山东省农田土壤中拟除虫菊酯类农药污染特征与风险评价
Pollution characteristics and risk assessment of pyrethroid pesticides in agricultural soil in Shandong Province
-
摘要: 在山东省范围内采集农田表层土壤样品91个,采用气相色谱法分析了7种拟除虫菊酯类农药(SPs)的含量和组成,分析了其分布特征,比较了大田土壤和大棚土壤中该类农药含量的差异,并评价了其生态风险.结果表明,7种拟除虫菊酯类农药总含量(∑7SPs)范围在0.01-88.51 μg·kg-1之间,均值为5.65 μg·kg-1.与国内其他地区农田土壤相比,山东省农田土壤中拟除虫菊酯含量处于中等偏低水平.山东省各地区的拟除虫菊酯含量存在差异,但组成相近,均是高效氯氟氰菊酯、联苯菊酯和氯氰菊酯的比例较高.部分地区大棚土壤中的含量高于大田土壤.风险评价结果表明,山东省农田土壤个别采样点中甲氰菊酯和高效氯氟氰菊酯具有生态风险,三分之一的采样点存在潜在生态风险,其余采样点不存在生态风险.Abstract: Ninety-one samples of agricultural surface soil were collected in Shandong Province. The content and composition of seven pyrethroid pesticides were analyzed by gas chromatography, and the distribution characteristics were analyzed. The contents of these pesticides in the field soil and greenhouse soil were compared and the ecological risks were evaluated. The results showed that the total contents of 7 pyrethroids ranged from 0.01 to 88.51 μg·kg-1 with an average of 5.65 μg·kg-1. The contents of pyrethroids in the agricultural soil in Shandong Province were lower than those in other areas. There were differences in the contents of pyrethroids in different regions of Shandong Province, but the composition was similar. Lambda-cyhalothrin, biphenthrin and cypermethrin were the dominant species. The contents of pyrethroids in the greenhouse soil were higher than those in the field soil in some areas. The results of risk assessment showed that fenpropathrin and lambda-cyhalothrin in some samples presented ecological risk. One third of the soil samples presented potential ecological risk, and the rest of the samples had no ecological risk.
-
Key words:
- pyrethroid /
- pesticide /
- risk /
- agricultural soil /
- Shandong
-
-
[1] 赵玲, 滕应, 骆永明. 中国农田土壤农药污染现状和防控对策[J]. 土壤, 2017, 49(3):417-427. ZHAO L, TENG Y, LUO Y M. Present pollution status and control strategy of pesticides in agricultural soils in China:A review[J]. Soils, 2017, 49(3):417-427(in Chinese).
[2] DÁDER B, LEGARREA S, MORENO A, et al. Control of insect vectors and plant viruses in protected crops by novel pyrethroid-treated nets[J]. Pest Management Science, 2014, 70(10):3942-3947. [3] 刘尚钟, 王敏, 陈馥衡. 拟除虫菊酯类农药的研究和展望[J]. 农药, 2004, 43(7):289-293. LIU S Z, WANG M, CHEN F H. Research progress and development prospect of pyrethroid pesticide Chinese[J]. Journal of Pesiticides, 2004, 43(7):289-293(in Chinese).
[4] ERLANGER T E, ENAYATLY A A, HEMINGWAY J. Field issues related to effectiveness of insecticide-treated nets in Tanzania[J]. Medical and Veterinary Entomology, 2004(18):153-160. [5] 提清清, 聂兆广, 杨凡昌, 等. 拟除虫菊酯农药暴露途径及对人体健康的影响[J]. 环境科学与技术, 2017, 40(12):240-248. TI Q Q, NIE Z G, YANG F C, et al. Study on exposure routes of pyrethroid insecticides and its effects on human health[J]. Environmental Science & Technology, 2017, 40(12):240-248(in Chinese).
[6] 叶玫, 姜琳琳, 余颖, 等. 气相色谱法测定水产养殖区表层沉积物中拟除虫菊酯残留量[J]. 渔业科学进展, 2012, 33(5):109-115. YE M, JIANG L L, YU Y, et al. Determination of pyrethroids residue in surface sediment from aquaculture area by gas chromatography[J]. Progress in Fishery Sciences, 2012, 33(5):109-115(in Chinese).
[7] 赵晨, 彭书传, 陈天虎, 等. 巢湖流域和太湖流域沉积物中苄氯菊酯和高效氰戊菊酯的生态风险评价[J]. 环境科学学报, 2016, 36(3):1080-1091. ZHAO C, PENG S C, CHEN T H, et al. Ecological risk assessment of sediment-associated permethrin and esfenvalerate in Chaohu Lake and Taihu Lake Watersheds[J]. Acta Scientiae Circumstantiae, 2016, 36(3):1080-1091(in Chinese).
