oval dutch oven

One of the most striking features of miniature cast iron skillets is their aesthetic appeal. Often characterized by a rich, blackened surface and a sturdy handle, these skillets are reminiscent of traditional cooking methods. Their small size makes them perfect for individual servings, allowing for a personal touch at the dining table. Imagine serving individual portions of baked cornbread, sizzling appetizers, or even delightful desserts straight from the oven to your guests—all within a charming, cast iron skillet.


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Another significant benefit of using a cast iron skillet with grill features is its ability to transition seamlessly from stovetop to oven. This flexibility allows for a variety of cooking methods, including sautéing, braising, and baking. Imagine starting a dish on the stovetop to build flavor, then finishing it off in the oven to achieve a perfectly cooked meal. This adaptability is a substantial time-saver and an invaluable feature for busy home cooks.


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  • This work was supported by SECyT-UNC Consolidar tipo I [2018-2021] and FONCyT, Argentina [grant number 0821-2014]. MVV holded a EVC-CIN scholarship from SECyT UNC. AM, MFPP AND MFC hold CONICET, FONCyT and SECyT scholarships respectively, and MJS, AZ, VA, MFP and MCB are career members of CONICET.

  • Anatase titanium dioxide (TiO2) is a widely used food-grade additive that imparts various functionalities to food products. It is a naturally occurring mineral that has been extensively studied for its safety and effectiveness in food applications. TiO2 is classified as GRAS (Generally Recognized As Safe) by the FDA (Food and Drug Administration) and is approved for use in a wide range of food products, including beverages, confectionery, and pharmaceuticals.
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  • Titanium dioxide (E 171) is authorised as a food additive in the EU according to Annex II of Regulation (EC) No 1333/2008.  

  • When the pH of titanium dioxide deviates from the optimal range, its properties and performance may be compromised. For example, at low pH levels (acidic conditions), titanium dioxide particles tend to agglomerate and form clusters, leading to poor dispersion and reduced whiteness. On the other hand, at high pH levels (alkaline conditions), the stability of titanium dioxide can be compromised, resulting in decreased opacity and color performance.