全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

有机粪肥施加对不同类型农田土壤重金属污染的影响
Effects of Organic Fertilizer on Heavy Metal Pollution in Different Types of Farmland

DOI: 10.12677/AEP.2019.94080, PP. 584-596

Keywords: 有机粪肥,重金属污染,风险筛选值,地累积指数,潜在生态危害指数
Organic Fertilizer
, Heavy Metal Pollution, Risk Screening Value, Geoaccumulation Index, Potential Ecological Hazard Index

Full-Text   Cite this paper   Add to My Lib

Abstract:

为认识施加有机粪肥条件下,不同类型农田土壤重金属富集现状和污染危害,探索其防控途径,为有机粪肥的施用、重金属污染防治提供科学依据,确保作物质量安全,选择河北省某大棚生菜土和草莓土为研究对象,种植作物前在土壤中施加园区自制有机粪肥为底肥,作物生长过程中追加有机粪肥,采集施肥前和作物成熟期表层土壤,测定土壤中重金属铜(Cu)、锌(Zn)、镍(Ni)、铅(Pb)、铬(Cr)、镉(Cd)、和砷(As)的含量,与风险筛选值进行比较,并采用单因子污染指数法、内梅罗综合污染指数法、地累积指数法和潜在生态危害指数法对土壤重金属污染程度进行综合评价。结果表明:受到施加有机粪肥的影响,作物成熟期生菜土中Zn、As、Cd、Pb和Cr含量相对于施肥前都有所增加,作物成熟期草莓土中除了Ni以外的六种重金属含量也都有一定程度的升高。施肥前和作物成熟期生菜土和草莓土中七种重金属的含量均低于风险筛选值。从单因子污染指数和内梅罗综合污染指数来看,施肥前和作物成熟期生菜土和草莓土中的重金属污染都未超标。地累积指数的评价结果表明,有机粪肥的施加对生菜土中Zn的地累积指数影响较大,使作物成熟期生菜土中的Zn处于轻度污染。施加有机粪肥对草莓土中Zn、Cd和Pb的地累积指数影响较大,使作物成熟期草莓土中的重金属Cd接近中度污染,Zn和Pb也存在一定的轻度污染。潜在生态危害指数评价结果分析表明,施加有机粪肥后,作物成熟期生菜土中的Cd达到了中度生态危害,总的潜在生态指数也有所增加;草莓土中Cd由施肥前的中度生态危害达到生物成熟期的强生态危害,同时极大地提高了总的潜在生态指数。因此,施加有机粪肥对生菜土中的Zn和Cd以及草莓土中Zn、Pb和Cd的污染作用较大,在进一步生产和施用有机粪肥时应重点把控。
In order to recognize the status of heavy metal enrichment and pollution in different types of farmland soil with the application of organic fertilizer, explore its prevention and control methods, ensure the quality and safety of plants, the lettuce soil and strawberry soil in one of the green-houses in Hebei province were studied. Before cultivating the lettuce and strawberry, the organic fertilizer home-made by the park was applied into the soil, and organic fertilizer was added during the growth of plants. The surface soil before fertilization and during the ripening period of the plants was then collected. The heavy metals, including copper (Cu), zinc (Zn), nickel (Ni), plumbum (Pb), chromium (Cr), cadmium (Cd), and arsenic (As) were measured and compared with the risk screening values. The pollution degrees of heavy metals in soil were evaluated comprehensively by single factor pollution index method, Nemerow comprehensive pollution index method, geoaccumulation index method and potential ecological hazard index method, respectively. The results showed that the contents of Zn, As, Cd, Pb and Cr in lettuce soils at ripening stage increased compared with those before fertilization, and the contents of six heavy metals except Ni in strawberry soils at ripening period also increased to a certain extent. The contents of seven heavy metals in lettuce and strawberry soils before fertilization and during the ripening period of the plants were lower than the risk screening values. According to the single factor pollution index and Nemerow comprehensive pollution index, the heavy metal pollution in lettuce soil and strawberry soil before fertilization and during the ripening period of the plants did not exceed the standard. The evaluation results of the geoaccumulation index showed that the application of

