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1.
CaCO3粉末表面光聚合处理的研究   总被引:1,自引:0,他引:1  
雷景新  何光健  高峻 《化学学报》2004,62(5):523-526
采用表面光聚合技术处理CaCO3粉末,研究了反应温度、时间、单体浓度等对丙烯酰胺(AAM)在CaCO3粉末表面光聚合的影响,并采用X光电子能谱(ESCA)、粒度分析、扫描电子显微镜(SEM)和模型模拟分析等研究了表面光聚合处理碳酸钙(CaCO3)的结构.结果表明:紫外光能有效地引发AAM在CaCO3粒子表面聚合.经光聚合处理后,CaCO3粒子表面形成了聚丙烯酰胺(PAAM)包覆层,该包覆层与CaCO3粒子结合紧密,不能被溶剂洗涤清除.光聚合处理后CaCO3粒子表面较光滑,分散性可得到提高,CaCO3粒子粒径增大.  相似文献   

2.
以CaCl2和Na2CO3为原料, 研究CaCO3在聚己内酯-b-聚丙烯酸(PCL-b-PAA)胶束溶液中的结晶行为, 并探讨胶束溶液浓度对CaCO3晶体组成及其形貌的影响. 采用氢核磁共振谱(1H NMR)、透射电子显微镜(TEM), 傅里叶变换红外吸收光谱(FTIR)、X射线粉末衍射分析(XRD)、扫描电子显微镜(SEM)和电导率等测试手段对聚合物结构、胶束形貌和CaCO3晶型及形貌进行表征. 结果表明, PCL-b-PAA胶束影响了CaCO3的结晶过程, 得到了不易在水中存在的处于亚稳态的球霰石型CaCO3晶体. 随胶束浓度的增加, 球霰石型CaCO3的含量先增加而后减少|CaCO3晶体的主要形貌由无规则形转变为球形.  相似文献   

3.
高艳芳  王海水 《应用化学》2015,32(7):831-836
晶体的晶型和形貌是碳酸钙制备中的关键问题之一。 采用尿素水解均匀沉淀法来控制碳酸钙的晶型和形貌。 利用XRD和SEM等技术手段对CaCO3晶体的结构和形貌进行了表征。 结果表明,高温条件下(90 ℃)水溶液中得到均匀的针状结构的文石晶体。 添加适量柠檬酸钠后,则得到的是特殊形貌的方解石晶体。 在乙醇/水混合溶剂中,柠檬酸钠对CaCO3晶体的形貌也有重要影响,通过改变乙醇体积分数,得到了中空绒毛球状的球霰石。  相似文献   

4.
模板法是一种制备粒径可控、形貌均一微球的有效途径。以球霰石形态存在的CaCO3多孔微球具有生物相容、孔径均一,以及可在温和条件下分解等优点,适用于作为模板制备微球。本文在对CaCO3模板进行简单介绍的基础上,从原料选取与应用角度综述了用CaCO3模板法制备微球的研究进展。常用的装载CaCO3多孔微球的方法有物理吸附、共沉淀和渗透法等,所用原料有天然高分子(如多糖、蛋白质、DNA)和合成高分子(如聚苯乙烯磺酸钠、聚乙烯醇)。利用CaCO3模版制备的微球具有多孔洞或空心结构,尺寸形貌均一可控,特别适用于制药、药物递送、生物传感器及化学分析等领域。预计随着纳米技术的发展和生物医药领域的需求将推动CaCO3模板法的研究,以期通过该方法制备出应用领域更加广泛的微球。  相似文献   

5.
依据Top-down技术中的质控图法对EDTA络合滴定法测定海洋沉积物中碳酸钙含量的不确定度进行评定。利用2021年质控样标准物质GBW 07333、GBW 07314和GBW 07316中CaCO3测定值的时序数据进行评定,3组时序数据正态统计量A2*(s)和独立性统计量A2*(RM)均小于1,CaCO3测定值、AEWMi和移动极差控制图没有失控点,3组时序数据处于受控状态。当CaCO3质量分数分别为2.05%、6.20%和38.56%时,计算得其扩展不确定度分别为0.08%、0.07%和0.20%。将测量不确定度与对应含量值进行线性拟合建立了不确定度预测模型,GBW 07309和GBW 07334中CaCO3的测量不确定度预测值分别为0.09%和0.18%,预测值与Top-down技术获取的评定结果较为吻合。  相似文献   

