Natural waters, water droplets in the air at coastal regions and wastewaters usually contain chloride ions (Cl) in relatively high concentrations in the milimolar range. In the reactions of highly oxidizing radicals (e.g., OH, NO, or SO) in the nature or during wastewater treatment in advanced oxidation processes the chloride ions easily transform to chlorine containing radicals, such as Cl, Cl, and ClO. This transformation basically affects the degradation of organic molecules. In this review about 400 rate constants of the dichloride radical anion (Cl) with about 300 organic molecules is discussed together with the reaction mechanisms. The reactions with phenols, anilines, sulfur compounds (with sulfur atom in lower oxidation state), and molecules with conjugated electron systems are suggested to take place with electron transfer mechanism. The rate constant is high (10-10 M s) when the reduction potential the one-electron oxidized species/molecule couple is well below that of the Cl/2Cl couple.
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http://dx.doi.org/10.1007/s11356-021-14453-w | DOI Listing |
Expert Opin Drug Deliv
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Vladimir Zelman Center for Neurobiology and Brain Rehabilitation, Moscow, Russia.
Introduction: The pursuit of linear dosage in pharmacy is essential for achieving consistent therapeutic release and enhancing patient compliance. This review provides a comprehensive summary of zero-order drug delivery systems, with a particular focus on reservoir-based systems emanated from different microfabrication technologies.
Areas Covered: The consideration of recent advances in drug delivery systems is given to encompass the key areas including the importance of achieving a constant drug release rate for therapeutic applications.
Background: Risk-based analyses are increasingly popular for understanding heterogeneous treatment effects (HTE) in clinical trials. For time-to-event analyses, the assumption that high-risk patients benefit most on the clinically important absolute scale when hazard ratios (HRs) are constant across risk strata might not hold. Absolute treatment effects can be measured as either the risk difference (RD) at a given time point or the difference in restricted mean survival time (ΔRMST) which aligns more closely with utilitarian medical decision-making frameworks.
View Article and Find Full Text PDFBMC Sports Sci Med Rehabil
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Division of Cardiology, Department of Internal Medicine, Chang Gung Memorial Hospital-Linkou, Chang Gung University College of Medicine, Taoyuan, 33302, Taiwan.
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View Article and Find Full Text PDFBMC Cardiovasc Disord
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Department of Cardiology, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.
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BMC Bioinformatics
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