参考文献/References:
[1]SCHINDLER D W, HECKY R E, FINDLAY D L, et al. Eutrophication oflakes cannot be controlled by reducing nitrogen input: Results ofa 37-year whole-ecosystem experiment[J].Proceedings of the National Academy of Sciences of the United States of America,2008,105(32): 11254-11258.
[2]THOMPSON I P,VAN DER GAST C J, CIRIC L, et al. Bioaugm entation for bioremediation: the challenge of strain selection[J]. Environ Microbial, 2005, 7(7):909-915.
[3]JIAO Y, ZHAO Q, JIN W, et al. Bioaugmentation of biological oxidation ditch with indigenous nitrifying bacteria for in-situ remediation of nitrogen-rich stream water[J].Bioresource Technology, 2011,102(2):990-995.
[4]刘波,王国祥,王风贺,等. 不同曝气方式对城市重污染河道水体氮素迁移与转化的影响[J].环境科学,2011,32(10):2971-2978.
[5]许宽,刘波,王国祥,等.底泥曝气对城市污染河道内源氮变化过程的影响[J].环境科学学报,2012,32(12): 2935-2942.
[6]徐京,朱亮,丁炜,等. 挂膜方式对模拟河道生物反应器启动与稳态运行的影响[J].中国环境科学,2010,30(8):1091-1096.
[7]曹蓉,邢海,金文标. 生物膜处理城市河道污染水体的挂膜试验研究[J]. 环境工程学报,2008,2(3):374-377.
[8]LEHMANN J, GAUNT J, RONDON M. Biochar sequestration in terrestrial ecosystems-a review[J]. Mitig Adapt Strat Global Change,2006,11:403-427.
[9]KNICKER H. How does fire affect the nature and stability of soil organic nitrogen and carbon a review[J].Biogeochemistry,2007(85):91-118.
[10]GLASER B, LEHMANN J, ZECH W. Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal-a review[J].Biol Fert Soils, 2002,35:219-230.
[11]梁丽萍.秸秆类生物吸附剂的制备及其对溶液中六价铬的吸附性能研究[D]. 兰州:兰州理工大学,2011.
[12]陈再明,方 远,徐义亮,等.水稻秸秆生物碳对重金属 Pb2+的吸附作用及影响因素[J].环境科学学报, 2012,32(4): 769-776.
[13]张继义,李金涛,鲁华涛,等.小麦秸秆生物碳质吸附剂从水中吸附硝基苯的机理[J].环境科学研究,2012,25(3): 333-339.
[14]杨晓庆,侯仔尧,常梦婷,等. 生物炭对镉污染土壤的修复研究[J]. 江苏农业科学,2015,43(6): 335-337.
[15]国家环境保护总局.水和废水监测分析方法[M].4版.北京:中国环境科学出版社,2002.
[16]张光亚,陈美慈,闵航,等.设施栽培土壤氧化亚氮释放及硝化、反硝化细菌数量的研究[J].植物营养与肥料学报, 2002,8(2): 239-243.
[17]于鑫,张晓键,王占生.饮用水生物处理中生物量的脂磷法测定[J].给水排水,2002,28(5): 1-5.
[18]朱晓彪,许春华,高宝玉,等.曝气生物滤池生物量和生物活性的实验研究[J].环境科学学报,2007,27(7):1135-1140.
[19]QIU Y P, ZHENG Z Z, ZHOU Z L,et al.Effectiveness and mechanisms of dye adsorption on a straw-based biochar[J]. Bioresource Technology, 2009,100:5348-5351.
[20]JUNYEONG P, IVAN H, GAN Z H, et al.Activated carbon from biochar: Influence of its physicochemicalproperties on the sorption characteristics of phenanthrene[J]. Bioresource Technology,2013 (149):383-389.
[21]QI P S, WANG W B, WANG H Y, et al.Effect of COD concentration and shear stress onsecretion of extracellular polymeric substances [J]. Journal of Harbin University of Commerce,2008(6):682-686.
[22]QIU Y P, ZHENG Z Z, ZHOU Z L, et al.Effectiveness and mechanisms of dye adsorption on a straw-based biochar [J]. Bioresource Technology, 2009 (100):5348-5351.
[23]PAOLA M, ELENA M, RUSSELL J D, et al. Predicting the effects of biochar on volatile petroleum hydrocarbonbiodegradation and emanation from soil: A bacterial communityfinger-print analysis inferred modelling approach[J].Soil Bionlogy & Biochemistry,2014(68):20-30.
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