6.
原位沉析法制备碳酸钙/壳聚糖三维复合材料的研究   总被引:6,自引:0,他引:6  
将含有Ca2+的壳聚糖溶液与含有CO2-3的碱溶液用离子可渗透膜隔离,根据膜渗透原理,使膜内壳聚糖与碱液原位沉析,生成碳酸钙,得到具有高强度的碳酸钙(CaCO3)/壳聚糖(CS) 三维复合材料. XRD测试结果表明,生成的碳酸钙以方解石晶型存在. 从SEM可以观察到碳酸钙颗粒尺寸约为5~10 μm,并且颗粒呈有序分布,它们以棒材的纵轴为中心,围绕中心呈环状分布. 对不同碳酸钙含量的复合棒材进行了弯曲性能测试,其弯曲强度随碳酸钙含量的增大先上升后下降. 在碳酸钙质量分数为10%时,弯曲强度达到最大值(约为113 MPa),弯曲模量为2.6 GPa.  相似文献   

7.
通过双螺杆挤出共混制备了等规聚丁烯-1(iPB-1)/硬脂酸改性CaCO3纳米粒子复合材料,以扫描电子显微镜(SEM)、差示扫描量热法(DSC)、动态流变及拉伸、冲击和弯曲等手段对其结构和性能进行表征,考察了不同含量CaCO3纳米粒子在加入2种不同相对分子质量iPB-1时的影响规律.结果显示CaCO3纳米粒子在较低相对分子质量iPB-1中分散较好,所得复合材料的动态流变复数模量、储能模量、损耗模量及复数黏度等动态流变性能以及拉伸强度等力学性能均随CaCO3纳米粒子用量增多而明显增加;而CaCO3纳米粒子在较高相对分子质量iPB-1中分散较差,所得复合材料的动态流变性能和力学性能变化较小甚至没有影响.iPB-1短链因端链作用相对长链在链构象调整时更容易而链活动性更强且缠结弱,对CaCO3纳米粒子填充更敏感;iPB-1长链则主要受链缠结主导限制了其链构象调整能力进而链活动性较低,表现为更“强”的“强流体”特性,进而降低了CaCO3纳米粒子...  相似文献   

8.
以高灰熔点朱集西洗煤为对象,研究了助熔剂CaCO3、Fe2O3、CaCO3/Fe2O3复合助熔剂以及CaMg(CO3)2对其煤灰熔融特性的影响。结果表明,各助熔剂均可降低煤灰熔融温度,但助熔效果与助熔剂种类和添加量有关,采用CaCO3/Fe2O3复合助熔剂以及CaMg(CO3)2在添加量较小时,助熔效果明显;利用FactSage热力学软件,分析了添加助熔剂对煤灰中矿物高温熔融行为的影响,为进一步掌握助熔剂的助熔机理提供理论帮助。  相似文献   

9.
在PC和Chol/PC有序体中进行CaCO3沉淀反应,用X射线衍射和扫描电镜方法表征了反应物结构,研究了作为有机模板剂的不同分子有序体对CaCO3的晶型和形态的指导作用.在反胶束合成中出纳米级CaCO3颗粒.胆固醇对有序体有显著影响,进而影响此体系中形成的CaCO3晶型,可诱导生成3种CaCO3异构体:胶体CaCO3、球霰石和方解石.方解石含量随胆固醇含量增加减少.  相似文献   

10.
设计并合成了聚谷氨酸-聚乙二醇@碳酸钙(PPG@CaCO3)纳米遮蔽体系,用于遮蔽聚乙烯亚胺(PEI)。一方面,聚谷氨酸-聚乙二醇(PPG)可以降低PEI引起的细胞毒性,更有利于体内应用;另一方面,CaCO3可有效改善PPG导致的转染效率下降,并在一定程度上提高PEI的细胞转染效率。对比遮蔽体系PPG@CaCO3和聚谷氨酸-聚乙二醇@磷酸钙[PPG@Ca3(PO4)2]发现,PPG@CaCO3在微酸性环境中释放二氧化碳气体是提高细胞转染效率的关键因素。小鼠体内循环实验表明,PPG@CaCO3遮蔽体系可以增加载体在血液中的循环时间。因此,PPG@CaCO3遮蔽体系对于改善阳离子类基因载体的体内应用起到重要作用。  相似文献   

