Project Overview
· Location:Morocco
· Capacity:250 kW
· Installation Time:Oct 3, 2025
· Rooftop Type:Metal / Steel Sheet Rooftop
· System Type:Grid-Tied / On-Grid System
Project Background
As a leader in renewable energy development in North Africa, Morocco boasts abundant solar resources and clear national energy transition targets. The client, a local manufacturing enterprise, faced rising industrial electricity costs and stringent carbon footprint requirements from European supply chains. They decided to utilize theirmetal sheet rooftopfor a solar power plant.Singfo Solar, with proven overseas project delivery experience, reliable product quality, and extensive expertise in metal rooftop installations, earned the client’s trust and provided a turnkey solar solution.
Singfo Solar Solution
Considering themetal sheet rooftopstructure and Morocco’s solar irradiation conditions, we designed a customized250kW On-Grid Systemunder the "self-consumption with surplus feed-in" model to maximize returns:
-High-Efficiency Modules:Selected high-power monocrystalline silicon modules to maximize power density within the limited metal rooftop area.
-Metal Rooftop Installation Solution:Adoptedspecialized clamps + non-penetrating fasteningtechnique, securely fixing the mounting system to the ridges of the metal sheets without penetrating the existing roof structure, ensuring waterproof integrity and structural safety. The mounting system was rigorously calculated for wind loads to suit local climate conditions.
-Lightweight Design:Utilized lightweight mounting materials and modules to minimize additional load on the metal rooftop, ensuring long-term operational safety.
-Localized Grid Integration:Inverters and grid-connection equipment were selected and commissioned in strict compliance with Morocco’s national grid standards, ensuring smooth integration and safe operation.
-Smart Monitoring System:Deployed a remote intelligent monitoring platform, allowing the client to track real-time generation, emission reduction data, and system status for digital O&M management.
Environmental & Economic Impact
Commissioned in October 2025, the system is expected to deliver significant economic and environmental benefits:
-Annual Output:Approximately350,000 kWh(estimated based on Morocco’s average effective solar irradiation of about 1,400 hours per year).
-Emission Reduction:Saves about115 tonsof standard coal and reduces CO₂ emissions by approximately290 tonsannually, equivalent to planting16,000 trees.
-Economic Benefit:Based on local industrial electricity prices and surplus feed-in revenue in Morocco, the payback period is estimated at5–6 years, with over 20 years of low-cost green power remaining. Additionally, the project helps the client meet carbon footprint compliance requirements for European supply chains, enhancing export competitiveness.
-Demonstration Value:As a typical metal rooftop C&I project in Morocco, this case serves as a replicable installation model for similar enterprises in the region.
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