Please wait a minute...

中国生物工程杂志

China Biotechnology
China Biotechnology  2012, Vol. 32 Issue (12): 125-129    DOI:
    
Research Progress on the Simultaneous Removal of Nitrate and Pesticides from Groundwater using Solid-phase Denitrification Process
WANG Xu-ming1, SUN Li-jiao1,2, QIU Tian-lei1, ZHANG Lan-he2
1. Beijing Agro-Biotechnology Research Center, Beijing 100097, China;
2. School of Chemical Engineering, Northeast Dianli University, Jilin 132012, China
Download: HTML   PDF(423KB) HTML
Export: BibTeX | EndNote (RIS)      

Abstract  Groundwater pollution by pesticides and nitrate from intensive agricultural practices is a common and growing problem in the major agricultural areas of the world. A novel water treatment process termed as "solid-phase denitrification (SPD)" is introduced, and the present research status and development for the simultaneous removal of nitrate and pesticides using SPD process are reviewed. The mechanisms and problems for SPD research are also analyzed. Finally, the future research emphasis and prospect are proposed.

Key wordsSolid-phase denitrification      Groundwater      Nitrate      Pesticide     
Received: 02 July 2012      Published: 25 December 2012
ZTFLH:  Q819  
Cite this article:

WANG Xu-ming, SUN Li-jiao, QIU Tian-lei, ZHANG Lan-he. Research Progress on the Simultaneous Removal of Nitrate and Pesticides from Groundwater using Solid-phase Denitrification Process. China Biotechnology, 2012, 32(12): 125-129.

URL:

https://manu60.magtech.com.cn/biotech/     OR     https://manu60.magtech.com.cn/biotech/Y2012/V32/I12/125

