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Study on Rapid Start-up of Anammox Process under the Influence of Magnetic Field

机译:磁场影响下厌氧氨氧化工艺的快速启动研究

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In order to study the rapid start-up technology of the anaerobic ammonium oxidation process, a comparison test of no magnetic field and magnetic field was performed in two identical ASBR reactors R1 and R2 respectively. The results show that both reactors can successfully start Anammox. The R2 start-up period (75d) of the applied magnetic field is shortened by 15% compared with the unloaded magnetic field R1 start-up period (90d); the R2 ammonia-nitrogen removal rate is 97% higher than that of 95% of R1. The quantitative relationship analysis between NH_(4)~(+)-N, NO_(2)~(-)-N and NO_(3)~(-)-N shows that the change of R2 ratio is closer to the theoretical value, which can better improve the activity of microbial enzymes and accelerate the enrichment of ammonia oxidizing bacteria in the reactor. It is beneficial to nitrogen removal and R2 can quickly start the anaerobic ammonium oxidation process.
机译:为了研究厌氧铵氧化工艺的快速启动技术,分别在两个相同的ASBR反应器R1和R2中进行了无磁场和磁场的对比测试。结果表明,两个反应器都可以成功启动Anammox。与空载磁场R1的启动时间(90d)相比,外加磁场的R2的启动时间(75d)缩短了15%。 R2的氨氮去除率比R1的95%高97%。 NH_(4)〜(+)-N,NO_(2)〜(-)-N和NO_(3)〜(-)-N之间的定量关系分析表明,R2比的变化更接近理论值可以更好地提高微生物酶的活性,并加速反应器中氨氧化细菌的富集。 R2可以快速启动厌氧铵氧化过程,这对脱氮非常有帮助。

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