Literature DB >> 35636597

Membrane based reactors for sustainable treatment of Coronopus didymus L. by developing Iodine doped potassium oxide Catalyst under Dynamic conditions.

Bisha Chaudhry1, Muhammad Saeed Akhtar2, Mushtaq Ahmad1, Mamoona Munir3, Muhammad Zafar1, Nawaf S Alhajeri4, Ala'a H Al-Muhtaseb5, Zubair Ahmad6, Mudassir Hasan7, Awais Bokhari8.   

Abstract

Green nano-technology together with the availability of eco-friendly and alternative sources are the promising candidates to combat environment deteriorations and energy clutches globally. The current work focuses on the synthesis and application of newly synthesized nano catalyst of Iodine doped Potassium oxide I (K2O) for producing sustainable biodiesel from novel non-edible seed oils of Coronopus didymus L. using membrane based contactor to avoid emulsification and phase separation issues. Highest biodiesel yield (97.03%) was obtained under optimum conditions of 12:1 methanol to oil ratio, reaction temperature of 65 °C for 150 min with the 1.0 wt% catalyst concentration. The lately synthesized, environment friendly and recyclable Iodine doped Potassium oxide K (IO)2 catalyst was synthesized via chemical method followed by characterization via advanced techniques including EDX, XRD, FTIR and SEM analysis. The catalyst was proved to be stable and efficient with the reusability of five times in transesterification reaction. These analysis have reported the sustainability, stability and good quality of biodiesel from seed oil of Coronopus didymus L. using efficient Iodine doped potassium oxide catalyst. Thus, non-edible, environment friendly and novel Coronopus didymus L. seeds and their extracted oil along with Iodine doped potassium oxide catalyst seems to be highly affective, sustainable and better alternative source to the future biodiesel industry. Also, by altering the reaction equilibrium and lowering the purification phases of the process, these studies show the potential of coupling transesterification and a membrane contactor.
Copyright © 2022 Elsevier Ltd. All rights reserved.

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Keywords:  Catalyst; Membrane; Non-edible oil seeds; Reusability; Sustainable development

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Year:  2022        PMID: 35636597     DOI: 10.1016/j.chemosphere.2022.135138

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  1 in total

1.  Biodiesel Production Using Wild Apricot (Prunus aitchisonii) Seed Oil via Heterogeneous Catalysts.

Authors:  Batool Nisa; Fazal Ullah; Iqbal Nisa; Mushtaq Ahmad; Muhammad Zafar; Mamoona Munir; Shazia Sultana; Wajid Zaman; Hakim Manghwar; Farman Ullah; Muhammad Nauman Khan; Diaa O El-Ansary; Hosam O Elansary
Journal:  Molecules       Date:  2022-07-25       Impact factor: 4.927

  1 in total

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