Using pXRF to assess the accumulation, sources, and potential ecological risk of potentially toxic elements in soil under two greenhouse vegetable production systems in North China
暂无分享,去创建一个
Lanqin Yang | Guoming Liu | Wenyou Hu | Mingkai Qu | Biao Huang | Biao Huang | Wenyou Hu | Mingkai Qu | Lanqin Yang | Benle Liu | Benle Liu | Fangyi Lu | Guoming Liu | Fangyi Lu
[1] Xiangyang Wu,et al. Occurrence, speciation, and risks of trace metals in soils of greenhouse vegetable production from the vicinity of industrial areas in the Yangtze River Delta, China , 2019, Environmental Science and Pollution Research.
[2] J. Bak,et al. National monitoring study in Denmark finds increased and critical levels of copper and zinc in arable soils fertilized with pig slurry. , 2016, Environmental pollution.
[3] E. Kelepertzis. Accumulation of heavy metals in agricultural soils of Mediterranean: Insights from Argolida basin, Peloponnese, Greece , 2014 .
[4] Biao Huang,et al. Geochemical baseline establishment and ecological risk evaluation of heavy metals in greenhouse soils from Dongtai, China , 2017 .
[5] T. Makino,et al. Functional effects of manganese and iron oxides on the dynamics of trace elements in soils with a special focus on arsenic and cadmium: A review , 2016 .
[6] Biao Huang,et al. Soil environmental quality in greenhouse vegetable production systems in eastern China: Current status and management strategies. , 2017, Chemosphere.
[7] Weng Zhi-hua. Geochemical baseline values of elements in soil of Jiangsu Province , 2011 .
[8] Xuyong Li,et al. Risk assessment of metals in road-deposited sediment along an urban-rural gradient. , 2013, Environmental pollution.
[9] O. Borggaard,et al. Source identification of heavy metals in peri-urban agricultural soils of southeast China: An integrated approach. , 2018, Environmental pollution.
[10] P. K. Govil,et al. Assessment of heavy metal contamination in soils at Jajmau (Kanpur) and Unnao industrial areas of the Ganga Plain, Uttar Pradesh, India. , 2010, Journal of hazardous materials.
[11] Jihua Wang,et al. Accumulation status, sources and phytoavailability of metals in greenhouse vegetable production systems in Beijing, China. , 2015, Ecotoxicology and environmental safety.
[12] S. E. Olesen,et al. Accumulation of Copper and Zinc in Danish Agricultural Soils in Intensive Pig Production Areas , 2005 .
[13] Wenyou Hu,et al. Assessing the risks of trace elements in environmental materials under selected greenhouse vegetable production systems of China. , 2014, The Science of the total environment.
[14] Yong Chen,et al. Assessment and source identification of trace metals in the soils of greenhouse vegetable production in eastern China. , 2013, Ecotoxicology and environmental safety.
[15] D. Weindorf,et al. Accumulation and health risk of heavy metals in vegetables from harmless and organic vegetable production systems of China. , 2013, Ecotoxicology and environmental safety.
[16] M. Soylak,et al. Chemical fractionation, mobility and environmental impacts of heavy metals in greenhouse soils from Çanakkale, Turkey , 2016, Environmental Earth Sciences.
[17] Biao Huang,et al. Heavy metals in intensive greenhouse vegetable production systems along Yellow Sea of China: Levels, transfer and health risk. , 2017, Chemosphere.
[18] C. Micó,et al. Assessing heavy metal sources in agricultural soils of an European Mediterranean area by multivariate analysis. , 2006, Chemosphere.
[19] Biao Huang,et al. Phosphorus saturation and mobilization in two typical Chinese greenhouse vegetable soils. , 2017, Chemosphere.
[20] Haidong Zhang,et al. Accumulation, sources and health risks of trace metals in elevated geochemical background soils used for greenhouse vegetable production in southwestern China. , 2017, Ecotoxicology and environmental safety.
[21] F. Cheng,et al. Accumulation characteristics and potential risk of heavy metals in soil-vegetable system under greenhouse cultivation condition in Northern China , 2017 .
[22] Lihong Gao,et al. Nutrients, heavy metals and phthalate acid esters in solar greenhouse soils in Round-Bohai Bay-Region, China: impacts of cultivation year and biogeography , 2016, Environmental Science and Pollution Research.
[23] Yan Wang,et al. Application of arc emission spectrometry and portable X-ray fluorescence spectrometry to rapid risk assessment of heavy metals in agricultural soils , 2019, Ecological Indicators.