[8] AWADH J A M, LOU J, ZHAO D S, et al. Determination of multiple pyrethroids insecticides in chrysanthemum flower[J]. Chinese Journal of Pesticide Science, 2001, 3(4):81-85. [9] CHEN A W, FINK J M, LETINSKI D J, et al. Residue of cypermethrin and its major acid metabolites in milk and tissues from dairy bovines treated with cypermethrin[J]. Journal of the Science of Food and Agriculture, 1997, 45(12):4850-4855. [10] CHANARRI MJ, HERRERA A, ARINO A. Pesticide residues in field-sprayed and processed fruits and vegetables[J]. Journal of the Science of Food and Agriculture, 2004, 84(10):1253-1259. [11] 杨飞. 山东省粮食生产与水供应情势分析[J]. 粮食经济研究, 2018, 4(1):53-66. YANG F. Grain production and the water supply situation analysis in Shandong Province[J]. Food Economics Research, 2018(1):53-66(in Chinese).
[12] 杨宗辉, 蔡鸿毅, 覃诚, 等. 我国粮食生产的时空格局及其影响因素分析[J]. 中国农业科技导报, 2018, 20(9):1-11. YANG Z H, CAI H Y, QIN C. Analysis on the spatial and temporal pattern of China's grain production and its influencing factors[J]. Journal of Agricultural Science and Technology, 2018, 20(9):1-11(in Chinese).
[13] 孙锦, 高洪波, 田婧, 等. 我国设施园艺发展现状与趋势[J]. 南京农业大学学报, 2019, 42(4):594-604. SUN J, GAO H B, TIAN J, WANG J W, Development status and trends of protected horticulture in China[J]. Journal of Nanjing Agricultural University, 2019, 42(4):594-604(in Chinese).
[14] 林得平. 水环境和土壤中56种农药的残留分析[D]. 济南:山东大学, 2014. LIN D P. Residue analysis of 56 pesticides in the soil and water environment[D]. Jinan:Shandong University, 2014(in Chinese). [15] 王小飞. 土壤中65种农药残留检测技术的研究[D]. 北京:中国农业科学院, 2013. WANG X F, Study on determination of 65 pesticides residues in soil[D]. Beijing:Chinese Academy of Agricultural Sciences Dissertation, 2013(in Chinese). [16] 高钰一, 沈美芳, 宋红波, 等. 气相色谱法测定水产品中7种拟除虫菊酯的残留量[J]. 水产学报, 2009, 33(1):132-138. GAOY Y, SHEN M F, SONG H B, et al. Determination of 7 pyrethroids residues in aquatic product by gas chromatography[J]. Journal of Fisheries of China, 2009, 33(1):132-138(in Chinese).
[17] 顾宝根, 程燕, 周军英, 等. 美国农药生态风险评价技术[J]. 农药学学报, 2009, 11(3):283-290. GU B G, CHENG Y,ZHOU J Y, et al. Review on USA pesticide ecological risk assessment techniques[J]. Chinese Journal of Pesticide Science, 2009, 11(3):283-290(in Chinese).
[18] 徐雄, 李春梅, 孙静, 等. 我国重点流域地表水中29种农药污染及其生态风险评价[J]. 生态毒理学报, 2016,11(2):347-354. XU X, LI C M, SUN J, et al. Residue characteristics and ecological risk assessment of twenty-nine pesticides in surface water of major river-basin in China[J]. Asian Journal of Ecotoxicology, 2016, 11(2):347-354(in Chinese).
[19] 梁茹晶. 土壤拟除虫菊酯暴露对蚯蚓的毒性效应研究[D]. 沈阳:沈阳大学, 2016. LIANG R J. The ecotoxicity of pyrethroids on earthworm (Eisenia fetida) in soil[D]. Shenyang:Shenyang University, 2016(in Chinese). [20] 史梦竹,李建宇,傅建炜, 等. 8%高效氯氟氰菊酯乳剂对环境生物的安全性评价[J]. 生物安全学报, 2014,23(1):51-55. SHI M Z, LI J Y, FU J W. Safety evaluation of 8% lambda-cyhalothrin on environmental organisms[J]. Journal of Biosafety, 2014, 23(1):51-55(in Chinese).
[21] 开建荣, 宋玉芳, 殷永超, 等. 赤子爱胜蚓对氯氰菊酯暴露的生态毒性响应[J]. 农业环境科学学报, 2013, 32(2):224-231. KAI J R, SONG Y F, CAO X F. Ecotoxic responses of earthworm Eisenia fetida exposed to cypermethrin[J]. Journal of Agro-Environment Science, 2013, 32(2):224-231(in Chinese).
[22] 俞发荣, 李登楼. 有机磷农药对人类健康的影响及农药残留检测方法研究进展[J]. 生态科学, 2015, 34(3):197-203. YU F R, LI D L. A review on effect of organophosphorus pesticide on human health and the detection method of pesticide residue[J]. Ecological Science, 2015, 34(3):197-203(in Chinese).
