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Kalsiyum Karbonatın Polimorfik Faz Dönüşümünün Prolin Varlığında İncelenmesi
2020
Journal:  
Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi
Author:  
Abstract:

Bu çalışmada, kalsiyum karbonatın polimorfik faz dönüşümü katkı maddesi olarak kullanılan prolin varlığında incelenmiştir. Deneyler 1L kapasiteli çift ceketli kristalizörde, 30 C sıcaklık ve pH 8,5’da yürütülmüştür. 50 ve 100 ppm olmak üzere iki farklı katkı konsantrasyonunda deneyler gerçekleştirilmiştir. Reaktan olarak kalsiyum klorür dihidrat ve sodyum karbonat kullanılmıştır. Deney süresince belirli zaman aralıklarında numuneler alınarak, kristallerin yapısı, fonksiyonel grupları, morfolojisi, tane boyutları ve yüzey yüklerinin değişimi belirlenmiştir. XRD ve FTIR analiz sonuçları, kalsiyum karbonat kristallerinin prolin varlığında kalsit formundan vaterit formuna dönüştüğünü göstermiştir. SEM görüntüleri saf ortamda üretilen kalsit kristallerinin kübik formda olduğunu buna karşın prolin varlığında kristallerin yuvarlak görünümlü vaterit morfolojisine sahip kristallere dönüştüğünü göstermiştir. Ayrıca, prolinin kalsiyum karbonat kristallerinin yüzey alanına ve yüzey yüküne olan etkisi BET analizi ve zeta potansiyeli ölçümleri yapılarak belirlenmiştir. Saf ortamda üretilen kalsit kristallerinin BET yüzey alanı ve zeta potansiyeli değeri sırasıyla 0,7 m2/g ve –8,0 ± 2,1 mV olarak ölçülmüştür. Buna karşın, 100 ppm prolin varlığında kristallerin BET yüzey alanı 3.7 m2/g’a yükselmiş ve prolinin kristallerin yüzeyine fiziksel olarak adsorplanmasından dolayı zeta potansiyel değerleri daha negatif (–24,0 ± 2,6 mV) hale gelmiştir. Sonuç olarak, katkı maddesi olarak kullanılan prolinin kalsiyum karbonatın hem fiziksel hem de morfolojik özelliklerini önemli ölçüde değiştirdiği gösterilmiş ve farklı formlarda kalsiyum karbonat kristallerinin üretilmesine imkân sağlayacağı tespit edilmiştir.

Keywords:

Kalsiyum Karbonatın Polimorfik Faz Dönüşümünün Prolin Varlığında İncelenmesi
2020
Author:  
Abstract:

In this study, the presence of proline used as a polymorphic phase conversion additive of calcium carbonate has been studied. The tests were carried out on a double jacket crystallizer with a capacity of 1L, at a temperature of 30 C and pH of 8.5. Experiments were conducted in two different contribution concentrations, 50 and 100 ppm. Calcium chloride dihydrate and sodium carbonate are used. Thro the experiment, samples were taken in a certain time range, determining the structure of the crystals, functional groups, morphology, the size of the one and the change in surface loads. The results of XRD and FTIR analysis showed that calcium carbonate crystals in the presence of proline convert from calcite form to vaterite form. SEM images showed that the calcium crystals produced in a pure environment are in cubic shape, but in the presence of proline, the crystals are converted into crystals with a round-looking vaterite morphology. Furthermore, the effect of proline on the surface area and surface load of calcium carbonate crystals has been determined by making BET analysis and zeta potential measurements. The BET surface area and Zeta potential value of calcium crystals produced in a pure environment are measured at 0.7 m2/g and -8.0 ± 2.1 mV respectively. Nevertheless, in the presence of 100 ppm of proline, the BET surface area of the crystals increased to 3.7 m2/g, and due to the physical adsorption of proline to the surface of the crystals, the zeta potential values became more negative (24,0 ± 2,6 mV). As a result, it has been shown that proline used as a additive significantly changes both the physical and morphological properties of calcium carbonate and will enable the production of calcium carbonate crystals in different forms.

Keywords:

An Investigation Of Polymorphism Of Calcium Carbonate In The Presence Of Proline
2020
Author:  
Abstract:

In this study, the polymorphic phase transformation of calcium carbonate was analyzed in the presence of proline used as an additive. The experiments were carried out in a 1-litre double-jacketed crystallizer at 30 C and pH 8.5. The experiments were performed at two different concentrations of 50 and 100 ppm. Calcium chloride dihydrate and sodium carbonate were used as the reactants. During the polymorphic transformation process, the samples were withdrawn from the crystallizer at regular time intervals and the structure, functional group, morphology, particle size and surface charges of the calcium carbonate were determined as a function of the time. XRD and FTIR results showed that calcium carbonate crystals transformed from calcite to vaterite structures in the presence of proline. SEM images indicated that the calcium carbonate crystals prepared in pure media was cubic shaped crystals and the morphology transformed into spherical like vaterite crystals in the presence of proline. Moreover, the effects of proline on the surface area and surface charge of calcium carbonate were investigated by BET and zeta potential analysis. BET surface area and zeta potential for calcite crystals prepared in pure media were 0.7 m2/ g and - 8.0 ± 2.1 mV, respectively. By the addition of proline to the crystallization media, BET surface area increased to 3.7 m2/g, and the surface became more negative (- 24.0 ± 2.6 mV).

Keywords:

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Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi

Field :   Fen Bilimleri ve Matematik; Mühendislik

Journal Type :   Ulusal

Metrics
Article : 1.428
Cite : 2.862
2023 Impact : 0.161
Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi