无机废水中藻菌颗粒污泥的培养及脱氮性能
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1.江西理工大学土木与测绘工程学院;2.赣州科净环保工程技术有限公司

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X703.1

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国家自然科学基金资助项目(52060007);江西理工大学清江青年英才支持计划(JXUSTQJYX2020008);江西省大学生创新训练计划项目(S202310407060、S202210407024)


Cultivation of algal-bacterial granular sludge and its denitrification performance in inorganic wastewater
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1.School of Civil and Surveying Mapping Engineering,Jiangxi University of Science and Technology;2.Ganzhou Kejing Environmental Protection Engineering Technology Co,LTD

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    摘要:

    探索了无机废水中藻菌颗粒污泥(ABGS)的培养及稳定性,为离子型稀土矿山尾水治理提供技术支持。接种好氧颗粒污泥(AGS)及藻液启动光序批式反应器,前45天定期外投絮凝剂以促进藻类快速富集。运行过程中颗粒数量和粒径均不断减小,但藻类逐渐富集,在第42天成功构建藻菌共生体系,在第129天培养出成熟ABGS。第145天时ABGS的平均粒径和污泥浓度分别为0.46 mm和1750 mg/L,SVI为51.43 mL/g,污泥叶绿素a含量为17.48 mg/L-19.94 mg/L,优势菌属为Blastopirellula(相对丰度16.70%)、SM1A02(相对丰度12.91%)、Nitrosomonas(相对丰度7.78%)等,优势藻属为Chlorella(88.06%)。在1-67天和105-131天内氨氮和总无机氮(TIN)去除率波动较大,在68-104天和132-145天氨氮和TIN去除率分别基本接近100%和60%左右。藻类产氧速率整体呈减小趋势,第100天开始保持在15mgO2/(L·h)-1左右。通过藻类同化模型及进出水TIN计算出藻类贡献的TIN去除率由约100%逐渐减小至15%。

    Abstract:

    This paper investigated the cultivation and stability of algae-bacteria granular sludge (ABGS) in inorganic wastewater, aiming to provide technical support for the treatment of ionic rare earth mine wastewater. Aerobic granular sludge (AGS) and algal liquid were inoculated to start the photo-sequencing batch reactor, and coagulant was regularly added to promote the rapid enrichment of algae in Days 1-45. During the operation, the number and particle size of AGS decreased continuously, but algae gradually enriched. The algae-bacteria symbiosis system was successfully constructed on Day 42, and mature ABGS was cultured on Day 129. On Day 145, the average particle size and sludge concentration of ABGS were 0.46 mm and 1750 mg/L, respectively, the SVI was 51.43 mL/g, the Chlorophyll a content of sludge was 17.48 mg/L, the dominant bacterial genera were Blastopirellula (relative abundance of 16.70%), SM1A02 (relative abundance of 12.91%), Nitrosomonas (relative abundance of 7.78%), etc, and the dominant algae was Chlorella (relative abundance of 88.06%). The removal efficiencies of ammonia nitrogen and total inorganic nitrogen (TIN) fluctuated greatly in Days 1-67 and 105-131, and the removal efficiencies of ammonia nitrogen and TIN were basically close to 100 % and 60 % in Days 68-104 and 132-145, respectively. The oxygen production rate of algae showed a overall decreasing trend, and remained at approximately 15 mgO2/(L·h)-1 from Day 100. The contribution rate of algae for TIN removal was gradually decreased from approximately 100% to 15 % calculated by algae assimilation model and TIN in the influent and effluent.

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罗怡,李正昊,程媛媛,康建林,刘立良,龙焙.无机废水中藻菌颗粒污泥的培养及脱氮性能[J].精细化工,2024,41(12):

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  • 收稿日期:2023-11-28
  • 最后修改日期:2024-02-03
  • 录用日期:2024-01-15
  • 在线发布日期: 2024-12-10
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