Donnan Dialysis-Osmotic Distillation (DD-OD) Hybrid Process for Selective Ammonium Recovery Driven by Waste Alkali

Author(s):  
Cong Chen ◽  
Minyuan Han ◽  
Jingmei Yao ◽  
Yue Zhi ◽  
Yuanyuan Liu ◽  
...  
Desalination ◽  
2002 ◽  
Vol 145 (1-3) ◽  
pp. 287-291 ◽  
Author(s):  
Hocine Garmes ◽  
Françoise Persin ◽  
Jacqueline Sandeaux ◽  
Gérald Pourcelly ◽  
Mohamed Mountadar

2019 ◽  
Vol 80 (1) ◽  
pp. 117-125 ◽  
Author(s):  
Ikhlass Marzouk Trifi ◽  
Beyram Trifi ◽  
Sirine Ben Ayed ◽  
Béchir Hamrouni

Abstract In this study the removal of phosphates from solution by Donnan dialysis and by adsorption onto calcium alginate beads were studied separately and then together. This hybrid process was conducted in order to benefit from each process, and it is an original and new combination. First, the Donnan dialysis process was performed with different parameters: the type of counter-ion, the concentration of the counter-ion, the initial phosphate concentration, the pH of the solution and the choice of anion-exchange membranes. Donnan dialysis achieved 68% and 12.5% phosphorus removal with AMX and AFN membranes respectively. Then a preliminary study into the adsorption of phosphate onto calcium alginate beads was carried out. A full factor design was applied in order to determine the effect of the main parameters and their mutual interactions for the adsorption process. The removal of phosphate onto calcium alginate beads reached 82.5%. Finally, coupling Donnan dialysis with adsorption onto calcium alginate beads for the removal of phosphate reached 89.5% with the AMX membrane. This hybrid process can be considered to be a solution for improving the contact time and for enhancing the removal of phosphate by 10% compared to adsorption onto calcium alginate.


Desalination ◽  
2021 ◽  
Vol 507 ◽  
pp. 114938
Author(s):  
Yangbo Qiu ◽  
Yayue Lv ◽  
Cong Tang ◽  
Junbin Liao ◽  
Huimin Ruan ◽  
...  

Author(s):  
Mehadi Aman ◽  
Yujiro Takeda ◽  
Kazuatsu Ito ◽  
Kaoru Yamamoto ◽  
Kohei Tanaka ◽  
...  

Author(s):  
Tamás Hergert ◽  
Béla Mátravölgyi ◽  
Róbert Örkényi ◽  
János Éles ◽  
Ferenc Faigl

AbstractA three-step batch-flow hybrid process has been developed for an expeditious synthesis of the enynol key intermediate of antifungal terbinafine. This procedure involves consecutive organometallic steps without the necessity of any in-line purification: after a metalation by n-butyllithium, a selective addition of the lithium salt was elaborated followed by a Grignard reaction resulting in a high yield of 6,6-dimethylhept-1-en-4-yn-3-ol. Moreover, as an alternative to tetrahydrofuran, cyclopentyl methyl ether was used as solvent implementing a safe, sustainable, yet selective synthetic process. Even on a laboratory-scale, the optimized batch-flow hybrid process had a theoretical throughput of 41 g/h. Furthermore, the newly developed process provides an efficient synthesis route to the key-intermediate, while making acrolein obsolete, minimizing side-products, and enabling safe and convenient scale-up.


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