11.
以聚乙二醇磷酸酯1000为表面处理剂, 采用碳化法合成了方解石型碳酸钙纳米粒子, 进一步制备了聚对苯二甲酸乙二醇酯/碳酸钙纳米复合材料. 采用透射电子显微镜(TEM)、 X射线衍射(XRD)、 傅里叶变换红外光谱(FTIR), 场发射扫描电子显微镜(FESEM)和热重分析(TGA)对样品进行了分析. 结果表明, 聚乙二醇磷酸酯1000成功地修饰到碳酸钙的表面, 并得到平均直径为60 nm, 形貌为立方体的纳米碳酸钙晶体. 与碳酸钙(空白)样品相比, 表面处理碳酸钙的复合材料表现出更好的分散性和热稳定性. 采用Friedman方法计算了复合材料热分解的活化能. 聚对苯二甲酸乙二醇酯、 聚对苯二甲酸乙二醇酯/空白碳酸钙和聚对苯二甲酸乙二醇酯/表面处理碳酸钙的活化能分别为200.58, 214.86和219.50 kJ/mol, 进一步说明了表面处理碳酸钙更好地改善了聚对苯二甲酸乙二醇酯的热稳定性.  相似文献   

12.
The effects of seven carboxylic acids, i.e., acrylic acid, maleic acid, tartaric acid, malic acid, succinic acid, and citric acid, on CaCO(3) crystallization were studied using the unseeded pH-drift method along with a light-scattering technique. Experiments were started by mixing solutions of CaCl(2) and NaHCO(3) in the presence or absence of additives. The crystallization was studied by recording the decrease in pH resulting from the reaction Ca(2+)+HCO(3)(-)-->CaCO(3)+H(+). A given amount of carboxylic acid was added to the solution of CaCl(2) or NaHCO(3) before mixing the reactants. The pH profiles obtained in the case of the CaCl(2) solution containing an additive were similar to those for the NaHCO(3) solution containing one, and when an additive was added after the onset of crystallization, the growth of CaCO(3) immediately stopped. The light-scattering observations, in all cases, indicated that CaCO(3) nucleation occurred at 10-20 s after mixing of the reactants. The results indicated that the nucleation of CaCO(3) was not influenced by the presence of carboxylic acids, but CaCO(3) crystal growth was reduced by their adsorption to the surface of the CaCO(3) crystals. These phenomena were explained by assuming a stronger affinity of the carboxylic acids for CaCO(3) particles than for the free Ca(2+) ions in solution. The crystallization of CaCO(3) in the presence of additives was divided into three stages: nucleation, growth incubation, and growth periods. Copyright 2001 Academic Press.  相似文献   

13.
CaCO3 crystallization on a chitosan membrane was studied using diffusion of (NH4)2CO3 vapors into a CaCl2 solution containing differing added amounts of two polyacrylic acids (PAAs) with molecular weights of ca. 2.0 x 10(3) and ca. 4.5 x 10(4). The coexistence of PAA and the chitosan membranes produced thin CaCO3 island crystals, which developed into a continuous CaCO3 film on the membranes. Continuous CaCO3 films consisting of only aragonite formed on the chitosan membranes at the optimum amount of PAA. When the amount of PAA is not optimum, the polymorph of CaCO3 switches from aragonite to vaterite, and the morphology has a tendency to become an isolated island structure. The formation of the aragonite and vaterite island crystals and the appearance of a range of added PAA suitable for their formation are explained by the action of two parallel phenomena: (a) the high concentration of Ca2+ ions in the chitosan membrane vicinity is achieved by the interaction between the -COO- groups of PAA adsorbed by the -NH3+ groups of the chitosan membrane through an electrostatic force and free Ca2+ ions in the CaCl2 solution, which produces the high supersaturation with CaCO3 in the membrane vicinity during CO2 diffusion; (b) PAA, remaining as mobile carboxylic anions in the CaCO3 solution, inhibits the growth of the CaCO3 island crystals by its adsorption. The CaCO3 supersaturation in the membrane vicinity is controlled by regulating the balance of these phenomena, which leads to the formation of the desired CaCO3 polymorph.  相似文献   

