LI P, FENG X B, QIU G L, et al. Mercury pollution in Asia:A review of the contaminated sites[J]. Journal of Hazardous Materials, 2009,168(2):591-601.
PAUSTENBACH D J, BRUCE G M, CHROSTOWSKI P. Current views on the oral bioavailability of inorganic mercury in soil:Implications for health risk assessments[J]. Risk Analysis, 2010,17(5):533-544.
SAFRUK A M, BERGER R G, JACKSON B J, et al. The bioaccessibility of soil-based mercury as determined by physiological based extraction tests and human biomonitoring in children[J]. Science of the Total Environment, 2015,518-519:545-553.
GUNEY M, WELFRINGER B, DE R C, et al. Children's exposure to mercury-contaminated soils:Exposure assessment and risk characterization[J]. Archives of Environmental Contamination & Toxicology, 2013,65(2):345-355.
NÃ SSLEIN F, FEICHT E A, SCHULTE-HOSTEDE S, et al. Exposure analysis of the inhabitants living in the neighbourhood of a mercury-contaminated industrial site[J]. Chemosphere, 1995,30(12):2241-2248.
马世娜. 土壤中不同赋存形态汞的生物有效性研究[D]. 北京:北京化工大学, 2016. MA S N. Bioavailability of different forms of mercury in soil[D]. Beijing:Beijing University of Chemical Technology,2016(in Chinese).
张敏英. 土壤中汞的赋存形态与其生物有效性的关系研究[D]. 北京:北京化工大学, 2014. ZHANG M Y. The study of correlation between mercury speciation and their bioavailability in soil[D]. Beijing:Beijing University of Chemical Technology,2016(in Chinese).
张东平, 余应新, 张帆, 等. 环境污染物对人体生物有效性测定的胃肠模拟研究现状[J]. 科学通报, 2008,53(21):2537-2545. ZHANG D P, YU Y X, ZHANG F, et al. Current status of gastrointestinal simulation study on the determination of bioavailability of environmental pollutants to human body[J]. Chinese Science Bulletin. 2008,53(21):2537-2545(in Chinese).
SCHOOF R A, NIELSEN J B. Evaluation of methods for assessing the oral bioavailability of inorganic mercury in soil[J]. Risk Analysis, 2010,17(5):545-555.
SCHRODER L, BASTA N T, CASTEEL S W, et al. Validation of the in vitro gastrointestinal (IVG) method to estimate relative bioavailable lead in contaminated soils[J]. Journal of Environmental Quality, 2004,33(2):513-521.
OOMEN A G, HACK A, MINEKUS M, et al. Comparison of five in vitro digestion models to study the bioaccessibility of soil contaminants.[J]. Environmental Science & Technology, 2002,36(15):3326-3334.
郑顺安, 王飞, 李晓华,等. 应用in vitro法评估土壤性质对土壤中Pb的生物可给性的影响[J]. 环境科学研究. 2013, 26(8):851-857. ZHENG S A, WANG F, LI X H, et al. Application of in vitro digestion approach for estimating lead bioaccessibility in contaminated soils:Influence of soil properties[J]. Research of Environmental Sciences, 2013, 26(8):851-857(in Chinese).
INTAWONGSE M, DEAN J R. Use of the physiologically-based extraction test to assess the oral bioaccessibility of metals in vegetable plants grown in contaminated soil[J]. Environmental Pollution, 2008,152(1):60-72.
WELFRINGER B, ZAGURY G J. Evaluation of two in vitro protocols for determination of mercury bioaccessibility:Influence of mercury fractionation and soil properties.[J]. Journal of Environmental Quality, 2009,38(6):2237-2244.
DEAN J R. Heavy metal bioavailability and bioaccessibility in soil[J]. Methods in Molecular Biology, 2009,599:15-36.
DAVIS A, BLOOM N S, HEE S S Q. The environmental geochemistry and bioaccessibility of mercury in soils and sediments:A review[J]. Risk Analysis, 2010,17(5):557-569.
ZAGURY G J, BEDEAUX C, WELFRINGER B. Influence of mercury speciation and fractionation on bioaccessibility in soils[J]. Archives of Environmental Contamination & Toxicology, 2009,56(3):371-379.
BARNETT M O, TURNER R R. Bioaccessibility of mercury in Soils[J]. Journal of Soil Contamination, 2001,10(3):301-316.
SAFRUK A M, BERGER R G, JACKSON B J, et al. The bioaccessibility of soil-based mercury as determined by physiological based extraction tests and human biomonitoring in children[J]. Science of the Total Environment, 2015,518-519:545-553.
YIN Y J, ALLEN H E, LI Y, et al. Adsorption of mercury (II) by soil:Effects of pH, chloride, and organic matter[J]. Journal of Environmental Quality, 1996,25(4):837-844.
YANG Y K, ZHANG C, SHI X J, et al. Effect of organic matter and pH on mercury release from soils[J]. Journal of Environmental Sciences-China, 2007,19(11):1349-1354.
YANG J, MOSBY D E, CASTEEL S W, et al. In vitro lead bioaccessibility and phosphate leaching as affected by surface application of phosphoric acid in lead-contaminated soil[J]. Archives Of Environmental Contamination and Toxicology, 2002,43(4):399-405.
JUHASZ A L, SMITH E, WEBER J, et al. In vitro assessment of arsenic bioaccessibility in contaminated (anthropogenic and geogenic) soils[J]. Chemosphere, 2007,69(1):69-78.
TANG X Y, ZHU Y G, CUI Y S, et al. The effect of ageing on the bioaccessibility and fractionation of cadmium in some typical soils of China[J]. Environment International, 2006,32(5):682-689.
FINŽGAR N, TLUSTOŠ P, LEŠTAN D. Relationship of soil properties to fractionation, bioavailability and mobility of lead and zinc in soil[J]. Plant Soil & Environment, 2007,53(5):225-238.