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Assessment of the polygeneration approach in wastewater treatment plants for enhanced energy efficiency and green hydrogen/ammonia production

delete2024-12-01
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PRE
AI
M
Mohammad Alrbai *
S
Sameer Al‐Dahidi
L
Loiy Al‐Ghussain *
B
Bashar Shboul
H
Hassan Hayajneh
A
Ali Alahmer
DOI:10.1016/j.psep.2024.10.077delete
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Abstract

Abstract

En 中文
Wastewater treatment plants (WWTPs) offer opportunities to optimize resource utilization and enhance energy efficiency. This study provides a comprehensive analysis of using the polygeneration approach in WWTPs to reduce grid energy dependence, optimize energy distribution, and utilize surplus energy for hydrogen (H2) and ammonia (NH3) production. Several models were employed, including photovoltaic (PV) cells, parabolic trough collectors (PTCs), steam methane reforming, and polymer electrolyte membranes, to assess the feasibility of this approach. Three scenarios were evaluated and compared: Scenario 1 (Baseline) represents the current situation, Scenario 2 maximizes the Net Present Value (NPV), and Scenario 3 minimizes NH3 production costs. Real data from As-Samra WWTP in Jordan was used to accurately assess the feasibility of each scenario. The results show that Scenario 2 offers the highest profitability and efficiency, with a NPV of 87.48 million USD and an annual NH3 production of 15,417 tons, reducing both grid dependency and biogas fuel consumption. Both Scenarios 2 and 3 demonstrate the ability to meet thermal demands efficiently while generating significant revenue from NH3 production. Scenario 3, in particular, achieves competitive H2 and NH3 production costs. Environmentally, Scenario 2 significantly reduces annual greenhouse gas emissions by 12.66 kilotons of CO2eq, with near-zero carbon intensity for thermal energy due to solar reliance. In conclusion, the polygeneration approach offers a promising pathway for WWTPs to achieve greater sustainability, economic gains, and reduced environmental impact, providing valuable insights for decision-makers.
Keywords:
Wastewater treatment plants
Polygeneration system
Hydrogen and ammonia production
Renewable energy integration
Economic viability

Journal

Process Safety and Environmental Protection cover
Process Safety and Environmental Protection
IF:
7.8
Papers:
9.4K
Citations:
3.8W

Organization

A
Argonne National Laboratory
Scholars:
1.1W
Papers: 9.2K
Citations: 3.8W
Tuskegee University cover
Tuskegee University
Scholars:
776
Papers: 510
Citations: 650
U
united states department of energy (doe)
Scholars:
11.2W
Papers: 9.6W
Citations: 246
G
german-jordanian university
Scholars:
601
Papers: 675
Citations: 2
A
Al al-Bayt University
Scholars:
477
Papers: 517
Citations: 538
U
university of jordan
Scholars:
5.4K
Papers: 4.0K
Citations: 3
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