Conversion of municipals waste into syngas and methanol via steam gasification using CaO as sorbent: An Aspen Plus modelling

Author:

Ali Arshid Mahmood,Shahbaz Muhammad,Inayat Muddasser,Shahzad Khurram,Al-Zahrani Abdulrahim Ahmad,Mahpudz Aishah Binti

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference55 articles.

1. Biohydrogen production from biomass sources: metabolic pathways and economic analysis;Ahmed;Front Energy Res,2021

2. Outlooks, explorations and normative scenarios: approaches to global energy futures compared;Skea;Technol Forecast Soc Chang,2021

3. Application of response surface methodology in catalytic co-gasification of palm wastes for bioenergy conversion using mineral catalysts;Inayat;Biomass Bioenergy,2020

4. An argument for developing waste-to-energy technologies in Saudi Arabia;Nizami;Chem Eng Trans,2015

5. Arabia KS. Energy & Sustainability; 2021. Available from: https://www.vision2030.gov.sa/thekingdom/explore/energy/. [Accessed 25.02.2022.

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