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Issue DateTitleAuthor(s)
2009-09-01Hydroxyiminodisuccinic acid (HIDS): A novel biodegradable chelating ligand for the increase of iron bioavailability and arsenic phytoextractionRahman, MA; Hasegawa, H; Kadohashi, K; Maki, T; Ueda, K
2014-06-25Arsenic speciation in australian-grown and imported rice on sale in Australia: Implications for human health riskRahman, MA; Rahman, MM; Reichman, SM; Lim, RP; Naidu, R
2006-10-15Influence of cooking method on arsenic retention in cooked rice related to dietary exposureRahman, MA; Hasegawa, H; Rahman, MM; Miah, MAM
2014-01-01Toxicity of arsenic species to three freshwater organisms and biotransformation of inorganic arsenic by freshwater phytoplankton (Chlorella sp. CE-35)Rahman, MA; Hogan, B; Duncan, E; Doyle, C; Krassoi, R; Rahman, MM; Naidu, R; Lim, RP; Maher, W; Hassler, C
2018-05-01As and Sb are more labile and toxic to water spinach (: Ipomoea aquatica) in recently contaminated soils than historically co-contaminated soilsEgodawatta, LP; MacOustra, GK; Ngo, LK; Jolley, DF
2012-03-01Arsenic-induced straighthead: An impending threat to sustainable rice production in South and South-East Asia!Rahman, MA; Rahman, MM; Hasegawa, H
2007-09-01Arsenic accumulation in duckweed (Spirodela polyrhiza L.): A good option for phytoremediationRahman, MA; Hasegawa, H; Ueda, K; Maki, T; Okumura, C; Rahman, MM
2011-04-01Aquatic arsenic: Phytoremediation using floating macrophytesRahman, MA; Hasegawa, H
2011-07-01Effect of external iron and arsenic species on chelant-enhanced iron bioavailability and arsenic uptake in rice (Oryza sativa L.)Azizur Rahman, M; Mamunur Rahman, M; Kadohashi, K; Maki, T; Hasegawa, H
2020-03-01Tracing geochemical pollutants in stream water and soil from mining activity in an alpine catchmentLi, J; Li, Z; Brandis, KJ; Bu, J; Sun, Z; Yu, Q; Ramp, D
Results 11-20 of 25 (Search time: 0.705 seconds).