14.
用马来酸酐(MAH)在碳酸钙(CaCO3)表面引入双键,通过原位固相接枝法将聚丙烯蜡(PPW)化学键合在CaCO3表面,制得3种接枝率的CaCO3-MAH-PPW。 将这3种改性CaCO3填充聚丙烯(PP)制备复合材料,研究了PP/CaCO3界面作用对复合材料强度的影响。 结果表明,CaCO3表面经PPW接枝改性后在PP中的分散性提高,与PP相容性变好;随着改性CaCO3表面PPW接枝率的提高,CaCO3与PP之间界面作用逐渐增强。 当PPW接枝率为4.48 mg PPW/g CaCO3时,CaCO3与PP之间的界面作用最强,复合材料拉伸强度下降最小,杨氏模量提升最大,当m(PP)∶m(CaCO3)=100∶50时,杨氏模量达0.86 GPa,是纯PP的1.63倍;而PPW化学接枝率为2.49 mg PPW/g CaCO3时,CaCO3与PP之间的界面作用适中,复合材料缺口冲击强度提升最大,且当m(PP)∶m(CaCO3)=100∶10时,缺口冲击强度达3.91 kJ/m2,是纯PP的1.35倍。  相似文献   

15.
An asymmetric triblock copolymer, poly(styrene-b-acrylic acid-b-ethylene glycol) (PS-b-PAA-b-PEG), was synthesized via reversible addition-fragmentation chain transfer controlled radical polymerization. Micelles of PS-b-PAA-b-PEG with PS core, PAA shell, and PEG corona were then prepared in aqueous solutions, followed by extensive characterization based on dynamic light scattering, zeta-potential, and transmission electron microscopy (TEM) measurements. The well-characterized micelles were used to fabricate hollow nanospheres of CaCO(3) as a template. It was elucidated from TEM measurements that the hollow nanospheres have a uniform size with cavity diameters of ca. 20 nm. The X-ray diffraction analysis revealed a high purity and crystallinity of the hollow nanospheres. The hollow CaCO(3) nanospheres thus obtained have been used for the controlled release of an anti-inflammatory drug, naproxen. The significance of this study is that we have overcome a previous difficulty in the synthesis of hollow CaCO(3) nanospheres. After mixing of Ca(2+) and CO(3)(2-) ions, the growth of CaCO(3) is generally quite rapid to induce large crystal, which prevented us from obtaining hollow CaCO(3) nanospheres with controlled structure. However, we could solve this issue by using micelles of PS-b-PAA-b-PEG as a template. The PS core acts as a template that can be removed to form a cavity of hollow CaCO(3) nanospheres, the PAA shell is beneficial for arresting Ca(2+) ions to produce CaCO(3), and the PEG corona stabilizes the CaCO(3)/micelle nanocomposite to prevent secondary aggregate formation.  相似文献   

16.
Micron size and food grade pristine CaCO(3) particles were used to stabilize an oil in water Pickering emulsion. The particles also acted as nucleation sites for the subsequent crystallization of CaCO(3) with the addition of CaCl(2) and CO(2) gas as precursors. After the controllable crystallization process, a dense CaCO(3) shell with a few microns in thickness was formed. The CaCO(3) shell was proven to be calcite without the presence of crystallization modifiers. The crystallization speed and the shell integrity were controlled by manipulating the addition of CaCl(2) amount during the different crystallization stages; therefore, the homogeneous nucleation in the bulk was almost inhibited, and the heterogeneous nucleation at the oil-water interface on pristine CaCO(3) particles was the main contribution to the growth of the shell. The encapsulated limonene flavor in CaCO(3) capsules showed a prolonged release in neutral water at 85°C, while a burst release at pH 2 water as expected. The method is a simple and scalable process for creating inorganic core-shell capsules and can be used for producing food grade capsules for controlling the flavor release or masking undesirable taste in mouth.  相似文献   

