制药工业
工艺工程
连续生产
活性成分
医药制造业
过程(计算)
中试装置
生化工程
产量(工程)
生产力
生产(经济)
制药工业
放大
过程开发
计算机科学
比例(比率)
精细化工
工作(物理)
催化作用
制药技术
纳米技术
钥匙(锁)
反应堆设计
环境科学
化学
滴流床反应器
剂型
化学工业
业务
石油化工
设计质量
作者
Onkar N. Manjrekar,Gregory Storer,Brian Kotecki,Bradley Greiner,Moiz Diwan
标识
DOI:10.1021/acs.oprd.5c00499
摘要
Abstract There is a growing trend in the pharmaceutical industry toward the adoption of continuous processing for the synthesis of active pharmaceutical ingredients (APIs) and intermediates. This enables access to novel synthetic routes by operating at high temperatures and high pressures. Hydrogenation is a key transformation that particularly benefits from continuous processing, offering enhanced volumetric productivity and improved safety profiles. This study presents the development and scale-up of a continuous hydrogenation process, progressing from bench scale to pilot plant operation while addressing challenges associated with material limitations. The scale-up achieved a production rate of 12 kg/day for a pharmaceutical intermediate, with online HPLC employed for real-time process monitoring at both scales. Additionally, this work offers a strategic framework for catalyst selection in continuous hydrogenation and provides a scale-up methodology that can be readily applied when material constraints are present in pharmaceutical manufacturing.
科研通智能强力驱动
Strongly Powered by AbleSci AI