Application of residual sludges from wastewater treatment technologies for construction of biofertiliser

Q4 Environmental Science
BioRisk Pub Date : 2022-04-21 DOI:10.3897/biorisk.17.77463
M. Belouhova, Dobromira Yaneva, Y. Topalova
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引用次数: 0

Abstract

To stimulate plant development in phytoremediation or in the cultivation of non-food crops in potentially contaminated soils, a biotechnologically created product could be applied. The aim of this study was to explore the possibility of creation of biofertiliser, based on activated sludge combined with bacterial strain with detoxifying and plant growth promoting properties. The presented study is focused on the effect of phenol in the following concentrations: 5 mg/l, 100 mg/l, 250 mg/l, 500 mg/l and 1000 mg/l on the metabolic activity of Brevibacillus laterosporusBT271. The gradual increased concentration of phenol was used to study the metabolic activity of mineralised activated sludge and B. laterosporusBT271. The CTC/DAPI staining showed high activity of the bacteria even at the highest concentration. The greatest amount of biomass was accumulated at 5 mg/l phenol (4.44 × 107 cells/ml). At this toxicant concentration, a total dehydrogenase activity of 5.72 × 10-4 μg H+/ml*min was found. Studies of the metabolic activity of microorganisms in experiments involving a combination of mineralised activated sludge, B. laterosporusBT271 and phenol at three concentrations (5 mg/l, 250 mg/l and 1000 mg/l) showed the highest value for dehydrogenase activity in the variant with average phenolic concentration (up to 6.39 × 10-6 μg H+/ml*min. The results proved the detoxification potential of B. laterosporusBT271 when different concentrations of phenol were present. The combination of a mineralised activated sludge and selected highly active biodegrading B. laterosporusBT271 showed valuable properties of detoxification and metabolic activity and keep these potentials up to 1000mg/l phenol.
污水处理剩余污泥在生物肥料建设中的应用
为了刺激植物在植物修复或在潜在污染土壤中种植非粮食作物方面的发展,可以应用生物技术创造的产品。本研究的目的是探索基于活性污泥与具有解毒和促进植物生长特性的菌株相结合创造生物肥料的可能性。本研究的重点是以下浓度的苯酚:5 mg/l、100 mg/l、250 mg/l、500 mg/l和1000 mg/l对侧孢短杆菌BT271代谢活性的影响。苯酚浓度的逐渐增加用于研究矿化活性污泥和B.laterosporusBT271的代谢活性。CTC/DAPI染色显示即使在最高浓度下细菌也具有高活性。当苯酚浓度为5mg/l(4.44×107个细胞/ml)时,生物量积累最多。在该毒物浓度下,总脱氢酶活性为5.72×10-4μgH+/ml*min。在涉及矿化活性污泥的组合的实验中对微生物代谢活性的研究,B.laterosporusBT271和三种浓度(5 mg/l、250 mg/l和1000 mg/l)的苯酚在具有平均酚浓度的变体中显示出最高的脱氢酶活性值(高达6.39×10-6μgH+/ml*min。结果证明,在不同浓度的苯酚存在下,B.laterosporusBT271具有解毒潜力。矿化活性污泥与选定的高活性生物降解B.laterosportusBT271的组合显示出有价值的解毒和代谢活性,并将这些潜力保持在1000mg/l苯酚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BioRisk
BioRisk Environmental Science-Environmental Science (miscellaneous)
CiteScore
1.40
自引率
0.00%
发文量
44
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