工艺工程
产量(工程)
连续生产
氢氧化钠
过程(计算)
生产(经济)
泥浆
连续流动
制造工艺
工业与生产工程
水冷
制造工程
化学
制浆造纸工业
计算机科学
碳酸氢钠
原材料
工程类
工艺设计
工业生产
批处理
结晶
精炼(冶金)
材料科学
塞流
批量生产
对乙酰氨基酚
作者
Koichiro Masuda,Tetsuya Yamamoto,Kwihwan Kobayashi,Hidekazu Sano,Ikuo Saito,Aiichiro Nagaki,Akira Yada
标识
DOI:10.26434/chemrxiv-2025-m9rrt
摘要
This study demonstrates a crystallization-based approach to designing and optimizing a fully continuous manufacturing process for acetaminophen (AcAP). By focusing on crystallization conditions, we developed an efficient process encompassing reaction, cooling crystallization, filtration, drying, and packaging. The reaction involved the acetylation of 4-aminophenol (4-AP) using a plug flow reactor (PFR), and the resulting mixture was subjected to cooling crystallization. The yield of AcAP was improved by controlling the pH using sodium hydroxide during crystallization. The obtained AcAP slurry was processed using a filtration, drying, and packaging system, and continuous manufacturing was successfully achieved for 5 h. This case study highlights the effectiveness of crystallization-based process design for the continuous manufacturing of fine chemicals, including pharmaceuticals and agrochemicals, offering a scalable and efficient strategy for industrial implementation.
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