Sino-Dutch R&D Centre for Future Wastewater Treatment Technologies/Key Laboratory of Urban Stormwater System and Water Environment, Beijing University of Civil Engineering and Architecture, Beijing 100044, China.
Sino-Dutch R&D Centre for Future Wastewater Treatment Technologies/Key Laboratory of Urban Stormwater System and Water Environment, Beijing University of Civil Engineering and Architecture, Beijing 100044, China.
Bioresour Technol. 2023 Jul;380:129062. doi: 10.1016/j.biortech.2023.129062. Epub 2023 Apr 18.
Vanadium (V) in groundwater could cause a serious threat to the environment and health. Continuous flow reactors were applied to reduce V(V) with straw being a solid carbon. The reduced efficiency of V(V) in the reactor with straw and inoculated sludge reached to 71.8%-99.9% for two months' operation (after 44 d). However, a long-term operation with only straw was not satisfied, achieving the reduced efficiency of 39.2-66.6%. The SEM images clearly revealed some traces of straw surface by utilized by microbes, which implied that microbes had a stronger capacity to hydrolyze straw. The introducing external microbes were essential to achieve a better bio-reduction performance on V(V). Treponema (5.3%) with metal reduction ability and Prevotellaceae (3.3%) able to specifically degrade complex plant-derived polysaccharides were found to be dominant in the microbial community. Utilizing agricultural biomass can save a lot of normal carbon like acetate, which is of benefit for carbon emissions.
地下水中的钒(V)可能对环境和健康造成严重威胁。连续流反应器被应用于用稻草作为固体碳还原 V(V)。在接种污泥的情况下,反应器中用稻草还原 V(V)的效率达到了 71.8%-99.9%,运行时间为两个月(44 天后)。然而,仅用稻草进行长期运行并不令人满意,还原效率仅为 39.2-66.6%。SEM 图像清楚地显示了微生物利用的稻草表面的一些痕迹,这表明微生物具有更强的水解稻草的能力。引入外部微生物对于实现更好的 V(V)生物还原性能至关重要。具有金属还原能力的密螺旋体(5.3%)和能够特异性降解复杂植物来源多糖的普雷沃氏菌科(3.3%)被发现是微生物群落中的优势菌。利用农业生物质可以节省大量像乙酸盐这样的正常碳,这有利于减少碳排放。