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doi: 10.13205/j.hjgc.201909003
  • Received Date: 2019-07-04
    Available Online: 2023-11-24
  • Publish Date: 2019-09-30
  • [1]
    宁梓洁,王鑫.黑臭水体治理技术研究进展[J].环境工程,2018,36(8):31-34

    ,78.
    [2]
    李广胜,雷利荣.曝气复氧+微生物菌剂修复黑臭河道工程试验[J].环境工程,2018,36(4):34-36.
    [3]
    金承翔,孙建军,黄民生,等.组合生物技术对黑臭水体净化修复研究[J].净水技术,2005,24(4):1-4.
    [4]
    刘春,黄霞,杨景亮.废水生物强化中基因工程菌的流失和环境生存状况研究[J].环境科学,2008,29(9):2571-2575.
    [5]
    徐吉成,张晓颖,廖敏,等.改性玄武岩纤维的制备及其挂膜性能[J].复合材料学报,2018,35(12):205-212.
    [6]
    Jiang X,Wu C D,Wu Z R,et al. Basic characteristics and application of basalt fiber in the water pollution control[J].Advanced Materials Research, 2015, 1073/1074/1075/1076:838-843.
    [7]
    吴智仁,彭娇,吴春笃,等.新型生物接触氧化载体及其实验研究[J].水处理技术,2016(1):52-55.
    [8]
    Ni H C,Zhou X T,Zhang X Y,et al. Feasibility of using basalt fiber as biofilm carrier to construct bio-nest for wastewater treatment[J]. Chemosphere,2018(212):768-776.
    [9]
    Zhang X Y,Zhou X T,Ni H C,et al. Surface modification of basalt fiber with organic/inorganic composites for biofilm carrier used in wastewater treatment[J]. ACS Sustainable Chemistry&Engineering,2018,6(2):2596-2602.
    [10]
    张晓颖,荣新山,徐吉成,等.玄武岩纤维表面改性对生物膜附着性能的影响[J].材料工程,2019,47(5):129-136.
    [11]
    王风芹,杨乐,侯淑芬,等.活性炭纤维生态草对水体氨氮脱除的影响[J].江西农业学报,2013(6):116-118.
    [12]
    李振高,骆永明,滕应.土壤与环境微生物研究法[M].北京:科学出版社,2008:92-103.
    [13]
    丰民义,方涛,吴娟,等.不同载体的藻-菌生物膜应用于水体净化[J].水处理技术,2007,33(3):59-61.
    [14]
    孙恩呈,商平,赵瑞华,等.改性玄武岩岩棉去除水中氨氮的实验研究[J].天津化工,2008,22(1):52-55.
    [15]
    Guo L,Chen Q,Fang F,et al. Application potential of a newly isolated indigenous aerobic denitrifier for nitrate and ammonium removal of eutrophic lake water[J]. Bioresource Technology,2013,142(4):45-51.
    [16]
    刘琪,程方,张文丽,等.膜曝气生物反应器内DO分布变化及其对有机物和氮去除的影响[J].环境工程学报,2017,11(12):6246-6251.
    [17]
    Zhang Q,Liang X L,Wei J,et al. Effects of size and spacing of basalt fiber carrier media on performance,extracellular polymeric substances and microbial community of hybrid biological reactors[J]. Environmental Science:Water Research&Technology,2019,5:1253-1261.
    [18]
    张彪,吴亦红,刘存歧,等.不同密度人工水草对氮、磷去除效果研究[J].科学技术与工程,2016,16(7):281-285.
    [19]
    童敏,李真,黄民生,等.多功能人工水草生物膜处理黑臭河水研究[J].水处理技术,2011,37(8):112-116.
    [20]
    袁文权,张锡辉,张丽萍.不同供氧方式对水库沉积物氮磷释放的影响[J].湖泊科学,2004,16(1):28-34.
    [21]
    叶小青,彭亭瑜,姬玉欣,等.微生物胞外聚合物在环境工程中的应用进展[J].杭州师范大学学报(自然科学版),2016,15(4):387-393.
    [22]
    许芝,费庆志,刘晓旭.不同填料影响生物接触氧化工艺处理效果的研究[J].净水技术,2007,26(5):55-58.
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