Health Indicators: A Review by Thermodynamic Assessment of Acetic Acid in The Presence of Selected Binary Immiscible Solvents

Dr Veronica Ogechi Onyeocha, Anthony Ikejiofor Onuchukwu
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Abstract

Background: This report reviews the thermodynamic assessment of Acetic Acid in binary immiscible solvents as an insidious health indicator that requires the confirmation of amount present and its treatment prior to discharge in effluents and sewage waste management. This measure upholds sustainability for the clean and green environment. Acetic acid is a potent harmful chemical compound. However, it is used in the chemical industry, medicine, household, and foods. Exposure to industrial compounds that contain Acetic acid is hazardous to health. Severe allergic reactions manifest from exposure to Acetic acid include rash, hives, difficulty in breathing, tightness in the chest, swelling of the mouth, face, lips or tongue, irritation, sensitivity, etc. The use of binary immiscible solvents in the analysis of Acetic acid gives the thermodynamic predictive parameter, namely: Partition coefficient (kD), which serves as an indicator that provides the amount of Acetic acid in the environment under suspect. Also, partition coefficient, kD highlights the efficiency of either the removal of Acetic acid from the environment or gives amount of Acetic acid extracted from effluents/sewage assessment by using the technique on the value(s) obtained from partition coefficients. Methods: Acetic acid was dissolved in three binary immiscible solvents, namely: Carbon Tetrachloride-Water, Diethyl Ether-Water and n-Hexane-Water, at 30℃ and an atmospheric pressure. Varying quantities of Acetic acid (the solute) were distributed into the respective binary immiscible solvents. The different volumes of AnalaR Grade reagent of Acetic acid were respectively poured into the separating funnel. The separating funnel was shaken vigorously and allowed to stand in order to establish equilibrium of diffusion of the solute in the system, as reported earlier by Onyeocha et. al. Titre-values were obtained for the concentrations of Acetic acid in the two phases of binary immiscible solutions that were formed. Results: The results in the three systems were analysed, Acetic acid had the partition coefficient, kD = 0.05838 in Diethyl Ether-Water, the dimerization constant, K = 0.0068 while ionization constant, = 0.03998 in the same system. Acetic acid had the kD = 0.05674, K = 2.0281 in magnitude and = 0.0013, in n-Hexane-Water and kD = 0.01643, K = 250.9771 and = 0.0196 in Carbon Tetrachloride-Water. Conclusion: This work shows that Carbon Tetrachloride-Water, Diethyl Ether-Water and n-Hexane-Water are efficient binary immiscible solvents for the analysis of Acetic acid proven waste treatment management for effluent and sewage disposal to ensure the sustainable clean and green environment devoid of any residual Acetic acid. Indeed, partition function, kD is a novel thermodynamic parameter recently introduced by Onyeocha et. al. for the quantitative evaluation and residual assessment of Acetic acid in the environment.
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健康指标:选择性二元不混溶溶剂存在下醋酸的热力学评价综述
背景:本报告回顾了二元不混溶溶剂中醋酸作为一种潜在的健康指标的热力学评估,需要确认其存在的量,并在排放废水和污水废物管理之前对其进行处理。这项措施维护了清洁和绿色环境的可持续性。醋酸是一种强有力的有害化合物。然而,它被用于化学工业、医药、家庭和食品。接触含有乙酸的工业化合物对健康有害。暴露于醋酸后出现的严重过敏反应包括皮疹、荨麻疹、呼吸困难、胸闷、口、脸、嘴唇或舌头肿胀、刺激、敏感等。利用二元不混相溶剂对乙酸进行分析,给出了热力学预测参数:分配系数(kD),它作为一个指标,提供了可疑环境中乙酸的数量。此外,分割系数kD强调了从环境中去除乙酸的效率,或者通过使用从分割系数中获得的值来评估从流出物/污水中提取的乙酸量。方法:在30℃、常压条件下,将乙酸溶解于四氯化碳-水、乙醚-水和正己烷-水三种二元不混溶溶剂中。不同数量的醋酸(溶质)被分配到各自的二元不混溶溶剂中。将不同体积的anar级醋酸试剂分别倒入分离漏斗中。如Onyeocha等人早些时候所报道的那样,为了在系统中建立溶质的扩散平衡,将分离漏斗大力摇动并使其站立。在形成的二元不混溶溶液的两相中,获得乙酸浓度的滴定值。结果:对三种体系的结果进行了分析,乙酸在二乙醚-水体系中的分配系数kD = 0.05838,二聚化常数K = 0.0068,电离常数K = 0.03998。乙酸在正己烷-水中的kD值为0.05674,K值为2.0281,K值为0.0013;在四氯化碳-水中的kD值为0.01643,K值为250.9771,K值为0.0196。结论:本研究表明,四氯化碳-水、乙醚-水和正己烷-水是有效的二元不混溶溶剂,可用于醋酸分析,经验证的废水处理管理可确保废水处理中无残留乙酸的可持续清洁和绿色环境。事实上,配分函数kD是Onyeocha等人最近引入的一种新的热力学参数,用于对环境中乙酸的定量评价和残留评价。
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