Metastable Zone Width (MSZW) in Crystallization

The Building Blocks of Crystallization

Hívjon minket ajánlatért

What Is Metastable Zone?

The metastable zone refers to a specific region in the phase diagram of a substance where a solution or melt can exist temporarily in a state that is thermodynamically unstable. In this zone, the substance remains in a supersaturated or supercooled state, meaning it contains a higher concentration of solute or is at a lower temperature than its equilibrium state would typically allow.

Within the metastable zone, the solution or melt is in a state of kinetic stability rather than thermodynamic stability. This means that although the system is not in its most energetically favorable state, it can persist in this state due to the absence of nucleation or crystallization triggers.

The metastable zone is important in processes such as crystallization, where controlling the formation and growth of crystals is desired. By operating within the metastable zone, it is possible to induce controlled nucleation and subsequent crystal growth, leading to the formation of desired crystal structures with specific properties.

However, it is crucial to carefully navigate the metastable zone since any disturbances or external factors can trigger nucleation and rapid crystal formation, leading to an undesired outcome. Therefore, understanding the boundaries of the metastable zone and implementing appropriate control strategies are essential in optimizing processes such as crystallization, precipitation, or supercooling.

metastable zone graphs

How Do You Determine the Metastable Zone?

One way to determine the metastable zone is by utilizing a probe-based optical instrument like ParticleTrack. This instrument monitors the changes in particle size and counts during a process. By accurately identifying the point of dissolution on the solubility curve and the point of nucleation within the metastable zone at different solute concentrations, ParticleTrack enables the measurement of both the solubility curve and the metastable zone width (MSZW).

In a study conducted by Barrett and Glennon (Trans ICHemE, vol. 80, 2002, pp. 799-805), an unsaturated solution is gradually cooled at a consistent rate. Using ParticleTrack with FBRM, the point of nucleation within the metastable zone is determined, indicating a specific position within the MSZW. Subsequently, the solution is slowly heated until the point of dissolution is measured, marking a point on the solubility curve. This process is repeated by adding solvent to reduce the concentration, allowing for a swift measurement of the solubility curve and MSZW over a wide range of temperatures.

Crystallization Development
Reduce Solubility of Product in Saturated Starting Solution
Importance of Solubility Curves
How To Measure Solubility
Solubility and Metastable Zone Width Determination Case Studies
Solubility and Metastable Zone Width Determination Technologies
Crystallization and Precipitation
Crystallization Academy
Crystallization Image Analysis

Alkalmazások

Building Blocks of Crystallization Applications

Publikációk

Publications On the Building Blocks of Crystallization

White Papers

A kristályosítás megértése In Situ mikroszkópia segítségével
In situ mikroszkópiával lehetővé válik a kristályosítási folyamatok megértéséhez alapvető fontosságú dinamikus szerkezetek tanulmányozása. Egy e célbó...
A kristályosítási folyamat hatékony fejlesztése
A kristályosítási folyamat minősége nagy mértékben befolyásolja a végtermék minőségét. Új tanulmányunk betekintést enged a kristályosítási alapismeret...
Stratégiák a kristályméret-eloszlás szabályozásához
A gyógyszeripari és az értékes vegyi anyagok kifejlesztésük és termelésük során több kristályosítási folyamaton esnek át. Az új tanulmányunk különféle...
Az ipari kristályosítás fejlesztése
Az ipari kristályosítás fontos szeparációs és tisztítási lépés a vegyi-, a bánya- és az élelmiszeriparban. A folyamatok változékonysága gyakran a rész...
Beoltás a kristályosítási folyamatban
A beoltás kulcsfontosságú lépés a kristályosítási folyamatok optimalizálásában, ez garantálhatja a megfelelő szűrhetőséget, hozamot, polimorfot és sze...
Scale-up of Batch Crystallization From Lab to Plant
Scale-up of crystallization is notoriously complicated and companies are under pressure to develop scalable crystallization processes faster - at lowe...
Best Practices for Crystallization Development
This white paper demonstrates the methodology chemists use to optimize critical crystallization parameters such as temperature profile, addition rates...
Részecskejellemzés a kis méretű laboratóriumi reaktoroktól a gyártósori csővezetékekig
Részecskeméret-elemzési megközelítéssel jó részecskeminőségű termékeket állíthat elő. Az offline részecskeméret-elemzők és a termelés közbeni részecs...

Webinars

Continuous Flow Chemistry Using PAT
Eric Fang of Snapdragon discusses how continuous flow chemistry is applicable across the entire value chain. Early implementation of continuous flow...
Eliminating Micronization Using Fine Particle Crystallization
Crystal engineering is applied when the crystal size distribution is too large to meet downstream specifications. By designing the crystallization to...
Calibration Free Supersaturation Assessment
The quantitative use of in situ ATR-FTIR for real time supersaturation assessment has been extremely well defined within the literature. However, thes...
metastable zone width (MSZW) crystallization
The webinar focuses on a semi-quantitative method for the optimization and scale-up of hydrodynamically limited anti-solvent crystallization process....
Improving Crystallization and Precipitation
This webinar introduces case studies and highlights best practices used to overcome crystallization and precipitation challenges. The focus will be on...

Citations

Crystallization and Precipitation Citation List
Crystallization and precipitation citation list and publications

Kapcsolódó termékek

Crystallization Metastable Zone Width (MSZW)