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一种来自[具体来源未给出]的生物絮凝剂及其在酸性矿山废水处理中的应用。

A bioflocculant from and its application in acid mine wastewater treatment.

作者信息

Liu Yinlu, Zeng Yan, Yang Jiangang, Chen Peng, Sun Yuanxia, Wang Min, Ma Yanhe

机构信息

Tianjin Key Laboratory of Industrial Microbiology, College of Biotechnology, Tianjin University of Science and Technology, Tianjin, China.

National Engineering Laboratory for Industrial Enzymes, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.

出版信息

Front Bioeng Biotechnol. 2023 Feb 28;11:1136473. doi: 10.3389/fbioe.2023.1136473. eCollection 2023.

Abstract

Although many microorganisms have been found to produce bioflocculants, and bioflocculants have been considered as attractive alternatives to chemical flocculants in wastewater treatment, there are few reports on bioflocculants from the safe strain , and the application of bioflocculants in acid wastewater treatment is also rare attributed to the high content of metal ions and high acidity of the water. In this study, a novel bioflocculant produced by Cg1-P30 was investigated. An optimal production of this bioflocculant with a yield of 0.52 g/L was achieved by Box-Behnken design, using 12.20 g/L glucose, 4.00 g/L corn steep liquor and 3.60 g/L urea as carbon and nitrogen source. The structural characterization revealed that the bioflocculant was mainly composed of 37.50% neutral sugar, 10.03% uronic acid, 6.32% aminosugar and 16.51% protein. Carboxyl, amine and hydroxyl groups were the functional groups in flocculation. The biofocculant was thermally stable and dependent on metal ions and acidic pH, showing a good flocculating activity of 91.92% at the dosage of 25 mg/L by aid of 1.0 mM Fe at pH 2.0. Due to these unique properties, the bioflocculant could efficiently remove metal ions such as Fe, Al, Zn, and Pb from the real acid mine wastewater sample without pH adjustment, and meanwhile made the acid mine wastewater solution become clear with an increased neutral pH. These findings suggested the great potential application of the non-toxic bioflocculant from Cg1-P30 in acid mine wastewater treatment.

摘要

尽管已发现许多微生物可产生生物絮凝剂,并且在废水处理中生物絮凝剂被视为化学絮凝剂的有吸引力的替代品,但关于来自安全菌株的生物絮凝剂的报道很少,而且由于酸性废水中金属离子含量高和酸度高,生物絮凝剂在酸性废水处理中的应用也很少见。在本研究中,对由Cg1-P30产生的一种新型生物絮凝剂进行了研究。通过Box-Behnken设计,以12.20 g/L葡萄糖、4.00 g/L玉米浆和3.60 g/L尿素作为碳源和氮源,实现了该生物絮凝剂的最佳产量,产量为0.52 g/L。结构表征表明,该生物絮凝剂主要由37.50%的中性糖、10.03%的糖醛酸、6.32%的氨基糖和16.51%的蛋白质组成。羧基、胺基和羟基是絮凝中的官能团。该生物絮凝剂具有热稳定性,依赖于金属离子和酸性pH值,在pH 2.0时借助1.0 mM铁,在25 mg/L的剂量下显示出91.92%的良好絮凝活性。由于这些独特的性质,该生物絮凝剂可以在不调节pH值的情况下,有效地从实际酸性矿山废水样品中去除铁、铝、锌和铅等金属离子,同时使酸性矿山废水溶液变清,中性pH值升高。这些发现表明来自Cg1-P30的无毒生物絮凝剂在酸性矿山废水处理中具有巨大的潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58da/10011464/2de5a1308e7a/fbioe-11-1136473-g001.jpg

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