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1196 Chonghong Zhang et al.


LORS, C., DUCASSE-LAPEYRUSSE, J., GAGNÉ,R. & DAMIDOT, D. (2017). Microbiologically induced calcium carbonate precipitation to repair microcracks remaining after autogenous healing of mortars. Construction Build Mater 141, 461–469.


MAGILL, J.H. (2001). Review spherulites: A personal perspective. J Mater Sci 36, 3143–3164.


MANTILAKA, M., PITAWALA, H., RAJAPAKSE, R., KARUNARATNE,D.& UPUL WIJAYANTHA, K.G. (2014). Formation of hollow bone-like morphology of calcium carbonate on surfactant/polymer templates. J Cryst Growth 392,52–59.


MERCEDES-MARTÍN,R., ROGERSON, M.R., BRASIER,A.T., VONHOF, H.B., PRIOR, T.J., FELLOWS, S.M., REIJMER, J.J.G., BILLING,I.&PEDLEY,H.M. (2016). Growing spherulitic calcite grains in saline, hyperalkaline lakes: Experimental evaluation of the effects of Mg-clays and organic acids. Sediment Geol 335,93–102.


OCAÑA, M., RODRIGUEZ-CLEMENTE,R. & SERNA, C.J. (1995). Uniform colloidal particles in solution: Formation mechanisms. Adv Mater 7, 212–216.


RIVADENEYRA,M.A.,DELGADO,G.,RAMOS-CORMENZANA,A.&DELGADO,R. (1998). Biomineralization of carbonates byHalomonas eurihalina in solid and liquid media with different salinities: crystal formation sequence. ResMicrobiol 149, 277–287.


RODRIGUEZ-NAVARRO, C., JIMENEZ-LOPEZ, C., RODRIGUEZ-NAVARRO, A., GONZALEZ-MUÑOZ, M.T. & RODRIGUEZ-GALLEGO, M. (2007). Bacterially mediated mineralization of vaterite. Geochim Cosmochim Acta 71, 1197–1213.


RODRIGUEZ-NAVARRO, C., RODRIGUEZ-GALLEGO, M., CHEKROUN, K.B. & GONZALEZ-MUNOZ, M.T. (2003). Conservation of ornamental stone by myxococcus xanthus-induced carbonate bio- mineralization. Appl Environ Microbiol 69, 2182–2193.


SÁNCHEZ-NAVAS, A., MARTÍN-ALGARRA, A., RIVADENEYRA, M.A., MELCHOR,S.&MARTÍN-RAMOS, J.D. (2009). Crystal-growth behavior in Ca-Mg carbonate bacterial spherulites. Cryst Growth Des 9, 2690–2699.


WANG, T., CÖLFEN,H.& ANTONIETTI, M. (2005). Nonclassical crystallization: Mesocrystals and morphology change of CaCO3 crystals in the presence of a polyelectrolyte additive. J AmChem Soc 127, 3246–3247.


WOHLRAB, S., CÖLFEN,H. & ANTONIETTI, M. (2005). Crystalline, porous microspheres made from amino acids by using polymer- induced liquid precursor phases. Angewandte Chemie Int Edn 44, 4087–4092.


WRIGHT, D.T. & WACEY, D. (2005). Precipitation of dolomite using sulphate-reducing bacteria from the Coorong Region, South Australia: Significance and implications. Sedimentology 52, 987–1008.


XU, Q., ZHANG, C., LI, F., MA, F., GUO, W., LI, X., LI,L. & LIU,L. (2017). Arthrobacter sp. strain MF-2 induces High-Mg calcite formation: Mechanism and implications for carbon fixation. Geomicrobiology J 34, 157–165.


XUE,Z., HU,B., DAI,S., JIANG,X., WU,S.&DU, Z. (2011). Crystallization and self-assembly of calcium carbonate under albumin Langmuir monolayers. Mater Chem Phys 129, 315–321.


YAN, G., HUANG, J., ZHANG,J. & QIAN, C. (2008). Aggregation of hollow CaCO3 spheres by calcite nanoflakes. Mater Res Bull 43, 2069–2077.


YANG,X., XU,G., CHEN,Y., LIU,T.,MAO,H., SUI,W., AO,M.&HE,F. (2010). The influence of O-carboxymethylchitosan on the crystallization of calcium carbonate. Powder Technol 204, 228–235.


YOSHIMURA, T., TAMENORI, Y., SUZUKI, A., KAWAHATA, H., IWASAKI, N., HASEGAWA, H., NGUYEN, L.T., KUROYANAGI, A., YAMAZAKI, T., KURODA,J. & OHKOUCHI, N. (2017). Altervalent substitution of sodium for calcium in biogenic calcite and aragonite. Geochim Cosmochim Acta 202,21–38.


ZHANG, Z., YANG, B., TANG, H., CHEN,X.&WANG, B. (2015). High- yield synthesis of vaterite CaCO3 microspheres in ethanol/water: Structural characterization and formation mechanisms. J Mater Sci 50, 5540–5548.


ZHONG,C.&CHU, C.C. (2010). On the origin of amorphous cores in biomimetic CaCO3 spherulites: New insights into spherulitic crystallization. Cryst Growth Des 10, 5043–5049.


ZHU, L., ZHAO, Q., ZHENG,X.&XIE, Y. (2006). Formation of star- shaped calcite crystals with Mg2+ inorganic mineralizer without organic template. J Solid State Chem 179, 1247–1252.


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