Micro/nanostructured hydroxyapatite structurally enhances the immobilization for Cu and Cd in contaminated soil

Author:

Dong Anle,Ye Xinxin,Li Hongying,Zhang Yunxia,Wang Guozhong

Funder

the National Major Research Program of China

the National Natural Science Foundation of China

the Anhui Provincial Natural Science Foundation

Hefei Science Center CAS

Publisher

Springer Science and Business Media LLC

Subject

Stratigraphy,Earth-Surface Processes

Reference47 articles.

1. Amacher MC (2001) Nickel, cadmium, and lead, in: methods of soil analysis: part 3. Chemical methods. In: Sparks DL (ed) SSSA book series 5. Soil Science Society of America, Inc., American Society of Agronomy, Inc, Madison, pp 739–768

2. Bowman GM, Hutka J (2002) Soil physical measurement and interpretation for land evaluation. Australian Soil and Land Survey Handbooks. CSIRO Publishing, Collingwood, pp 224–239

3. Cang L, Zhou DM, Wang QY, Wu DY (2009) Effects of electrokinetic treatment of a heavy metal contaminated soil on soil enzyme activities. J Hazard Mater 172:1602–1607

4. Cao XD, Wahbi A, Ma L, Li B, Yang YL (2009) Immobilization of Zn, Cu, and Pb in contaminated soils using phosphate rock and phosphoric acid. J Hazard Mater 164:555–564

5. Cheng XK, Huang ZL, Li JQ, Li Y, Chen CL, Chi R, Hu YH (2010) Self-assembled growth and pore size control of the bubble-template porous carbonated hydroxyapatite microsphere. Cryst Growth Des 10:1180–1188

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