CAO Si-wei, XIANG Shi-jian, WU Wen-feng, et al. Analysis of Microstructure and CaCO Content of Ostreae Concha in Calcining Process[J]. Chinese journal of experimental traditional medical formulae, 2018, 24(16): 7-11.
CAO Si-wei, XIANG Shi-jian, WU Wen-feng, et al. Analysis of Microstructure and CaCO Content of Ostreae Concha in Calcining Process[J]. Chinese journal of experimental traditional medical formulae, 2018, 24(16): 7-11. DOI: 10.13422/j.cnki.syfjx.20181304.
Objective: To study on the microstructural changes of Ostreae Concha in the calcining process
and the effect of temperature and time on calcined Ostreae Concha were investigated. Method: Raw products of Ostreae Concha was analyzed by thermogravimetric/differential scanning calorimetry(TG/DSC).Ostreae Concha was placed in a porcelain crucible
under the conditions of different temperatures
the samples were calcined by the oven
and the Ostreae Concha was removed at every different time.After grinding
200 mesh sieves were used.The surface of calcined Ostreae Concha was analyzed by scanning electron microscope(SEM).The pore structure characteristics of calcined Ostreae Concha were analyzed by BET (Brunauer-Emmett-Teller) nitrogen adsorption.The content of CaCO3 in samples was determined by inductively coupled plasma optical emission spectrometer(ICP-OES). Result: Calcining at about 500℃ led to a significant increase in the content of quicklime.After being calcined under 300℃ for 3-4 h
the pore canal were formed on the surface of Ostreae Concha.The specific surface area formed by calcining under 300℃ was larger.The content of CaCO3 in Ostreae Concha was higher by calcining between 300-350℃. Conclusion: When calcining Ostreae Concha
it should be suitable at about 300℃
and the calcination time should be 3-4 h.Under these conditions
it will help to form pore structure
ensure large specific surface area
increase the content of CaCO3
and facilitate the development of decoction and efficacy.