EventsThe 22nd International Electronic Conference on Synthetic Organic Chemistry
Published
This submission belongs to the session C. General Organic Synthesis of the event The 22nd International Electronic Conference on Synthetic Organic Chemistry
Published date
14 Nov, 2018
Citation
Thies Thiemann, Fatima Sbait Wahshi, Maitha Dhaiman Alqahtani, Manhal Abdulla, Abdullah Al-Hemyari, Muna Bufaroosha, Tholkappiyan Ramachandran, Fathalla Hamed, Our experience of using thermally recycled silica gel in a research laboratory setting, in Proceedings of The 22nd International Electronic Conference on Synthetic Organic Chemistry, 15 November–15 December 2018, MDPI: Basel, Switzerland, doi: 10.3390/ecsoc-22-05696
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Our experience of using thermally recycled silica gel in a research laboratory setting

Fatima Sbait Wahshi 1
Maitha Dhaiman Alqahtani 1
Manhal Abdulla 1
Tholkappiyan Ramachandran 2
1. Department of Chemistry, UAE University
2. Department of Physics, United Arab Emirates University
3. Department of Chemistry, United Arab Emirates University
Abstract

Organic synthetic research laboratories generate a large amount of waste. Some of the waste is the silica gel used as the stationary phase in column chromatographic separations. Here, the authors discuss the possibility of recycling silica gel wastes thermally at 600 oC, at which temperature the remnant adsorbed organic material combusts. It could be shown that the recycled silica gel maintains its adsorption characteristics. The process could be repeated 10 times with any discernable deterioration of the separation properties of the silica gel. In those cases where triphenyl oxide remained on the silica gel after the separation of the reaction mixture, such as after Wittig olefination and Appel-type reactions, an increase of phosphorus content was noted in the silica gel after thermal treatment. The original and recycled silica gel was partly analyzed by scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy(EDS) and in inductively coupled plasma - optical emission spectroscopy (ICP-OES). The process significantly reduced waste production in our laboratory and also led to a reduction in costs associated with acquiring new silica gel and with the management and the disposal of spent silica gel. A simple environmental impact assessment has been carried out.

Keywords
silica gel
chemical waste
column chromatography
thermolysis
environmental impact assessment
Manuscript
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