About: Continuous distillation is a research topic. Over the lifetime, 2573 publications have been published within this topic receiving 28811 citations.
TL;DR: Continuous distillation - separation of binary mixtures continuous distillation- separation of multi-component mixtures batch distillation steam distillation/stripping design of tray columns solvent recovery air stripping liquid liquid extraction commercial liquid-liquid extraction decantation ion exchange separations activated carbon systems for separations of liquid dialysis and electodialysisi parametrc pumping high-pressure liquid chromatographic separations commercial coalescers membrane filtration evaporation crystallization from solutions foam separation processes gas phase absorption design of gas absorption towers mass transfer using fuidized bed techniques fil
Abstract: Continuous distillation - separation of binary mixtures continuous distillation - separation of multi-component mixtures batch distillation steam distillation/stripping design of tray columns solvent recovery air stripping liquid-liquid extraction commercial liquid-liquid extraction decantation ion exchange separations activated carbon systems for separations of liquid dialysis and electodialysisi parametrc pumping high-pressure liquid chromatographic separations commercial coalescers membrane filtration evaporation crystallization from solutions foam separation processes gas phase absorption design of gas absorption towers mass transfer using fuidized bed techniques filtration theory flter-aid filtration batch filtration continuous filtration centrifugation cartridge filtration felt stainer bags sedimantation hydroclone separation drying of wet solids and solids in liquid leaching flotation melt crystallization solid-solid separations gas-solid separations electrostatic precipitators dust collectors, application and design and air separartion barrier filtration of hot gas.
TL;DR: In this article, the authors proposed novel distillation technologies for enhanced bioethanol dehydration, by extending the use of dividing-wall columns (DWC) to energy efficient extractive distillation (ED) and azeotropic distillation(AD).
TL;DR: In this article, the authors summarized some of the important aspects of the steady-state operation, dynamics and control of continuous distillation columns, focusing on two-product columns separating relatively ideal binary mixtures.
Abstract: The paper summarizes some of the important aspects of the steady-state operation, dynamics and control of continuous distillation columns. The treatment is mainly limited to two-product distillation columns separating relatively ideal binary mixtures.
TL;DR: In this paper, a KDL5 molecular distillation system was used to separate bio-oil, which came from a bench-scale fluidized-bed fast pyrolysis reactor at a feeding rate of 1 kg/h.