Page 546 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 546
Polymer nanocomposite application 499
[11] Guo XJ, Chen FH. Removal of arsenic by bead cellulose loaded with iron oxy hydroxide
from ground water. Environ Sci Technol 2005;39:6808–18.
[12] Hansen BO, Kwan P, Benjamin MM, Li CW, Korshin GV. Use of iron oxide-coated sand
to remove strontium from simulated Hanford tank wastes. Environ Sci Technol
2001;35:4905–9.
[13] Tsadilas CD, Dimoyiannis D, Samaras V. Boron sorption by manganese oxide coated
sand. Commun Soil Sci Plan 1998;29:2347–53.
[14] Zachara JM, Smith SC, Kuzel LS. Adsorption and dissociation of Co-EDTA com-
plexes in iron oxide-containing subsurface sands. Geochim Cosmochim Acta
1995;59:4825–44.
[15] Szecsody JE, Zachara JM, Bruckhart PL. Adsorption–dissolution reactions affecting the
distribution and stability of Co(II)-EDTA in iron-coated sand. Environ Sci Technol
1994;28:1706–16.
[16] Sinsawat A, Anderson KL, Vaia RA, Farmer BL. Influence of polymer matrix compo-
sition and architecture on polymer nanocomposite formation: coarse-grained molecular
dynamics simulation. J Polym Sci B Polym Phys 2003;41:3272–84.
[17] Yew SP, Tang HY, Sudesh K. Photocatalytic activity and biodegradation of poly-
hydroxybutyrate films containing titanium dioxide. Polym Degrad Stab 2006;91(8):
1800–7.
[18] Chan C, Wu JS, Li JX, Cheung YK. Polypropylene/calcium carbonate nanocomposites.
Polymer 2002;43(10):2981–92.
[19] DM W, Meng QY, Liu Y, Ding YM, Chen WH, Xu H, et al. In situ bubble-stretching
dispersion mechanism for additives in polymers. J Polym Sci B Polym Phys 2003;41(10):
1051–8.
[20] Chen JF, Wang GQ, Zeng XF, Zhao HY, Cao DP, Yun J, et al. Toughening of
polypropylene-ethylene copolymer with nanosized CaCO3 and styrene-butadiene-sty-
rene. J Appl Polym Sci 2004;94(2):796–802.
[21] Zhang QX, Yu ZZ, Xie XL, Mai YW. Crystallization and impact energy of polypropyl-
ene/CaCO 3 nanocomposites with nonionic modifier. Polymer 2004;45(17):5985–94.
[22] Liang JZ. Melt rheology of nanometer-calcium-carbonate-filled acrylonitrile-butadiene-
styrene (ABS) copolymer composites during capillary extrusion. Polym Int 2002;
51(12):1473–8.
[23] Lee DK, Kang YS. Structure and characterization of nanocomposite Langmuir–Blodgett
films of poly(maleicmonoester)/Fe3O4 nano particle complexes. J Phys Chem B
2002;106(29):7267–71.
[24] Wang G, Chen XY, Huang R, Zhang L. Nano-CaCO3/polypropylene composites made
with ultra-high-speed mixer. J Mater Sci Lett 2002;21(13):985–6.
[25] Zha L,FangZ.Polystyrene/CaCO 3 composites with different CaCO 3 radius and
different nano-CaCO 3 content-structure and properties. Polym Compos 2010;31:
1258–64.
[26] Xu X, Wang Q, Choi HC. Encapsulation of iron nanoparticles with PVP nanofibrous
membranes to maintain their catalytic activity. J Membr Sci 2010;348:231–7.
[27] Tong M, Yuan S, Long H, Zheng M. Reduction of nitrobenzene in groundwater by iron
nanoparticles immobilized in PEG/nylon membrane. J Contam Hydrol 2010;122
(1–4):16–25. https://doi.org/10.1016/j.jconhyd.2010.10.003.
[28] Xiong Z, Zhao D, Pan G. Rapid and complete destruction of perchlorate in waterandion-
exchange brine using stabilized zero-valent iron nanoparticles. Water Res 2007;
41(15):3497–505.
[29] Guo L, Huang Q, Li X, Yang S. PVP-coated iron nanocrystals: anhydrous synthesis, char-
acterization, and electrocatalysis for two species. Langmuir 2006;22:7867–72.

