化工学报
化工學報
화공학보
CIESC Jorunal
2015年
9期
3580-3587
,共8页
关国强%唐凯%李红%卢帅涛%江燕斌
關國彊%唐凱%李紅%盧帥濤%江燕斌
관국강%당개%리홍%로수도%강연빈
扑热息痛%结晶%衰减全反射紫外光谱%偏最小二乘法%实时浓度%粒度分布%控制
撲熱息痛%結晶%衰減全反射紫外光譜%偏最小二乘法%實時濃度%粒度分佈%控製
복열식통%결정%쇠감전반사자외광보%편최소이승법%실시농도%립도분포%공제
paracetamol%crystallization%ATR-UV%partial least squares method%in-situ concentration%size distribution%control
以无水乙醇-扑热息痛为模型物体系,对基于衰减全反射紫外光谱(ATR-UV)分析的结晶过程实时浓度检测进行了研究.采用偏最小二乘法进行结晶过程浓度关联,建立了 ATR-UV 实时浓度检测模型,该模型实时分析结果与重量法测量结果一致,均方根平均偏差为 0.0075.通过 ATR-UV 实时浓度分析关联结晶过程的过饱和度变化,并结合聚焦光束反射测量技术分析了不同降温方式对结晶产品的影响.结果表明:相对于自然冷却和线性冷却温度控制方式,受控冷却过程能获得尺寸更大、分布更均一的晶体产品.
以無水乙醇-撲熱息痛為模型物體繫,對基于衰減全反射紫外光譜(ATR-UV)分析的結晶過程實時濃度檢測進行瞭研究.採用偏最小二乘法進行結晶過程濃度關聯,建立瞭 ATR-UV 實時濃度檢測模型,該模型實時分析結果與重量法測量結果一緻,均方根平均偏差為 0.0075.通過 ATR-UV 實時濃度分析關聯結晶過程的過飽和度變化,併結閤聚焦光束反射測量技術分析瞭不同降溫方式對結晶產品的影響.結果錶明:相對于自然冷卻和線性冷卻溫度控製方式,受控冷卻過程能穫得呎吋更大、分佈更均一的晶體產品.
이무수을순-복열식통위모형물체계,대기우쇠감전반사자외광보(ATR-UV)분석적결정과정실시농도검측진행료연구.채용편최소이승법진행결정과정농도관련,건립료 ATR-UV 실시농도검측모형,해모형실시분석결과여중량법측량결과일치,균방근평균편차위 0.0075.통과 ATR-UV 실시농도분석관련결정과정적과포화도변화,병결합취초광속반사측량기술분석료불동강온방식대결정산품적영향.결과표명:상대우자연냉각화선성냉각온도공제방식,수공냉각과정능획득척촌경대、분포경균일적정체산품.
Real-time concentration determination is critical in process analytical technology for advance quality control of crystallization. A novel approach is presented to correlate in-situ concentration of paracetamol in ethanol solution with the attenuated total reflection/ultraviolet (ATR-UV) spectrum by using the partial least squares method. The correlated concentrations are well consistent with the measurement of gravimetric method and the root-mean-square derivation is found to be 0.0075. Supersaturation correlation based on the developed ATR-UV in-situ concentration measurement, coupled with focused beam reflection measurement for monitoring the nucleation and growth during crystallization procedure, is utilized to investigate the effect of three cooling policies on cooling crystallization, i.e., natural cooling policy (NCP), linear cooling policy (LCP) and control cooling policy (CCP). The results show that the CCP has advantages over NCP and LCP in producing more crystals with the large and well-distributed crystal sizes.