Primo Thais Agda R da C, Vargas Luana Búrigo, Alves Rafaela Dexcheimer, de Farias Neves Fabio, Skoronski Everton
Department of Environmental and Sanitary Engineering, Laboratory for Water and Waste Treatment, Santa Catarina State University, Lages, Brazil.
Department of Fisheries Engineering and Biological Sciences, Laboratory of Alga Cultivation and Biotechnology, Santa Catarina State University, Laguna, Brazil.
Environ Technol. 2025 Mar;46(8):1229-1241. doi: 10.1080/09593330.2024.2381643. Epub 2024 Jul 25.
Microalgal Technologies have recently been employed as an alternative treatment for high nitrogen content wastewater. Nitrogen is an essential nutrient for microalgae growth, and its presence in wastewater may be an alternative source to synthetic medium, contributing to a circular economy. This study aimed to investigate the effect of using cultivated in wastewater from the thermal processing of chicken meat. Experiments were performed to obtain the ideal sampling site, dosage, and contact time. had better growth in the sample from the settling basin. Nitrogen removal was 95% (0,15 mg TNK/10 cells) in 9 days, and the final nitrogen concentration was lower than 20 mg/L, and the nitrate concentration was lower than 1 mg/L. However, during the third cycle in the kinetic assay, there was a decline in the microalgae growth, occasioned by the accumulation of nitrite (38,4 mg/L) in the inside of the cell. The study demonstrated that nitrogen concentration is directly related to the cell growth of the algae. efficiently removed nitrogen from chicken meat thermal processing wastewater and is a potential option for tertiary treatment and valorisation of such effluent as a nitrogen source.
微藻技术最近已被用作高氮含量废水的替代处理方法。氮是微藻生长的必需营养素,废水中氮的存在可能是合成培养基的替代来源,有助于实现循环经济。本研究旨在调查使用鸡肉热加工废水中培养的微藻的效果。进行了实验以获得理想的采样地点、剂量和接触时间。微藻在沉淀池的样品中生长较好。9天内氮去除率为95%(0.15毫克总氮/10个细胞),最终氮浓度低于20毫克/升,硝酸盐浓度低于1毫克/升。然而,在动力学试验的第三个周期中,微藻生长出现下降,这是由于细胞内亚硝酸盐积累(38.4毫克/升)所致。该研究表明,氮浓度与藻类的细胞生长直接相关。微藻能有效去除鸡肉热加工废水中的氮,是此类废水三级处理和作为氮源回收利用的潜在选择。