Apricot Kernel Shell Waste Treated With Phosphoric Acid Used as a Green, Metal-Free Catalyst for Hydrogen Generation From Hydrolysis of Sodium Borohydride

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Date

2020

Authors

Ceyhan, Ayhan Abdullah

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Volume Title

Publisher

PERGAMON-ELSEVIER SCIENCE LTD

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Green Open Access

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Abstract

In this study, grinded apricot kernel shell (GAKS) biobased waste was used for the first time as a cost-effective, efficient, green and metal-free catalyst for hydrogen generation from the hydrolysis reaction of sodium borohydride (NaBH4). For the hydrogen production by NaBH4 hydrolysis reaction, GAKS was treated with various acids (HCl, HNO3, CH3COOH, H3PO4), salt (ZnCl2) and base (KOH). As a result, the phosphoric acid (H3PO4) demonstrated better catalytic activity than other chemical agents. The hydrolysis of NaBH4 with the GAKS-catalyst (GAKS(cat)) was studied depending on different parameters such as acid concentration, furnace burning temperature and time, catalyst amount, NaBH4 concentration and hydrolysis reaction temperature. The obtained GAKS(cat) was characterized by ICP-MS, elemental analysis, TGA, XRD, FT-IR, Boehm, TEM and SEM analyses and was evaluated for its catalytic activity in the hydrogen production from the hydrolysis reaction of NaBH4. According to the results, the optimal H3PO4 percentage was found as 15%. The maximum hydrogen generation rate from the hydrolysis of NaBH4 with the GAKS(cat) was calculated as 20,199 mL min(-1) g(cat)(-1) As a result, it can be said that GAKS treated with 15% H3PO4 as a catalyst for hydrogen production is an effective alternative due to its high hydrogen production rate. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

Description

Keywords

Apricot Kernel Shell, Biobased Waste, Hydrogen, Metal-Free Catalyst, Phosphoric Acid, Sodium Borohydride, Ni Nanoparticle Preparation, Co-B Catalysts, Activated Carbon, Highly Efficient, Support Material, H-2 Production, Nabh4 Solution, Hydrochloric-Acid, Pd Nanoparticles, Graphene Oxide

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Fields of Science

02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences

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Q1

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OpenCitations Citation Count
44

Source

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY

Volume

45

Issue

35

Start Page

17104

End Page

17117
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CrossRef : 34

Scopus : 47

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Mendeley Readers : 44

SCOPUS™ Citations

46

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Web of Science™ Citations

42

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