References

[1]  Wu, G., Kang, H. and Zhang, X. (2010) A Critical Review on the Bio-Removal of Hazardous Heavy Metals from Contaminated Soils: Issues, Progress, Eco-environmental Concerns and Opportunities. Journal of Hazardous Materials, 174, 1-8.
https://doi.org/10.1016/j.jhazmat.2009.09.113
[2]  樊霆, 叶文玲, 陈海燕. 农田土壤重金属污染状况及修复技术研究[J]. 生态环境学报, 2013(10): 1727-1736.
[3]  黄国勤. 江西省土壤重金属污染研究[C]//2011中国环境科学学会学术年会论文集: 第二卷. 北京: 中国环境出版社, 2011: 773-778.
[4]  国土资源部. 环境保护部全国土壤污染状况调查公报[J]. 北京: 环境保护部国土资源部, 2014: 2.
[5]  王红艳. 农田污染亟待处理[J]. 农业工程, 2014(3): 9.
[6]  崔斌, 王凌, 张国印. 土壤重金属污染现状与危害及修复技术研究进展[J]. 安徽农业科学, 2012, 40(1): 373-375.
[7]  王一豪. 土壤重金属污染及治理修复技术[J]. 环境与发展, 2019, 31(2): 87.
[8]  张凌云, 尹鹏, 夏杰. 南充市农村土壤重金属污染现状调查与评价[J]. 四川环境, 2013, 32(S1): 143-149.
[9]  赵庆令, 李清彩, 谢江坤. 应用富集系数法和地累积指数法研究济宁南部区域土壤重金属污染特征及生态风险评价[J]. 岩矿测试, 2015, 34(1): 129-137.
[10]  李一蒙, 马建华, 刘德新. 开封城市土壤重金属污染及潜在生态风险评价[J]. 环境科学, 2015(3): 1037-1044.
[11]  Nagajyoti, P.C., Lee, K.D. and Sreekanth, T.V.M. (2010) Heavy Metals, Occurrence and Toxicity for Plants: A Review. Environmental Chemistry Letters, 8, 199-216.
https://doi.org/10.1007/s10311-010-0297-8
[12]  Wu, C. and Zhang, L. (2010) Heavy Metal Concentrations and Their Possible Sources in Paddy Soils of a Modern Agricultural Zone, Southeastern China. Environmental Earth Sciences, 60, 45-56.
https://doi.org/10.1007/s12665-009-0168-4
[13]  Li, J., Lu, Y. and Yin, W. (2009) Distribution of Heavy Metals in Agricultural Soils near a Petrochemical Complex in Guangzhou, China. Environmental Monitoring and Assessment, 153, 365.
https://doi.org/10.1007/s10661-008-0363-x
[14]  Jiao, W., Chen, W. and Chang, A.C. (2012) Environmental Risks of Trace Elements Associated with Long-Term Phosphate Fertilizers Applications: A Review. Environmental Pollution, 168, 44-53.
https://doi.org/10.1016/j.envpol.2012.03.052
[15]  Lei, L., Ma, Y. and Zhang, S. (2009) An Inventory of Trace Element Inputs to Agricultural Soils in China. Journal of Environmental Management, 90, 2524-2530.
https://doi.org/10.1016/j.jenvman.2009.01.011
[16]  Niu, L., Yang, F. and Xu, C. (2013) Status of Metal Accumulation in Farmland Soils across China: From Distribution to Risk Assessment. Environmental Pollution, 176, 55-62.
https://doi.org/10.1016/j.envpol.2013.01.019
[17]  茹淑华, 苏德纯, 张永志, 张国印, 耿暖, 孙世友, 王凌. 河北省集约化养殖场畜禽粪便中重金属含量及变化特征[J]. 农业资源与环境学报, 2016, 33(6): 533-539.
[18]  国家环境保护局. GB/T 17138-1997土壤质量铜、锌的测定[N]. 1997-12-08.
[19]  国家环境保护局. GB/T 17139-1997土壤质量镍的测定[N]. 1997-07-30.
[20]  国家环境保护局. GB/T 17141-1997土壤质量铅、镉的测定[N]. 1997-07-30.
[21]  中国国家标准化管理委员会. GB/T 22105.2-2008土壤质量总汞、总砷、总铅的测定[N]. 2008-06-07.
[22]  生态环境部. GB 15618-2018.土壤环境质量农用地土壤污染风险管控标准(试行)[N]. 北京: 中国环境出版社, 2018.
[23]  盛蒂, 朱兰保, 戚晓明. 蚌埠市区土壤重金属积累特征及生态风险评价[J]. 土壤通报, 2015, 46(3): 715-720.
[24]  张江华, 赵阿宁, 王仲复. 内梅罗指数和地质累积指数在土壤重金属评价中的差异探讨[J]. 环保与分析, 2010(8): 43-46.
[25]  张钊, 白向玉, 周磊. 地积累指数法和潜在生态危害指数法在污泥重金属污染中的应用[C]//2011中国环境科学学会学术年会论文集: 第二卷. 北京: 中国环境出版社, 2011: 874-878.
[26]  中国环境监测总站. 中国土壤元素背景值[M]. 北京: 中国环境科学出版社, 1990: 329-476.
[27]  赵沁娜, 徐启新, 杨凯. 潜在生态危害指数法在典型污染行业土壤污染评价中的应用[J]. 华东师范大学学报(自然科学版), 2005(1): 111-116.
[28]  徐争启, 倪师军, 庹先国. 潜在生态危害指数法评价中重金属毒性系数计算[J]. 环境科学与技术, 2008, 31(2): 112-115.
[29]  全国土壤普查办公室. 中国土壤[M]. 北京: 中国农业出版社, 1998: 356.
[30]  Tian, K., Huang, B. and Xing, Z. (2017) Geochemical Baseline Establishment and Ecological Risk Evaluation of Heavy Metals in Greenhouse Soils from Dongtai, China. Ecological Indicators, 72, 510-520.
https://doi.org/10.1016/j.ecolind.2016.08.037
[31]  Chen, T.B., Wong, J.W. and Zhou, H.Y. (1997) Assessment of Trace Metal Distribution and Contamination in Surface Soils of Hong Kong. Environmental Pollution, 96, 61-68.
https://doi.org/10.1016/S0269-7491(97)00003-1

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133