17.
The role of the double-hydrophilic block copolymer poly(ethylen glycol)-block-poly(methacrylic acid) (PEG-b-PMAA) on the morphogenesis of calcium carbonate (CaCO3) was studied by applying the contrast variation small angle neutron scattering technique. The morphology and size of CaCO3 crystals is strongly affected by the addition of PEG-b-PMAA. In order to determine the partial scattering functions of the polymer and CaCO3 mineral, we developed both an experimental and theoretical approach with a sophisticated method of their determination from the scattering intensity. Partial scattering functions give detailed information for each component. In particular, the partial scattering function of the polymer, Spp, shows a monotonic slope with Q(-2 to -3) where the scattering vector Q is low (Q < 0.01 Angstrom(-1)), which is a clear evidence that the polymer within the CaCO3 mineral has a mass fractal dimension. The other partial scattering functions reflected the geometry of the CaCO3 particles or the "interaction" of polymer and CaCO3 on a microscopic scale, which leads to a coherent view with Spp.  相似文献   

18.
以十二碳醇磷酸酯(DDP)为改性剂, 采用碳化法制备了分散性良好的球状碳酸钙粒子. 通过FESEM, XRD, FTIR及活化度和接触角测试对产物进行了表征. XRD分析结果表明, 随着DDP添加量的增加, 所得CaCO3由方解石型向文石型转变. FTIR结果表明, 改性剂与碳酸钙表面是以化学键合和物理吸附方式相结合. 当DDP含量达到2%时, 接触角为120.43°, 活化度达到99%, 碳酸钙粒子由亲水性转变为完全疏水性. 考察了反应温度和DDP含量对产物形貌与结晶行为的影响, 并对改性机理进行了初步探讨. 将产品填充到聚丙烯(PP)中, 测定了PP的力学性能.  相似文献   

19.
Direct electrochemistry and electrocatalysis of horseradish peroxidase(HRP) were achieved by entrapping the enzyme between CaCO3 microspheres and gold nanoparticles through forming sandwich configuration (CaCO3-HRP-AuNPs). Polyanion, poly(styrene sulfonate)(PSS), was hybrid with CaCO3 microspheres to increase the surface negative charges for binding with HRP through electrostatic interaction. After the bioconjugate CaCO3 PSS-HRP was entrapped in chitosan based sol-gel(CS-GPTMS) film, HRP was encapsulated by in situ formation of an outer layer of AuNPs through electrochemical reduction of HAuCl4. The composite film containing AuNPs, CaCO3-PSS-HRP bioconjugates and CS-GPTMS can provide favorable microenvironment for HRP to perform direct electron transfer at glassy carbon electrode(GCE). HRP retained its bioelectrocatalytic activity and lead to sensitive and fast amperometric response for the determination of H2O2. H2O2 could be detected in a very wide linear range from 5.0×10–6 mol/L to 7.1×10–2 mol/L. The sandwich configuration of CaCO3-biomolecules-AuNPs could serve as a versatile platform for enzyme immobilization and biosensing.  相似文献   

20.
碳酸钙的原位合成及表面改性   总被引:3,自引:0,他引:3  
利用碳化法, 选用几种常见的改性剂(硬脂酸钠、十八碳醇磷酸酯和油酸)对碳酸钙进行了原位合成及表面改性. 通过活化度、白度、接触角的测定, 对比了其改性效果, 同时通过傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)、透射电镜(TEM)等测试手段对产品进行表征. FT-IR结果表明, 改性剂与碳酸钙表面是以化学键合和物理吸附方式相结合. 碳酸钙改性后, 其红外υ3特征吸收峰出现约44 cm-1的蓝移现象. 对反应机理进行了初步探讨. 实验结果表明, 当十八碳醇磷酸酯用量达到2%(以碳酸钙的质量分数计)时, 产品活化度达到99.9%, 白度值达到97.3%, 接触角达到了122.25°, 从而为新型无机填料的制备提供了理论依据和合成手段.  相似文献   

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