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评估结构化床混合折流板反应器(SBHBR)废水在发芽阶段用于农业再利用的植物毒性。

Assessing the phytotoxicity of wastewater from the structured-bed hybrid baffled reactor (SBHBR) for agricultural reuse during the germination phase.

机构信息

Laboratory of Environmental Biotechnology, Department of Food Engineering, Faculty of Animal Science and Food Engineering, University of São Paulo, Brazil.

Department of Biosystems Engineering, Luiz de Queiroz College of Agriculture, University of São Paulo, Brazil.

出版信息

Sci Total Environ. 2024 Mar 25;918:170449. doi: 10.1016/j.scitotenv.2024.170449. Epub 2024 Jan 28.

Abstract

This study investigated the quality of anaerobic (AnE) and oxic/anoxic (O/A) effluents from a continuous-feed structured-bed hybrid baffled reactor (SBHBR) treating dairy wastewater impacts on lettuce and cucumber germination. While sustainable technologies like SBHBR have successfully removed organic matter and total nitrogen from dairy wastewater, residual concentrations may still represent a risk to water resources. Therefore, phytotoxicity bioassays were conducted with lettuce and cucumber seeds in contact with effluent during early stages to evaluate the potential implications of dairy wastewater reuse in agriculture. The study also explored the potential of SBHBR technology in promoting water resource preservation and creating a sustainable energy and nutrient cycling system. The physicochemical parameters of both effluents were characterized, and the phytotoxicity was evaluated by measuring the germination index (GI), root length (RL), the number of germinated seeds (SG), and epicotyl elongation (EE) for both lettuce and cucumber. The study revealed that the O/A effluent demonstrated lower phytotoxicity than the AnE effluent. The mean results indicate that the O/A zone wastewater was more conducive to cucumber germination than the AnE zone. Moreover, a positive influence of organic matter in the effluent on root growth and epicotyl elongation in cucumber, as well as the presence of nitrogen on the germination index, in both plant species. These findings emphasize the importance of considering effluent characteristics for suitable irrigation, highlighting SBHBR's potential as an effective solution for treating and reusing dairy wastewater in agriculture. This approach helps conserve water resources and promote a sustainable energy and nutrient cycling system.

摘要

本研究调查了连续进料结构床混合挡板反应器(SBHBR)处理奶牛废水中厌氧(AnE)和好氧/缺氧(O/A)出水的质量,以评估其对生菜和黄瓜发芽的影响。虽然像 SBHBR 这样的可持续技术已经成功地从奶牛废水中去除了有机物和总氮,但残留浓度仍可能对水资源构成风险。因此,采用生菜和黄瓜种子进行了接触式废水的植物毒性生物测定,以评估在农业中再利用奶牛废水的潜在影响。该研究还探讨了 SBHBR 技术在促进水资源保护和创建可持续能源和营养循环系统方面的潜力。对两种废水的理化参数进行了表征,并通过测量生菜和黄瓜的发芽指数(GI)、根长(RL)、发芽种子数(SG)和上胚轴伸长(EE)来评估其植物毒性。研究表明,O/A 废水的植物毒性低于 AnE 废水。平均结果表明,O/A 区废水更有利于黄瓜发芽。此外,废水中有机物对黄瓜根生长和上胚轴伸长有积极影响,氮对两种植物的发芽指数也有影响。这些发现强调了考虑废水特征以进行适当灌溉的重要性,突出了 SBHBR 作为在农业中处理和再利用奶牛废水的有效解决方案的潜力。这种方法有助于节约水资源并促进可持续的能源和营养循环系统。

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