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NH3-TPD studies show that the incorporation of Ti into the MCM-41 framework generates large amounts of acidic sites.
Although, homogeneous catalysts are readily available and inexpensive, these catalysts pose numerous problems, which include potential dangers in handling, toxicity, difficulty in separation and recovery, disposal problems due to large amounts of acidic effluent and corrosive nature [5, 6, 7, 8, 9].
The ATSDR also notes how the electrolytic refining process also required the management of large amounts of acidic waste capable of dissolving heavy metals: "…According to a 1983 Illinois EPA memo, the strong-acid electrolytic bath was believed to have been releasing material.
This could be a reason why more lesions were not found in those individuals who consumed large amounts of acidic beverages in addition to SIV.
To overcome this limitation, in the most recent report, the authors have tethered TALE-VP64 proteins with negatively supercharged domains (containing large amounts of acidic residues) to deliver the proteins using poly-cationic transfection reagents.
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It is clear that the treatment with HNO3 produces a large amount of acidic oxygen groups, such as carboxylic acids, anhydrides, and lactones, which decompose to release CO2.
Therefore, the findings suggest that a large amount of acidic sites are observed in the sample containing 3 1 molar ratio of Sn and CsPW than the other samples.
The results showed that the surface of AC was highly porous with many channels and cracks and has acidic nature, have large amount of acidic functional groups and low ash content.
Oxidations with HNO3 originate materials with large amounts of surface acidic groups, mainly carboxylic acids and, to a smaller extent, lactones, anhydrides, and phenol groups [10, 13, 14].
For example, Myc-induced carcinomas express large amounts of whey acidic protein and casein β [ 53], which should correlate with histologic evidence of proteinaceous secretion.
The acidic pH of this phase can be explained by large amounts of carboxylic acids, fatty acids, and amino acids resulting from hydrothermal reactions in the sub-critical reaction environment.
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