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Synthesis of calcium carbonate nanoparticles by reactive precipitation using a high pressure jet homogenizer

机译:使用高压喷射均质器通过反应沉淀法合成碳酸钙纳米颗粒

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Calcium carbonate nanoparticles were synthesized by reactive precipitation of sodium carbonate and calcium chloride solutions (0.10 M) using a high pressure jet homogenizer in the presence of sodium caseinate as stabilizer. Based on mixing theory, an estimation of mixing time (t_(mix)) of salt solutions as a function of pressure drop was calculated considering the homogenizer as a T-mixer followed by a homogenization chamber for particle aggregate disruption. Pressure losses higher than 20 MPa were required to produce nanoparticles (z-average = 100 nm). The effect of total pressure drop (20-36 MPa), pH (6.0-10.0), temperature (5.0-40.0 °C) and protein concentration (1.0-3.0%) on nanoparticle formation were evaluated using a 3~2 and a 3~3 factorial design. Temperature and protein concentration showed to be the most relevant factors of nanoparticle formation. Transmission electron microscopy images indicate that calcium carbonate nanoparticles produced in the jet homogenizer have a multiple core structure, with primary particles (c.a. 6 nm in diameter) immersed in a protein matrix that corresponds to 35% of the total nanoparticle mass. The calcium carbonate multiple core nanoparticles could find applications in food, pharmaceutical and chemical industry considering their innocuity and protein functionalization.
机译:在酪蛋白酸钠作为稳定剂的情况下,使用高压喷射均质器通过碳酸钠和氯化钙溶液(0.10 M)的反应性沉淀法合成碳酸钙纳米颗粒。基于混合理论,考虑均质器作为T型混合器,然后使用均质室进行颗粒聚集体破碎,计算盐溶液的混合时间(t_(mix))与压降的函数关系。生产纳米颗粒(z平均= 100 nm)需要高于20 MPa的压力损失。使用3〜2和3评估了总压降(20-36 MPa),pH(6.0-10.0),温度(5.0-40.0°C)和蛋白质浓度(1.0-3.0%)对纳米颗粒形成的影响。 〜3析因设计。温度和蛋白质浓度显示是纳米颗粒形成的最相关因素。透射电子显微镜图像表明,在射流均质器中产生的碳酸钙纳米粒子具有多核结构,初级粒子(直径约6 nm)浸没在蛋白质基质中,相当于总纳米粒子质量的35%。考虑到碳酸钙多核纳米粒子的无毒性和蛋白质功能化,它们可以在食品,制药和化学工业中找到应用。

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