College of Life Sciences, Fujian Normal University, Fuzhou, Fujian 350117, China.
Fuzhou Clean Biotech Co., Ltd., Fuzhou 350100, China.
Bioresour Technol. 2020 Apr;302:122806. doi: 10.1016/j.biortech.2020.122806. Epub 2020 Jan 14.
A newly isolated microalgal strain, Desmodesmus sp. PW1, possessing not only high potential for removing nitrogen and phosphorous from piggery wastewater but excellent self-flocculating ability, was provided here. Strain PW1 grew well in diluted and undiluted piggery wastewater, and could effectively remove total nitrogen and total phosphorus with removal rates up to 90% and 70%, respectively. In the laboratory scale by 30-L photobioreactor, microalga also performed well in TN (65.3%) and TP (83.5%) removal. Strain PW1 cultivated in the stationary phase achieved high self-flocculating efficiency (>90%) in 2.5 h of settling; meanwhile, temperature and pH slightly influenced on the flocculation. The potential mechanism on self-flocculation was considered related to hydrophobic extracellular polymeric substances. Furthermore, the fatty acid compositions of PW1 were mainly hexadecanoic acid, oleic acid and linoleic acid. Taken together, Desmodesmus sp. PW1 was the promising candidate to overcome the microalgae harvesting problem in piggery wastewater treatment.
这里提供了一株新分离的微藻菌株,即绿球藻属 PW1 株,它不仅具有从猪场废水中去除氮和磷的巨大潜力,而且具有出色的自絮凝能力。菌株 PW1 在稀释和未稀释的猪场废水中生长良好,能够分别有效去除高达 90%和 70%的总氮和总磷。在 30-L 光生物反应器的实验室规模中,微藻对 TN(65.3%)和 TP(83.5%)的去除也表现良好。在静止期培养的 PW1 株在 2.5 小时的沉淀中实现了>90%的高自絮凝效率;同时,温度和 pH 值对絮凝稍有影响。自絮凝的潜在机制被认为与疏水性胞外聚合物有关。此外,PW1 的脂肪酸组成主要为十六烷酸、油酸和亚油酸。综上所述,绿球藻属 PW1 株是克服猪场废水处理中微藻收获问题的有前途的候选菌株。