Page 172 - 《环境工程技术学报》2022年第5期
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Vol.12,No.5                        环 境 工 程 技 术 学 报                                  第 12 卷,第 5 期
            Sep.,2022                     Journal of Environmental Engineering Technology          2022 年 9 月

            赵东华,岳冬梅,郑岩皓,等.磷对硫自养反硝化效果的影           响  [J].环境工程技术学报,2022,12(5):1528-1533.
            ZHAO D H,YUE D M,ZHENG Y H,et al.Influence of phosphorus on the performance of sulfur autotrophic denitrification[J].Journal of Environmental
            Engineering Technology,2022,12(5):1528-1533.

                                  磷对硫自养反硝化效果的影响


                                     赵东华,岳冬梅,郑岩皓,束梦照,葛俊,孙菲菲

                                             中交上海航道勘察设计研究院有限公司
            摘要 为探究硫自养反硝化所需的最低磷浓度,对硫自养反硝化系统进行磷饥饿处理,给予不同磷浓度的进水,考察磷浓度对硫
            自养反硝化效果和微生物群落结构的影响。结果表明:随着磷饥饿期的延长,                          NO x -N −  去除率由饥饿前 的  98.1%~99.6 %  逐步降
            至  24.8%~49.6%,且出水中随之出现亚硝酸盐的积累。补充磷后,               NO x -N −  去除率随进水磷浓度的增加显著提升,且进水磷浓度
            越高,  NO x -N  去除率能越快恢复至饥饿前水平(98       %  以上),出水中的亚硝酸盐氮浓度也越快降至饥饿前水平(不                 足  0.05 mg/L)。
                   −
            当进水中磷浓度不低       于  0.200 mg/ 时,硫自养反硝化效率不受磷浓度限制。磷浓度影响硫自养反硝化系统的微生物多样性,磷
                                      L
            恢复处理组的物种多样性和丰度均显著高于磷饥饿处理组。在磷恢复处理组中,硫自养反硝化相关的功能菌属是优势菌属,相
            对丰度   占  45.78%,而在磷饥饿处理组中,该功能菌属相对丰度仅             占  4.67%,磷浓度极大地影响了硫自养反硝化系统中的硫自养
            反硝化相关功能菌的相对丰度。
            关键词 硫自养反硝化;        NO -N  去除率;磷饥饿;微生物群落结构
                                  −
                                  x
            中图分类号:X703    文章编号:1674-991X(2022)05-1528-06  doi:10.12153/j.issn.1674-991X.20210391
             Influence of phosphorus on the performance of sulfur autotrophic denitrification

                      ZHAO Donghua,  YUE Dongmei,  ZHENG Yanhao,  SHU Mengzhao,  GE Jun,  SUN Feifei
                                     Shanghai Waterway Engineering Design and Consulting Co., Ltd.
            Abstract In order to explore the minimum requirement of phosphorus for sulfur autotrophic denitrification, the
            sulfur  autotrophic  denitrification  system  was  first  treated  with  phosphorus  starvation,  and  then  the  influents  of
            different phosphorus concentrations were provided to investigate the influence of phosphorus concentration on the
            sulfur autotrophic denitrification performance and microbial community structure. The results showed that with the
                                                        −
            extension  of  the  phosphorus  starvation  period,   NO -N  removal  efficiency  declined  gradually  from  98.1%-99.6%
                                                        x
            before  phosphorus  starvation  to  24.8%-49.6%  after  phosphorus  starvation,  accompanied  by  an  accumulation  of
            nitrite in the effluent. After phosphorus addition,  NO -N removal efficiency increased significantly with increasing
                                                         −
                                                         x
            influent phosphorus concentration. The higher the influent phosphorus concentration, the faster the  NO -N removal
                                                                                                  −
                                                                                                  x
            efficiency and effluent nitrite concentration recovered to the level before phosphorus starvation, with more than 98%
            and  less  than  0.05  mg/L,  respectively.  The  efficiency  of  sulfur  autotrophic  denitrification  was  not  limited  by
            phosphorus  concentration  when  the  influent  phosphorus  concentration  was  not  lower  than  0.200  mg/L.  The
            phosphorus concentration affected the microbial diversity of the sulfur autotrophic denitrification system, and the
            community  diversity  and  richness  of  the  sulfur  autotrophic  denitrification  group  recovered  from  phosphorus
            starvation  were  significantly  higher  than  that  of  the  group  under  phosphorus  starvation.  The  functional  genera
            related  to  sulfur  autotrophic  denitrification  were  the  predominant  genera  in  the  sulfur  autotrophic  denitrification
            group recovered from phosphorus starvation, with the relative abundance accounting for 45.78%, while the relative
            abundance  only  accounted  for  4.67%  in  the  group  under  phosphorus  starvation.  The  phosphorus  concentration
            greatly affected the relative abundance of functional genera related to sulfur autotrophic denitrification in the sulfur
            autotrophic denitrification system.
            Key words sulfur  autotrophic  denitrification;   NO -N  removal  efficiency;  phosphorus  starvation; microbial
                                                         −
                                                         x
            community structure



            收稿日期:2021-08-09
            作者简介:赵东华(1977—),男,教授级高级工程师,硕士,主要从事水污染防治与生态修复研究,zhaodonghua@ccccltd.cn
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