Arsenic accumulation by edible aquatic macrophytes.
暂无分享,去创建一个
K. Falinski | R. Yost | J. Peard | E. Sampaga
[1] J. Eischeid,et al. Online Rainfall Atlas of Hawai‘i , 2013 .
[2] Meeinkuirt Weeradej,et al. 2種の草,イネ科Thysanolaena maximaおよびベチベル(Vetiveria zizanioides)によるPb鉱山尾鉱の植物安定化能力 , 2013 .
[3] A. El‐Kadi,et al. Bioaccessible arsenic in soils of former sugar cane plantations, Island of Hawaii. , 2013, The Science of the total environment.
[4] Xingyi Shi,et al. Arsenic and lead in juice: apple, citrus, and apple-base. , 2012, Journal of environmental health.
[5] M. McBride,et al. Lead and Arsenic Uptake by Leafy Vegetables Grown on Contaminated Soils: Effects of Mineral and Organic Amendments , 2012, Water, Air, & Soil Pollution.
[6] T. Kazi,et al. Translocation of arsenic contents in vegetables from growing media of contaminated areas. , 2012, Ecotoxicology and environmental safety.
[7] W. Cutler. Bioaccessible arsenic in soils of the island of Hawaii , 2011 .
[8] H. Hasegawa,et al. Aquatic arsenic: phytoremediation using floating macrophytes. , 2011, Chemosphere.
[9] B. Hale,et al. Soil–Plant Transfer Factors for Garden Produce from Contaminated Soils: Site Specific versus Generic Estimates for As and Pb , 2011 .
[10] J. Ng. Evaluation of certain contaminants in food: Seventy-second report of the Joint FAO/WHO Expert Committe on Food Additives , 2011 .
[11] S. McGrath,et al. Arsenic as a food chain contaminant: mechanisms of plant uptake and metabolism and mitigation strategies. , 2010, Annual review of plant biology.
[12] R. Fox,et al. Predicting Plant Phosphorus Requirements for Hawaii Soils using a Combination of Phosphorus Sorption Isotherms and Chemical Extraction Methods , 2010 .
[13] M. Sakakibara,et al. Phytoremediation of Sb, As, Cu, and Zn from Contaminated Water by the Aquatic Macrophyte Eleocharis acicularis , 2009 .
[14] B. Dhir,et al. Potential of Aquatic Macrophytes for Removing Contaminants from the Environment , 2009 .
[15] A. Aksoy,et al. Growth and bioaccumulation characteristics of watercress (Nasturtium officinale R. BR.) exposed to cadmium, cobalt and chromium , 2009 .
[16] K. Egashira,et al. Groundwater-soil-crop relationship with respect to arsenic contamination in farming villages of Bangladesh--a preliminary study. , 2008, Environmental pollution.
[17] H. Hosgood,et al. Seafood arsenic: implications for human risk assessment. , 2007, Regulatory toxicology and pharmacology : RTP.
[18] F. Mackenzie,et al. Carbon dioxide dynamics in rivers and coastal waters of the “big island” of Hawaii, USA, during baseline and heavy rain conditions , 2007 .
[19] S. Pandalai,et al. Recent developments on arsenic: contamination and remediation. , 2006 .
[20] E. H. Carlo,et al. Trace elements in streambed sediments of small subtropical streams on O‘ahu, Hawai‘i: Results from the USGS NAWQA program , 2005 .
[21] Alan D. Hewitt,et al. A Methodology for Assessing Sample Representativeness , 2005 .
[22] L. Barraj,et al. Estimation of Dietary Intake of Inorganic Arsenic in U.S. Children , 2004 .
[23] R N Ratnaike,et al. Acute and chronic arsenic toxicity , 2003, Postgraduate medical journal.
[24] N. Bolan,et al. Uptake of arsenic by New Zealand watercress (Lepidium sativum). , 2003, The Science of the total environment.
[25] S. McGrath,et al. Arsenic hyperaccumulation by different fern species , 2002 .
[26] P. Visoottiviseth,et al. The potential of Thai indigenous plant species for the phytoremediation of arsenic contaminated land. , 2002, Environmental pollution.
[27] C. Tu,et al. Effects of arsenic concentrations and forms on arsenic uptake by the hyperaccumulator ladder brake. , 2002, Journal of environmental quality.
[28] Yong Cai,et al. A fern that hyperaccumulates arsenic , 2001, Nature.
[29] R. Sutherland,et al. Multi-element analysis of road-deposited sediment in an urban drainage basin, Honolulu, Hawaii. , 2000, Environmental pollution.
[30] H. A. Outred,et al. The distribution and fate of arsenic in the Waikato River system, North Island, New Zealand , 1995 .
[31] T. M. Hammond,et al. Distribution of Arsenic in the Sediments and Biota of Hilo Bay, Hawaii , 1985 .
[32] R. Fox,et al. Phosphate Adsorption by Soils of the Tropics , 1978 .
[33] W. Tseng. Effects and dose-response relationships of skin cancer and blackfoot disease with arsenic , 1977, Environmental health perspectives.
[34] J. Mckeague,et al. DITHIONITE- AND OXALATE-EXTRACTABLE Fe AND Al AS AIDS IN DIFFERENTIATING VARIOUS CLASSES OF SOILS , 1966 .