[24] Somsubhra Chakraborty,et al. Use of portable X-ray fluorescence spectrometry for environmental quality assessment of peri-urban agriculture , 2011, Environmental Monitoring and Assessment.
[25] Laurent Charlet,et al. Quantification of trace arsenic in soils by field-portable X-ray fluorescence spectrometry: considerations for sample preparation and measurement conditions. , 2013, Journal of hazardous materials.
[26] Gan‐Lin Zhang,et al. Development of Soil Classification in China , 2002 .
[27] Biao Huang,et al. In situ investigation of heavy metals at trace concentrations in greenhouse soils via portable X-ray fluorescence spectroscopy , 2018, Environmental Science and Pollution Research.
[28] G. Muller. INDEX OF GEOACCUMULATION IN SEDIMENTS OF THE RHINE RIVER , 1969 .
[29] Lipeng Yao,et al. Trace metal accumulation in soil and their phytoavailability as affected by greenhouse types in north China , 2015, Environmental Science and Pollution Research.
[30] Tanja Radu,et al. Comparison of soil pollution concentrations determined using AAS and portable XRF techniques. , 2009, Journal of hazardous materials.
[31] N. He,et al. Heavy metal deposition through rainfall in Chinese natural terrestrial ecosystems: Evidences from national-scale network monitoring. , 2016, Chemosphere.
[32] Xuezheng Shi,et al. Accumulation and health risk of heavy metals in a plot-scale vegetable production system in a peri-urban vegetable farm near Nanjing, China. , 2013, Ecotoxicology and environmental safety.
[33] Zhi Qiao,et al. Contamination source apportionment and health risk assessment of heavy metals in soil around municipal solid waste incinerator: A case study in North China. , 2018, The Science of the total environment.
[34] Biao Huang,et al. Health Risk Assessment of Heavy Metals in Soils and Vegetables from a Typical Greenhouse Vegetable Production System in China , 2014 .
[35] Genxiang Shen,et al. Heavy metals accumulation in soil after 4 years of continuous land application of swine manure: A field-scale monitoring and modeling estimation. , 2018, Chemosphere.
[36] S. Su,et al. Heavy metal accumulation and source analysis in greenhouse soils of Wuwei District, Gansu Province, China , 2015, Environmental Science and Pollution Research.
[37] Siyue Li,et al. Risk assessment and sources identification of soil heavy metals in a typical county of Chongqing Municipality, Southwest China , 2018 .
[38] Marek Rouillon,et al. Can field portable X-ray fluorescence (pXRF) produce high quality data for application in environmental contamination research? , 2016, Environmental pollution.
[39] Yan Wang,et al. Assessment of net ecosystem services of plastic greenhouse vegetable cultivation in China , 2011 .
[40] P H Abelson,et al. Health risk assessment. , 1993, Regulatory toxicology and pharmacology : RTP.
[41] Yong-guan Zhu,et al. An inventory of trace element inputs to agricultural soils in China. , 2009, Journal of environmental management.
[42] J. Ramos-Miras,et al. Spatial relations of heavy metals in arable and greenhouse soils of a Mediterranean environment region (Spain) , 2013 .
[43] L. Håkanson. An ecological risk index for aquatic pollution control.a sedimentological approach , 1980 .
[44] S. M. Ruano,et al. A rapid field procedure for screening trace elements in polluted soil using portable X-ray fluorescence (PXRF) , 2010 .
[45] C Kilbride,et al. A comparison of Cu, Pb, As, Cd, Zn, Fe, Ni and Mn determined by acid extraction/ICP-OES and ex situ field portable X-ray fluorescence analyses. , 2006, Environmental pollution.
[47] B. J. Alloway,et al. An inventory of heavy metals inputs to agricultural soils in England and Wales. , 2003, The Science of the total environment.
[48] M. Tighe,et al. Rapid, Nondestructive Total Elemental Analysis of Vertisol Soils using Portable X-ray Fluorescence , 2012 .
[49] Enrique Roca,et al. Source identification of heavy metals in pastureland by multivariate analysis in NW Spain. , 2009, Journal of hazardous materials.
[50] Lihong Gao,et al. Structure, Function, Application, and Ecological Benefit of a Single-slope, Energy-efficient Solar Greenhouse in China , 2010 .
[51] Biao Huang,et al. Determination and evaluation of heavy metals in soils under two different greenhouse vegetable production systems in eastern China. , 2016, Chemosphere.