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Calcium carbonate nanoparticles

Mingzhao H, Foressberg E, Wang Y, Han Y (2005) Ultrasonic assisted synthesis of calcium carbonate nanoparticles. Chem Eng Comm 192(11) 1468—1481... [Pg.188]

Sonawane S, Khanna P, Meshram S, Mahajan C, Deosarkar M, Gumfekar S (2009) Effect of surfactant on synthesis of calcium carbonate nanoparticles using sonochemical carbonization. Int J Chem Reactor Eng (Be press) 7 A(47) l-15, www.bepress.com/ijcre/vol7/47... [Pg.189]

Martel J, Young JD (2008) Purported nanobacteria in human blood as calcium carbonate nanoparticles. Proc Nat Acad Sci USA 106 5549-5554... [Pg.111]

Ueno, Y., Futagawa, H., Takagi, Y., Ueno, A., and Mizushima, Y. (2005), Drug-incorporating calcium carbonate nanoparticles for a new delivery system, J. Controlled Release, 103, 93-98. [Pg.1282]

Calcium carbonate nanoparticles are commercially available and are claimed to give a cost effective way of increasing impact strength (113). Their use in impact modified PVC has improved mechanical properties (57). [Pg.20]

EFFECTS OF CALCIUM CARBONATE NANOPARTICLES AND BLENDEX 338 ON MECHANICAL PROPERTIES OF PVC... [Pg.56]

Cui Yanzhen. Study on Formability and Foam Stability of Calcium Carbonate Nanoparticles-surfactant Mixtures[D]. Wuxi City University of the South, 2009 17-25. [Pg.209]

Quigley, D., Rodgta, P.M. Free energy and structure of calcium carbonate nanoparticles during early stages of crystallization. J. Chem. Phys. 128, 221101 (2008)... [Pg.121]

Huber, M. Stark, W. J. Loher, S. Maciejewski, M. Krumeich, F. Baiker, A. Flame synthesis of calcium carbonate nanoparticles. Chemical Communications 2005, 41, 648-650. [Pg.879]

Calcium carbonate nanoparticles are also added to PMMA bone cement to increase its mechanical properties. A study by Hill et al. evaluated the efficacy of adding... [Pg.59]

HiU J, Orr J, Dunne N. In vitro study investigating the mechanical properties of acrylic bone cement containing calcium carbonate nanoparticles. J Mater Sci Mater Med 2008 19 3327-33. [Pg.74]

Ma, G. G., Zhang, M. Q., and Rong, M. Z. 2007. Morphology prediction of ternary polypropylene composites containing elastomer and calcium carbonate nanoparticles filler. Journal of Applied Polymer Science 103 1578-1584. [Pg.48]

Under these assumptions these structures can be explained by mechanisms of colloidal growth processes. In other words, a self-organization process on the mesoscale through the assembly of calcium carbonate nanoparticles is assumed [36]. The polymorphic phase of these primary particles could not be determined in these experiments due to the small amount of substance available. [Pg.15]

In analogy to the studies at the air/water interface we suggest a growth mechanism involving calcium carbonate nanoparticles, which served as precursor particles. Osmotic draining of locally constrained emulsion droplets could also lead to crystallization processes. Further experiments shall involve high resolution X-ray diffraction and FTIR studies in order to evaluate the role of amorphous calcium carbonate in the crystallization processes. [Pg.17]

Compressive strength and durability of high-volume fly ash concrete reinforced with calcium carbonate nanoparticles... [Pg.275]

In Part Four, Chapter 11 offers the effectiveness of calcium carbonate nanoparticles on the improvements of compressive strength and durabUity of high-volume fly ash concrete. These resulting properties are further correlated with relevant microstructure and crystalline phases by means of X-ray diffraction, mercury intrusion porosimetry, differential thermal analysis, and thermal gravimetric analysis. Chapter 12 reviews current research and relevant techniques for the manufacture and application of amorphous carbon and its nanocomposites. Various applications for the textile, plastic, and healthcare industries, as well as in the fields of gas and water filtering, electrical apphcations, and food packaging, are also discussed based on the superior and unique propoties of... [Pg.585]

In addition to HAp/polymer composite nanofibers, examples of hybrid fibers produced by electrospinning inorganic nanoparticles include boehmite in polyamide 6 [84] and calcium carbonate nanoparticles in poly(e-caprolactone) [85]. [Pg.415]


See other pages where Calcium carbonate nanoparticles is mentioned: [Pg.302]    [Pg.22]    [Pg.70]    [Pg.60]    [Pg.266]    [Pg.218]   
See also in sourсe #XX -- [ Pg.53 ]




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