![Nina Paula Gonçalves Salau Profile](https://pbs.twimg.com/profile_images/1416822375816089601/FWFAio8v_x96.jpg)
Nina Paula Gonçalves Salau
@NinaSalau
Followers
52
Following
74
Statuses
63
Associate Professor @UFSM_oficial | Chemical Engineer | World Explorer
Santa Maria, Brasil
Joined July 2021
Excited to be a judge again for the #LatinXChemEng category at #LatinXChem24 on Oct 14-15, a collab category between @LatinXChem and @LatinXinChE. Submit your work and win cash prizes for best poster in our category!
0
5
17
RT @LatinXinChE: In this hispanic heritage month, we're really grateful to our all of our attendees, speakers, and sponsors @ChEnected @Dow…
0
5
0
@Eliisa_mFF @LatinXChem How do the optimized reaction conditions for acylating naringin with acetate, propionate, and laurate compare to previous methods in terms of efficiency and enzyme consumption?
1
0
1
@Eliisa_mFF @LatinXChem Congratulations on your work! I have a coulpe of questions about your research: 1. How do different enzymatic conditions (e.g., temperature, enzyme concentration) influence the solubility of acylated naringin?
2
0
1
@Saddam_kasurii @LatinXChem 2. What future studies could explore other doping materials or techniques to further improve the structural, optical, or photovoltaic characteristics of perovskite thin films?
0
0
0
@Saddam_kasurii @LatinXChem Hi Saddam! I have two questions about your work: 1. How did aluminum doping affect the long-term stability of the perovskite films, particularly under environmental stress?
3
0
1
@Ing_Fabian @LatinXChem 4. Why do none of the optimal configurations favor PV installation, and what future research could help overcome this limitation?
1
0
0
@Ing_Fabian @LatinXChem 3. Which parameters have the greatest impact on the optimization results?
1
0
0
@Ing_Fabian @LatinXChem 2. How does the model quantify the reduction in carbon emissions achieved through the optimal coupling of these systems?
1
0
0
@Ing_Fabian @LatinXChem Good work! I have a couple of questions about the research: 1. What optimization techniques are used to find the ideal configuration for coupling green roofs and PV systems?
1
0
0
@irvingrulz 2. How could you extend this model to account for multi-component extractions or varying particle shapes?
3
0
0
@irvingrulz Nice work! I have two questions about your research: 1. Did you perform any sensitivity analysis to understand how changes in model parameters affect mass transfer predictions?
1
0
0
@hiramos8 @LatinXChem What advantages do sugar-based deep eutectic solvents offer compared to traditional solvents in terms of environmental impact and extraction efficiency?
1
0
0
@hiramos8 @LatinXChem Well done on your study! I have two questions about your findings: 1. How does the composition of the deep eutectic solvents influence the yield and purity of the extracted phenolic compounds?
1
0
0
@MarthaRMorales @LatinXChem 2. How were mass transfer parameters estimated during the osmotic dehydration of carrots?
1
0
1
@MarthaRMorales @LatinXChem Nice work! I have two questions about your research: 1. What key mass transfer interactions were observed during osmotic dehydration of carrots in binary vs. ternary NaCl-sucrose-water systems?
1
0
1
@AlexanderPanal2 @LatinXChem Congratulations on your work! What trade-offs were identified between cost, reliability, and environmental sustainability in the design of diversified water-energy systems?
1
0
0
@Arianeth_QR @LatinXChem Nice work! What challenges do you anticipate facing during the operational testing of the dehydration device for contaminated OREX™ material once construction is complete?
0
0
0
@TovarFacio @LatinXChem @MelissaGar29 Congratulations on your work! What specific parameters were modeled using MILP to quantify uncertainty in demand growth, and how do these parameters influence planning outcomes?
3
0
1
@PaoVegaPerales1 @LatinXChem 2. What challenges did you face using DWSIM for modeling combustion reactions, and how were they resolved? 3. What combustion parameters were studied with DWSIM, and how do they affect thermal device performance?
2
0
1