Collao Javiera, García-Encina Pedro Antonio, Blanco Saúl, Bolado-Rodríguez Silvia, Fernandez-Gonzalez Nuria
Department of Chemical Engineering and Environmental Technology, University of Valladolid, Dr. Mergelina s/n, 47011 Valladolid, Spain.
Institute of Sustainable Processes (ISP), University of Valladolid, Dr. Mergelina s/n, 47011 Valladolid, Spain.
Biology (Basel). 2022 Aug 5;11(8):1176. doi: 10.3390/biology11081176.
The treatment of pig manure is a major environmental issue, and photobioreactors containing consortia of microalgae and bacteria have proven to be a promising and sustainable treatment alternative. This work studies the effect of Cu, Zn and As, three toxic elements frequently present in piggery wastewater, on the performance and microbiome of photobioreactors. After dopage with Zn (100 mg/L), Cu (100 mg/L), and As (500 µg/L), the high biomass uptake of Zn (69-81%) and Cu (81-83%) decreased the carbon removal in the photobioreactors, inhibited the growth of sp., and affected heterotrophic bacterial populations. The biomass As uptake result was low (19%) and actually promoted microalgae growth. The presence of Cu and As decreased nitrogen removal, reducing the abundance of denitrifying bacterial populations. The results showed that metal(loid)s significantly affected 24 bacterial genera and that they did not recover after exposure. Therefore, this study makes an important contribution on the impact of the presence of metal(loid)s in piggery wastewater that compromises the overall performance of PBRs, and so, the environmental and health impact of treated effluents.
猪粪处理是一个重大的环境问题,事实证明,含有微藻和细菌聚生体的光生物反应器是一种有前景的可持续处理替代方案。这项研究探讨了养猪废水中常见的三种有毒元素铜、锌和砷对光生物反应器性能和微生物群落的影响。在添加锌(100毫克/升)、铜(100毫克/升)和砷(500微克/升)后,锌(69%-81%)和铜(81%-83%)的高生物量吸收降低了光生物反应器中的碳去除率,抑制了 菌的生长,并影响了异养细菌种群。生物量对砷的吸收量较低(19%),实际上促进了微藻的生长。铜和砷的存在降低了氮去除率,减少了反硝化细菌种群的丰度。结果表明,金属(类金属)显著影响了24个细菌属,且在暴露后无法恢复。因此,本研究对养猪废水中金属(类金属)的存在对光生物反应器整体性能的影响以及处理后废水的环境和健康影响做出了重要贡献。