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Case15

 

Key Metrics:

​Installed Capacity: 250.8 kW

​PV Area: 1,230 m²

​First-Year Generation: 266,000 kWh

​30-Year CO₂ Reduction: 6,060 tons (equivalent to planting ​54,596 trees)

(MECC is the professional and reliable manufacturer and suppllier of 

Solar Energy System and off grid and hybrid solar energy storage system 

for Residential and Commercial application.

We can provide EU standard and US Standard Solar Energy Storage System.)

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Project Description

The ​Yangshan Elderly Care Home PV Project in Suzhou represents the city's first charitable photovoltaic initiative for poverty alleviation. This pioneering project applies solar technology to social welfare by:

Implementing ​**"self-consumption with grid feed-in"** energy model

Supporting the transition from ​basic elderly care to ​enhanced senior living

Combining ​sustainable development with ​social responsibility

 

 

Project Summary

​Social Welfare Focus:

Designed specifically for ​charitable elderly care applications

Prioritizes ​safety and reliability for vulnerable users

​Technical Implementation:

​Non-intrusive installation preserving building integrity

​Smart energy management for optimal self-consumption

​Low-maintenance design suitable for care facilities

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Conclusion

This project demonstrates how MECC's solutions can:
✔ Combine ​renewable energy with ​social welfare initiatives
✔ Improve ​quality of life for elderly residents
✔ Create a ​sustainable model for charitable institutions

The system represents an innovative ​integration of technology and social good.

 

 

 
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125KW 241kWh Battery Energy Storage System Cabinet

 

The BESS 125KW 241kWh Lithium Battery Energy Storage Cabinet is a high-power, large-capacity integrated energy storage solution engineered for medium-to-large commercial, industrial, and utility-scale applications. It integrates a 125kW high-performance bidirectional inverter, a 241kWh lithium iron phosphate (LiFePO4) battery bank, and a full-featured intelligent energy management system (EMS) into a modular cabinet design. This system enables efficient renewable energy storage, peak shaving, load shifting, grid frequency regulation, and emergency backup power supply. Ideal for large factories, shopping malls, industrial parks, utility-scale solar/wind farms, and microgrids, it enhances energy independence, reduces high grid demand charges, and supports the stable integration of high-penetration renewable energy into the grid.

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