Miao Lingzhan, Chai Wenyun, Luo Dan, Adyel Tanveer M, Wu Jun, Kong Ming, Wang Wanzhong, Hou Jun
Key Laboratory of Integrated Regulation and Resources Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Nanjing 210098, China.
Tibet Research Academy of Eco-environmental Sciences, No. 26, Jinzhu Middle Road, Chengguan District, Lhasa 850030, Tibet Autonomous Region, China.
Bioresour Technol. 2023 Dec;389:129805. doi: 10.1016/j.biortech.2023.129805. Epub 2023 Sep 26.
Here, a hybrid scaffold of polyvinyl alcohol/sodium alginate (PVA/SA) was used to prepare solid carbon sources (SCSs) for treating low carbon/nitrogen wastewater. The four SCSs were divided into two groups, biodegradable polymers group (including polyvinyl alcohol-sodium alginate (PS) and PS-PHBV (PP), and blended SCSs (PS-PHBV-wood chips (PPW) and PS-PHBV-wheat straw (PPS)). After the leaching experiments, no changes occurred in elemental composition and functional groups of the SCSs, and the released dissolved organic matter showed a lower degree of humification and higher content of labile molecules in the blended SCSs groups using EEM and FT-ICR-MS. The denitrification performance of the blended SCSs was higher, with nitrate removal efficiency over 84%. High-throughput sequencing confirmed PPW had the highest alpha-diversity, and the microbial community structure significantly varied among SCSs. Results of functional enzymes and genes show the released carbon components directly affect the NADH level and electron transfer efficiency, ultimately influencing denitrification performance.
在此,采用聚乙烯醇/海藻酸钠(PVA/SA)混合支架制备用于处理低碳/氮废水的固体碳源(SCSs)。这四种SCSs分为两组,即生物可降解聚合物组(包括聚乙烯醇-海藻酸钠(PS)和PS-PHBV(PP))以及混合SCSs组(PS-PHBV-木屑(PPW)和PS-PHBV-麦秸(PPS))。经过浸出实验后,SCSs的元素组成和官能团未发生变化,利用EEM和FT-ICR-MS分析发现,混合SCSs组释放的溶解有机物的腐殖化程度较低,不稳定分子含量较高。混合SCSs的反硝化性能较高,硝酸盐去除效率超过84%。高通量测序证实PPW具有最高的α多样性,且不同SCSs之间的微生物群落结构存在显著差异。功能酶和基因的结果表明,释放的碳成分直接影响NADH水平和电子传递效率,最终影响反硝化性能。