antimony bioavailability in mine soils

antimony bioavailability in mine soils

  • Antimony bioavailability in mine soils ScienceDirect

    01/07/2003· This study applies three biosensors, previously used to report on arsenic contamination in Chilean soils (Flynn et al, 2002), to investigating the bioavailability of antimony in soils from five former mining sites in the UK The results highlight the problems of cocontamination, the low bioavailability of antimony, and illustrate the limitations of an As/Sb specific sensor to report onSoil samples were taken from The results highlight the problems of cocontamination, these turfs using a 1 cm diameter core borer, oven dried the low bioavailability of antimony, and illustrate the at 85–90 C overnight and then ground in a ball mill for limitations of an As/Sb specific sensor to report on 15 min antimony speciation 22 Extraction procedures 2 Materials and methods For(PDF) Antimony bioavailability in mine soils | Graeme

  • Antimony bioavailability in mine soils — Queen's

    Antimony bioavailability in mine soils Helen C Flynn, Andy A Meharg, Phillipa K Bowyer, Graeme I Paton, Andrew Meharg School of Biological Sciences; Research output: Contribution to journal › Article › peerreview 161 Citations (Scopus) Overview; Fingerprint; Abstract Five British former mining and smelting sites were investigated and found to have levels of total Sb of up to 700 mg kg01/07/2003· T1 Antimony bioavailability in mine soils AU Flynn, Helen Catherine AU Meharg, Andrew Alexander AU Bowyer, P K AU Paton, Graeme Iain PY 2003/7 Y1 2003/7 N2 Five British former mining and smelting sites were investigated and found to have levels of total Sb of up to 700 mg kg(1), indicating high levels of contamination which could be potentially harmful However,Antimony bioavailability in mine soils — The University of

  • Antimony bioavailability in mine soils ScienceDirect

    Five British former mining and smelting sites were investigated and found to have levels of total Sb of up to 700 mg kg −1, indicating high levels of contamination which could be potentially harmfulHowever, this level of Sb was found to be biologically unavailable over a wide range of pH values, indicating that Sb is relatively unreactive and immobile in the surface layers of the soilAntimony concentrations in the mine waste samples (slag and waste rock) were in the range of 191–15,699 mg/kg, while soils were characterized by Sb concentrations in the range of 47–95 mg/kgAntimony bioavailability in mine soils | Request PDF

  • Bioavailability of arsenic and antimony in soils from an

    The mobility and bioavailability of As and Sb in relation to soilbiota transfer were evaluated at a former Sb mining and smelting site (Glendinning, SW Scotland, UK) The study specifically assessed the accumulation of As and Sb in different environmental components (soil, plants and earthworms) ac Bioavailability of arsenic and antimony in soils from an abandoned mining area, GlendinningFive British former mining and smelting sites were investigated and found to have levels of total Sb of up to 700 mg kg −1, indicating high levels of contamination which could be potentially harmfulHowever, this level of Sb was found to be biologically unavailable over a wide range of pH values, indicating that Sb is relatively unreactive and immobile in the surface layers of the soilAntimony bioavailability in mine soils ScienceDirect

  • [Pdf/Epub] Biosensor Assessment Of Arsenic And Antimony

    Biosensor Assessment Of Arsenic And Antimony Bioavailability In Mining Soils And Sediments Download now Product Details : Genre: Author: H C Flynn: Publisher: Release: 2003: Total Pages: 292 Pages: ISBN : OCLC:: Whole Cell Sensing System Ii Applications: Applications of Microbial Cell Sensors, by Mifumi ShimomuraShimizu and Isao Karube WholeCell Bioreporters for theBioavailability of arsenic and antimony in soils from an abandoned mining area, Glendinning (SW Scotland) Judit Gal, Andrew Hursthouse, Simon Cuthbert School of Health and Life Sciences; Centre for Environmental Research; Institute for Biomedical and Environmental Health Research; Research output: Contribution to journal › Article › peerreview 54 Citations (Scopus) Overview; FingerprintBioavailability of arsenic and antimony in soils from an

  • Bioavailability of arsenic and antimony in soils from an

    17/07/2007· (2007) Bioavailability of arsenic and antimony in soils from an abandoned mining area, Glendinning (SW Scotland) Journal of Environmental Science and Health, Part A:Download and reference “Bioavailability Of Arsenic And Antimony In Soils From An Abandoned Mining Area, Glendinning (SW Scotland)” by J Gál, A Hursthouse, S Cuthbert on Citationsy Bioavailability Of Arsenic And Antimony In Soils

  • (PDF) Recovery and leachability of antimony from mine and

    The study confirmed very low recovery of Sb in soils digested with nitric acid (mean 209% of total), significantly lower in mine soils (76 ±34%) than in shooting range soils (342±175%01/09/2014· Gal et al (2007) reported that Sb in soils of a mining and smelting site in Glendinning (Scotland, UK; pH 26–68) contained 103–1200 mg Sb kg −1, but the mobile Sb fraction extracted by 1 M NH 4 NO 3 was only 001–88% because the Sb predominantly associated with Fe or Al oxyhydroxides They also reported the Sb availability toSpeciation and bioavailability of selenium and antimony in

