaminated by hydrocarbons. For this purpose, biomass production of six autochthonous hydrocarbon-degrading bacteria were evaluated as inoculum of bioaugmentation strategy, by testing carbon and nitrogen sources included co-products and agro-industrial waste as sustainable and low-cost components of the growth medium. Otherwise, biostimulation was approached by the addition of optimized concentration of nitrogen and phosphorus. Microcosm assays showed that total hydrocarbons (TH) were significantly removed from chronically contaminated soil undergoing bioremediation treatment. Systems Mix (bioaugmentation); N,P (biostimulation) and Mix + N,P (bioaugmentation and biostimulation) reached higher TH removal, being 89.85%, 91.00%, 93.04%, respectively, comparing to 77.83% of system C (natural attenuation) at 90 days. The increased heterotrophic aerobic bacteria and hydrocarbon degrading bacteria counts were according to TH biodegrading process during the experiments. Our results showed that biostimulation with nutrients represent a valuable alternative tool to treat a chronically hydrocarbon-contaminated industrial soil, while bioaugmentation with a consortium of hydrocarbon degrading bacteria would be justified when the soil has a low amount of endogenous degrading microorganisms. Furthermore, the production of inoculum for application in bioaugmentation using low-cost substrates, such as industrial waste, would lead to the development of an environmentally friendly and attractive process in terms of cost-benefit.

摘要

本研究描述了生物强化和生物刺激过程对受碳氢化合物污染的工业土壤进行生物修复的实际意义。为此,通过测试包括共产品和农业工业废物在内的碳源和氮源,评估了六种土著烃降解细菌的生物质产量作为生物强化策略的接种物,这些共产品和农业工业废物是生长培养基的可持续和低成本成分。此外,通过添加优化浓度的氮和磷来进行生物刺激。微宇宙试验表明,经过生物修复处理的慢性污染土壤中总烃(TH)得到了显著去除。在 90 天的时间里,与自然衰减系统 C(77.83%)相比,混合(生物强化)系统、N,P(生物刺激)和 Mix+N,P(生物强化和生物刺激)分别达到了更高的 TH 去除率,分别为 89.85%、91.00%和 93.04%。实验过程中,好氧异养细菌和烃降解细菌数量的增加与 TH 生物降解过程相对应。研究结果表明,用营养物质进行生物刺激是处理慢性烃污染工业土壤的一种有价值的替代工具,而当土壤中内源降解微生物数量较少时,使用烃降解细菌的生物强化则是合理的。此外,使用工业废物等低成本基质生产接种物用于生物强化将有助于开发一种具有成本效益的环保和有吸引力的工艺。

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