Geoscience Reference
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Mei, X.Q., Ye, Z.H. & Wong, M.H.: The relationship of root porosity and radial oxygen loss on arsenic
tolerance and uptake in rice grains and straw. Environ. Pollut . 157 (2009), pp. 2550-2557.
Mohan, D., Pittman Jr, C.U., Bricka, M., Smith, F., Yancey, B., Mohammad, J., Steele, P.H., Alexandre-
Franco, M.F., Gáez-Serrano, V. & Gong, H.: Sorption of arsenic, cadmium, and lead by chars produced
from fast pyrolysis of wood and bark during bio-oil production. J. Colloid Interface Sci. 310 (2007),
pp. 57-73.
Namgay, T., Singh, B. &Singh, B.P.: Plant availability of arsenic and cadmium as influenced by biochar
application to soil. 19th World Congress of Soil Science, Soil Solutions for a Changing World , 2010.
Natarajan, S., Stamps, R.H., Saha, U.K. & Ma, L.Q.: Effects of nitrogen and phosphorus levels, and frond-
harvesting on absorption, translocation and accumulation of arsenic by Chinese Brake fern ( Pteris Vittata
L.). Int. J. Phytoremediat . 11 (2009), pp. 313-328.
Niazi, N.K., Singh, B., Zwieten, L.V. & Kachenko, A.G.: Arsenic hyperaccummulation by ferns: A field
study in northern NSW. 19th World Congress of Soil Science, Soil Solutions for a Changing World , 2010.
Poynton, C.Y., Huang, J.W., Blaylock, M.J., Kochian, L.V. & Elless, M.P.: Mechanisms of arsenic
hyperaccumulation in Pteris species: root As influx and translocation. Planta 219 (2004), pp. 1080-1088.
Rahman, M. A., Hasegawa, H. & Ueda, K.: Arsenic accumulation in duckweed ( Spirodela polyrhiza L.): A
good option for phytoremediation. Chemosphere 69 (2007), pp. 493-499.
Salt, D.E, Smith, R.D., & Raskin, I.: Phytoremediation. Annu. Rev. Plant Physiol. Mol. Biol . 49 (1998),
pp. 643-668.
Santos, J.A.G., Gonzaga, M.I.S., Ma, L.Q. & Srivastava, M.: Timing of phosphate application affects arsenic
phytoextraction by Pteris vittata L. of different ages. Environ. Pollut. 154 (2008), pp. 306-311.
Sarkar, D., Datta, R. & Sharma, S.: Fate and bioavailability of arsenic in organo-arsenical pesticide-applied
soils. Part-I: incubation study. Chemosphere 60 (2005), pp. 188-195.
Sas-Nowosielska, A., Kucharski, R., Malkowski, E., Pogrzeba, M., Kuperberg, J.M. & Krynski, K.:
Phytoextraction crop disposal - an unsolved problem. Environ. Pollut. 128 (2004), pp. 373-379.
Sharples,
J.M.,
Meharg,
A.A.,
Chambers,
S.M. & Cairney,
J.W.G.:
Symbiotic solution to arsenic
contamination. Nature 404 (2000), pp. 951-952.
Shaw, J.K., Fathordoobadi, S., Zelinski, B.J., Ela, W.P. & Sáez, A.E.: Stabilization of arsenic-bearing solid
residuals in polymeric matrices. J. Hazard. Mater. 152 (2008), pp. 1115-1121.
Shelmerdine, P.A., Black, C.R., McGrath, S.P. & Young, S.D.: Modelling phytoremediation by the hyper-
accumulating fern, Pteris vittata , of soils historically contaminated with arsenic. Environ. Pollut. 157
(2009), pp. 1589-1596.
Shiralipour, A., Ma, L., & Cao, R.: Effects of compost on arsenic leachability in soils and arsenic uptake
by a fern. Florida Centre for Solid Hazardous Waste Management, State University System of Florida,
Gainesville, FL. Report, 2002, #02-04.
Srivastava M., Ma, L.Q., & Santos, J.A.G.: Three new arsenic hyperaccumulating ferns. Sci. Total Environ .
364 (2006), pp. 24-31.
Su, Y.H., McGrath, S.P., Zhu, Y.G. & Zhao, F.J.: Highly efficient xylem transport of arsenite in the arsenic
hyperaccumulator Pteris vittata . New Phytol. 180 (2008), pp. 434-441.
Trotta, A., Falaschi, P., Cornara, L., Minganti, V., Fusconi, A., Drava, G. & Berta, G.: Arbuscular mycorrhizae
increase the arsenic translocation factor in the As hyperaccumulating fern Pteris vittata L. Chemosphere
65 (2006), pp. 74-81.
Tu, C. & Ma, L.Q.: Effects of arsenate and phosphate on their accumulation by an arsenic-hyperaccumulator
Pteris vittata L. Plant Soil 249 (2003), pp. 373-382.
Tu, C. Ma, L.Q., & Bondada, B.: Arsenic accumulation in the hyperaccumulator Chinese brake and its
utilization potential for phytoremediation. J. Environ. Qual. 31 (2002), pp. 1671-1675.
Tu, C., Ma, L.Q., Zhang, W., Cai, Y. & Harris, W.G.: Arsenic species and leachability in the fronds of the
hyperaccumulator Chinese brake ( Pteris vittata L.). Environ. Pollut . 124 (2003), pp. 223-230.
Tu, S., Ma, L.Q., Fayiga, A.O. & Zillioux, E.J.: Phytoremediation of arsenic-contaminated groundwater by
the arsenic hyperaccumulating fern Pteris vittata L. Int. J. Phytoremediat. 6 (2004a), pp. 35-47.
Tu, S., Ma, L.Q. & Luongo, T.: Root exudates and arsenic accumulation in arsenic hyperaccumulating Pteris
vittata and non-hyperaccumulating Nephrolepis exaltata . Plant Soil 258 (2004b), pp. 9-19.
Tu, S., Ma, L.Q., MacDonald, G.E. & Bondada, B.: Effects of arsenic species and phosphorus on arsenic
absorption, arsenate reduction and thiol formation in excised parts of Pteris vittata L. Environ. Exp. Bot.
51 (2004c), pp. 121-131.
Ultra, V.U., Nakayama, A., Tanaka, S., Kang, Y.M., Sakurai, K. & Iwasaki, K.: Potential for the alleviation
of arsenic toxicity in paddy rice using amorphous iron-(hydr)oxide amendments. Soil Sci. Plant Nutr. 55
(2009), pp. 160-169.
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