  • Distribution, speciation and availability of antimony (Sb

    01/10/2011· Antimony bioavailability in mine soils Environmental Pollution, 124 (2003), pp 93100 Article Download PDF View Record in Scopus Google Scholar Gal et al, 2007 J Gal, A Hursthouse, S Cuthbert Bioavailability of arsenic and antimony in soils from an abandoned mining area, Glendinning (SW Scotland) Journal of Environmental Science and Health Part AToxic/Hazardous Substances29/11/2005· Flynn HC, Meharg A, Phillipa KB, Paton GI (2003) Antimony bioavailability in mine soils Environ Pollut 124:93–100 Article CAS Google Scholar Hammel W, Debus R, Steubing L (2000) Mobility of antimony in soil and its availability to plants Chemosphere 41:1791–1798Chemical availability of arsenic and antimony in

  • Ecological threshold concentrations for antimony in water

    27/04/2009· Antimony bioavailability in mine soils Flynn H C Effects of different forms of antimony on rice during the period of germination and growth and antimony concentration in rice tissue He M C Is soil acidification the cause of biochemical responses when soils are amended with heavy metal salts? Speir T W Determining toxicity of lead and zinc runoff in soils: salinity effects on metalBioavailability of arsenic and antimony in soils from an abandoned mining area, Glendinning (SW Scotland) Judit Gal, Andrew Hursthouse, Simon Cuthbert School of Health and Life Sciences; Centre for Environmental Research; Institute for Biomedical and Environmental Health Research; Research output: Contribution to journal › Article › peerreview 54 Citations (Scopus) Overview; FingerprintBioavailability of arsenic and antimony in soils from an

  • Bioavailability Of Arsenic And Antimony In Soils

    Download and reference “Bioavailability Of Arsenic And Antimony In Soils From An Abandoned Mining Area, Glendinning (SW Scotland)” by J Gál, A Hursthouse, S Cuthbert on CitationsyBiosensor Assessment Of Arsenic And Antimony Bioavailability In Mining Soils And Sediments Download now Product Details : Genre: Author: H C Flynn: Publisher: Release: 2003: Total Pages: 292 Pages: ISBN : OCLC:: Whole Cell Sensing System Ii Applications: Applications of Microbial Cell Sensors, by Mifumi ShimomuraShimizu and Isao Karube WholeCell Bioreporters for the[Pdf/Epub] Biosensor Assessment Of Arsenic And Antimony

  • nigeria antimony bioavailability in mine soils

    PDF Antimony bioavailability in mine soils Graeme Soil samples were taken from The results highlight the problems of cocontamination these turfs using a 1 cm diameter core borer oven dried the low bioavailability of antimony and illustrate the at 85–90 C overnight and then ground in a ball mill for limitations of an AsSb specific sensor to report on 15 min antimony speciationThe study confirmed very low recovery of Sb in soils digested with nitric acid (mean 209% of total), significantly lower in mine soils (76 ±34%) than in shooting range soils (342±175%(PDF) Recovery and leachability of antimony from mine and

  • (PDF) Antimony in the soil Plant system A review

    Relationship between total Sb concentrations of fieldcontaminated soils and Sb in plants grown on these soils, based on published data [10,11,2224,39,41,53,56,7074] The points represent29/11/2005· Flynn HC, Meharg A, Phillipa KB, Paton GI (2003) Antimony bioavailability in mine soils Environ Pollut 124:93–100 Article CAS Google Scholar Hammel W, Debus R, Steubing L (2000) Mobility of antimony in soil and its availability to plants Chemosphere 41:1791–1798Chemical availability of arsenic and antimony in

  • Assessment and distribution of antimony in soils around

    Thirtythree soil samples were collected from the Luling, Liuer, and Zhangji coal mines in the Huaibei and Huainan areas of Anhui Province, China The samples were analyzed for antimony (Sb) by inductively coupled plasmaoptical emission spectrometry (ICPOES) method The average Sb content in the 33 samples was 4 mg kg−1, which is lower than in coals from this region (62 mg kg−1)The relative bioavailability of arsenic, antimony, cadmium, and lead for the ingestion pathway was measured in 16 soils contaminated by either smelting or mining activities using a juvenile swine model The soils contained 18 to 25,000 mg kg(1) As, 18 to 60,000 mg kg(1) Sb, 20 to 184 mg kg(1) Cd, and 1460 to 40,214 mg kg(1) Pb The bioavailability in the soils was measured in kidney, liverIn vivo validation of the unified BARGE method to assess

  • Ecological threshold concentrations for antimony in water

    27/04/2009· Antimony bioavailability in mine soils Flynn H C Effects of different forms of antimony on rice during the period of germination and growth and antimony concentration in rice tissue He M C Is soil acidification the cause of biochemical responses when soils are amended with heavy metal salts? Speir T W Determining toxicity of lead and zinc runoff in soils: salinity effects on metal

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