[1] Feleke Z, Sakakibara Y. A bio-electrochemical reactor coupled with adsorber for the removal of nitrate and inhibitory pesticide. Water Res, 2002, 36: 3092-3102.
[2] Rivett M O, Buss S R, Morgan P, et al. Nitrate attenuation in groundwater: A review of biogeochemical controlling processes. Water Res, 2008, 42: 4215-4232.
[3] 李炳华, 任仲宇, 陈鸿汉, 等. 刘菲太湖流域某农业区浅层地下水有机氯农药残留特征初探. 农业环境科学学报, 2007, 26: 1714-1718. Li B, Ren Z, Chen H, et al. Residues of organochlorine pesticides in shallow groundwater of agricultural region in Taihu basin. Journal of Agro-Environment Science, 2007, 26: 1714-1718.
[4] 郭秀红, 陈玺, 黄冠星, 等. 珠江三角洲地区浅层地下水中有机氯农药的污染特征. 环境化学, 2006, 25: 798-799. Guo X H, Chen X, Huang G X, et al. Pollution characteristics of organochlorine pesticides in shallow groundwater in pearl river delta region.Environmental Chemistry, 2006, 25: 798-799.
[5] 任晋, 蒋可. 阿特拉津及其降解产物对张家口地区饮用水资源的影响. 科学通报. 2002, 47: 758-762. Ren J, Jiang K. Effects of atrazine and its decomposition products on drinking water resources in Zhangjiakou region. Chinese Science Bulletin, 2002, 47: 758-762.
[6] Aslan S, Turkman A. Nitrate and pesticides removal from contaminated water using biodenitrification reactor. Process Biochem, 2006, 41: 882-886.
[7] 李若愚, 徐斌, 高乃云, 等. 我国饮用水中内分泌干扰物的去除研究进展. 中国给水排水, 2006, 22: 1-4. Li R Y, Xu B, Gao N Y, et al. Study progress on removal of endocrine disrupting chemicals in drinking water in China.China Water & Wastewater, 2006, 22: 1-4.
[8] Ovezr. Batch biological denitrification using Arundo donax, Glycyrrhiza glabra, and Gracilaria verrucosa as carbon source. Process Biochem, 2006, 41: 1289-1295.
[9] Robinson-Lora M A, Brennan R A. The use of crab-shell chitin for biological denitrification: Batch and column tests. Bioresour Technol, 2009, 100: 534-541.
[10] Ghafari S, Hasan M, Aroua M K. Bio-electrochemical removal of nitrate from water and wastewater——A review. Bioresour Technol, 2008, 99: 3965-3974.
[11] Kesserü P, Kiss I, Bihari Z, et al. Investigation of the denitrification activity of immobilized Pseudomonas butanovora cells in the presence of different organic substrates. Water Res, 2002, 36: 1565-1571.
[12] Gómez M A, González-López J, Hontoria-García E. Influence of carbon source on nitrate removal of contaminated groundwater in a denitrifying submerged filter. J Hazard Mater, 2000, B80: 69-80.
[13] Hiraishi A, Khan S T. Application of polyhydroxyalkanoates for denitrification in water and wastewater treatment. Appl Microbiol Biotechnol, 2003, 61: 103-109.
[14] Volokita M, Abeliovich A. Soares M I. Denitrification of groundwater using cotton as energy source. Water Sci Technol. 1996, 34: 379-385.
[15] Aslan S, Turkman A. Simultaneous biological removal of endosulfan (α+β) and nitrates from drinking waters using wheat straw as substrate. Environ Int, 2004, 30: 449-455.
[16] Li G, Chen J, Yang T, et al. Denitrification with corncob as carbon source and biofilm carriers. Water Sci Technol, 2012, 65: 1238-1242.
[17] Volokita M, Belkin S, Abeliovich A, et al. Biological denitrification of drinking water using newspaper. Water Res, 1996, 30: 965-971.
[18] Boley A, Muller W R, Haider G. Biodegradable polymers as solid substrate and biofilm carrier for denitrification in recirculated aquaculture systems. Aquacult Eng, 2000, 22: 75-85.
[19] Wang X M, Wang J L. Removal of nitrate from groundwater by heterotrophic denitrification using the solid carbon source. Sci China Ser B-Chem, 2009, 52: 236-240.
[20] 王旭明, 王建龙. 利用固相反硝化工艺去除饮用水原水中的硝酸盐. 中国给水排水, 2008, 24: 6-10. Wang X, Wang J. Removal of nitrate from raw drinking water using solid-phase denitrification process. China Water & Wastewater, 2008, 24: 6-10.
[21] Yu X, Huang, Xing L, et al. Effect of environmental conditions on nitrate removal from groundwater using biodenitrification supported by biodegradable snack ware. Advanced Materials Research, 2010, 113-114: 1349-1352.
[22] 李军, 徐影, 王秀玲, 等. 固体碳源填充床反应器反硝化性能的研究. 农业环境科学学报, 2012, 31: 1230-1235. Li J, Xu Y, Wang X L, et al. Denitrification performance of a packed bed reactor using solid carbon source. Journal of Agro-Environment Science, 2012, 31: 1230-1235.
[23] Crawford J J, Sims G K, Mulvaney R L, et al. Biodegradation of atrazine under denitrifying conditions. Appl Microbiol Biotechnol, 1998, 49: 618-623.
[24] Chakraborty R, Coates J D. Anaerobic degradation of monoaromatic hydrocarbons. Appl Microbiol Biotchnol, 2004, 64: 437-446.
[25] Coates J D, Chakraborty R, Lack J G, et al. Anaerobic benzene oxidation coupled to nitrate reduction in pure culture by two strains of Dechloromonas. Nature, 2001, 411: 1039-1043.
[26] Katz I, Dosoretz C G, Mandelbaum R T, et al. Atrazine degradation under denitrifying conditions in continuous culture of Pseudomonas ADP. Water Res, 2001, 35: 3272-3275,
[27] Li Y, Gu G, Zhao J, et al. Anoxic degradation of nitrogenous heterocyclic compounds by acclimated activated sludge. Process Biochem, 2001, 37: 81-86.
[28] Boley A, Mergaert J, Muller C, et al. Denitrification and pesticide elimination in drinking water treatment with the biodegradable polymer poly(ε-caprolactone) (PCL). Acta Hydrochim Hydrobiol, 2003, 31: 195-203.
[29] Aslan S. Combined removal of pesticides and nitrates in drinking waters using biodenitrification and sand filter system. Process Biochem, 2005, 40: 417-424.
[30] Aslan S, Turkman A. Combined biological removal of nitrate and pesticides using wheat straw as substrates. Process Biochem, 2005, 40: 935-943.
[31] 王旭明, 王建龙. 利用固相反硝化同时去除水中硝酸盐和4-氯酚. 环境科学, 2009, 30: 1420-1424. Wang X M, Wang J L. Simultaneous removal of nitrate and 4-chlorophenol from contaminated water using solid-phase denitrification process. Environmental Science, 2009, 30: 1420-1424.
[32] Boley A, Unger B, Muller W R, et al. Biological drinking water treatment for nitrate and pesticide (endosulfan) elimination. Water Sci Technol (Water Supply), 2006, 6: 123-127.
[33] Gómez M A, González-López J, Hontoria-García E. Influence of carbon source on nitrate removal of contaminated groundwater in a denitrifying submerged filter. J Hazard Mater, 2000, B80: 69-80.
[1] GUO Xiao-qing, WANG Xiu-juan, SUN Ai-li, LI De-xiang, SHI Xi-zhi. Advances of Studies on Microbial Degradation of Pyrethroid Insecticides[J]. China Biotechnology, 2017, 37(5): 126-132.
[2] WANG Lu-yao, SANG Min, LI Ai-fen, ZHANG Cheng-wu. Effects of Different Nitrogen Nutrition Level on the Growth and Photosynthetic Physiology of Odontella aurita[J]. China Biotechnology, 2012, 32(6): 48-56.
[3] CHENG Qi, LV Shi-ming, LI Zhao-hua, DONG Xian-zhi. Extraction and Separation of Unsaturated Fatty Acids in Blood Plasma by Silver Nitrate-silica Gel Column Chromatography[J]. China Biotechnology, 2012, 32(01): 42-48.
[4] . Organophosphorus Pesticides (Ops) Operate to Arabidopsis Thaliana by the Different Expression Protein and Inhibiting the Activity of Esterase Isoenzymes[J]. China Biotechnology, 2010, 30(07): 0-0.
[5] . Photolithotrophic Cultivation of Laminaria japonica Gametophyte Cells in Stirred Tank Photobioreactors: Studies in Different Pulse Feeding Modes[J]. China Biotechnology, 2008, 28(1): 36-43.
[6] . Application of a Two-stage Temperature Control Strategy for CF66I in Batch Fermentation By Burkholderia cepacia CF-66[J]. China Biotechnology, 2007, 27(4): 66-70.
[7] . Bioremediation of organophosphate[J]. China Biotechnology, 2007, 27(3): 127-127.
[8] . Cloning and characterization of 5′flanking region of nitrate reductase gene derived from Dunaliella Salina[J]. China Biotechnology, 2006, 26(11): 1-7.