[23] 韩小艳, 孙德文, 蒙星. 5种杀虫剂处理对粘虫幼虫的田间防效试验[J]. 陕西农业科学, 2017, 63(1):35-37. HAN X Y, SUN D W, MENG X. Field control experiment of five insecticides on Myxobacterus larvae[J]. Shanxi Journal of Agricultural Sciences, 2017, 63(1):35-37(in Chinese).
[24] 吴蕊, 牛明芬, 郭颖, 等. 设施大棚农药污染残留调查分析[J]. 农业环境科学学报, 2009, 28(1):130-134. WU R, NIU M F, GUO Y, et al. Survey and analysis of pesticide contamination in greenhouse[J]. Journal of Agro-Environment Science, 2009, 28(1):130-134(in Chinese).
[25] 王军, 万宇, 熊传武, 等, 顺式氰戊菊酯在大棚、露地条件下甘蓝和土壤中残留动态的对比研究[J]. 安徽化工, 2009, 35(2):60-62. WANG J, WAN Y, XIONG C W, et al, Comparison of residual dynamics of esfenvalerate on cabbage and soil grown in plastic house and open field[J]. Anhui Chemical Industry, 2009, 35(2):60-62(in Chinese).
[26] 尹可锁, 张雪燕, 徐汉虹, 等. 滇池周边农田中拟除虫菊酯农药残留研究[J]. 西南农业学报, 2011, 24(4):1367-1371. YIN K S, ZHANG X Y, XU H H, et al. Study on characteristics of pyrethroid pesticides residues in Dianchi Lakeshed[J]. Southwest China Journal of Agricultural Sciences, 2011, 24(4):1367-1371(in Chinese).
[27] 孙健. 银川市郊大棚中蔬菜和土壤农药残留及种植者健康状况调查研究[D]. 银川:宁夏医科大学, 2014. SUN J. Study on pesticide residues in vegetables and soil of greenhouse and the health condition of growers in Yinchuan suburb[D]. Yinchuan:Ningxia Medical University, 2014(in Chinese). [28] 谭和平, 陈能武, 黄苹, 等. 四川茶园土壤中农药残留现状分析[J]. 农业环境科学学报, 2006, 25(s1):67-69. TAN H P, CHEN N W, HUANG P, et al. Study on the residues of pesticides in the soil of tea garden in Sichuan[J]. Journal of Agro-Environment Science, 2006, 25(s1):67-69(in Chinese).
[29] 刘腾飞, 张丽, 杨代凤, 等. 茶园土壤中拟除虫菊酯类农药残留检测[J]. 江苏农业学报, 2015, 31(4):935-941. LIU T F, ZHANG L, YANG D F, et al. Determination of pyrethroid pesticides residues in tea-planted soil[J]. Jiangsu Journal of Agricultural Sciences, 2015, 31(4):935-941(in Chinese).
[30] 刘春华, 李艳辉. 沈阳市蔬菜农药残留调查分析[J]. 农业科技与装备, 2011(6):45-47. LIU C H, LI Y H. Survey and analysis on the vegetables pesticide residue in Shenyang[J]. Agricultural Science & Technology and Equipment, 2011 (6):45-47(in Chinese).
[31] 吴成栋.四川蔬菜病虫的发生特点与防治对策探析[J]. 纳税, 2017(23):187. WU C D. Occurrence characteristics and control countermeasures of vegetable diseases and pests in Sichuan Province[J]. Tax Paying, 2017(23 ):187(in Chinese).
[32] 左秀群, 刘有芹, 颜芸, 等. 气雾杀虫剂中氯氰菊酯的毛细管气相色谱内标法测定[J]. 福建分析测试, 2010, 19(4):1-4. ZUO X Q, LIU Y Q, YAN Y, et al. Determination of cypermethrin in aerosol insecticides by internal standard method of capillary gas chromatography[J]. Fujian Analysis &Testing, 2010, 19(4):1-4(in Chinese).
[33] 赵李娜. 珠三角河网水环境中7种拟除虫菊酯类农药残留及风险评价研究[D]. 上海:上海海洋大学, 2014. ZHAO L N. Residue and risk assessment of 7 kinds of pyrethroids in water environment in the Pearl Delta[D]. Shanghai:Shanghai Ocean University, 2014(in Chinese). [34] 罗财红, 孙静. 受污染土壤环境风险评估中存在的问题及对策[J]. 安徽农业科学, 2008, 36(10):4241-4277. LUO C H, SUN J. Study on Environmental risk assessment of polluted soil[J]. Journal of Anhui Agricultural Sciences, 2008, 36(10):4241-4277(in Chinese).
-

计量
- 文章访问数: 2600
- HTML全文浏览数: 2600
- PDF下载数: 83
- 施引文献: 0