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SOLUTION 1: Energy-Saving Retrofits and Modernization for Motor & Generator Systems

Optimizing motor/generator selection and control systems to resolve failures and obsolescence, thereby achieving energy efficiency, automation, and enhanced productivity in industrial operations.

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High and low voltage motors (synchronous/asynchronous) regulate power via corresponding electrical systems such as excitation systems, variable frequency drives, or soft starters. These are paired with PLC or customized controllers and integrated into instrumentation and control cabinets for automated operation, while power distribution switchgear ensures a stable electricity supply.

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Typical Configuration

Motor Types

Electronic Control Unit (Per Motor)

Quantity

Low-Voltage Asynchronous Motor

Frequency Converter / Soft Starter

1 Set

High/Low-Voltage Synchronous Motor (Electrically Excited)

PLC Instrument System

Excitation System

Frequency Converter / Soft Starter

1 Set

Low-Voltage Synchronous Motor (Permanent Magnet)

Frequency Converter

1 Set

High-Voltage Asynchronous Motor

PLC Instrument System

Excitation System

Frequency Converter / Soft Starter

1 Set

High-Voltage Synchronous Motor (Permanent Magnet)

Frequency Converter

1 Set

Retrofit Supporting Equipment

Motor Pre-Purging System (required for Ex e Motors)

Reactive Power Compensation System

High / Low-Voltage Cabinet

Factory Power Supply & Distribution Equipment

1 Set

Application Scenarios:

· Addressing aging equipment 

· Improving efficiency and automation

· Standardizing new projects

Suitable Industries: for Synchronous Motors

· Chemical Industry: Compressors in synthetic ammonia plants, mixing equipment in coal chemical industry;

· Metallurgical Industry: Mine ball mills, blast furnace blowers;

· Building Materials Industry: Raw material mills in cement plants, forming equipment in ceramic plants;

Motor Control and Switchgear Room Connection Diagram

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Supporting HV/LV Electrical System Schematic

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SOLUTION 2: Power & Voltage Control Systems for Industrial Electric Heating

WDT AC / WZDT DC Voltage Regulators deliver precise control of voltage, current, and power in production processes, replacing traditional fossil fuel heating, lowering energy use and carbon emissions. Suitable for electric heating furnaces, arc furnaces, and similar applications.

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Applicable Industry Scenarios and Typical Configurations

Energy-Intensive Industriy
In China, heavy industry accounts for 90% of the country's industrial heating demand.
This includes the five most energy-intensive sectors: iron and steel, pulp and paper, chemicals, non-metallic minerals, and non-ferrous metals.

Light Industry
Light industry is characterized by lower energy intensity and heating temperature requirements. Its typical processes often utilize steam or high-temperature hot water.
It encompasses a variety of sectors including machinery (37% of China's light industry energy consumption), food (17%), textiles (17%), vehicles (9%), wood processing (2%), as well as mining (10%) and construction (9%).

SOLUTION 3: Electrical Systems for Environmental Protection project

We help industrial clients meet stringent environmental standards by supplying specialized high-voltage power supplies. Our systems power key environmental technologies, including electrostatic precipitation, plasma purification for waste gas, and electrolysis/electrodialysis for wastewater, ensuring compliance and sustainable operations.

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Applicable Scenarios

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Suitable Industries

· Chemical Industry: Coal chemical waste gas treatment, hydrogen production wastewater treatment
· Metallurgical Industry: Blast furnace dust removal, steel rolling wastewater purification
· Building Materials Industry: Dust removal at the kiln inlet of cement plants, waste gas treatment in glass plants
· Energy Industry: Flue gas purification from waste incineration, desulfurization and denitrification in thermal power generation

Applicable Scenarios

· Waste Gas Treatment: Addressing dust and organic pollutants in industrial waste gas (e.g., chemical tail gas, metallurgical sintering fumes).
· Wastewater Purification: Tackling heavy metals and high-concentration organic compounds in wastewater (e.g., coal chemical wastewater, ceramic plant effluent).
· Regulatory Compliance: Helping clients meet strict local environmental emission standards, including ultra-low emission requirements.

SOLUTION 4: Electrical Balance of Plant (eBoP) for Waste Heat Power Generation

We provide comprehensive power generation with eBoP solution designed to transform your industrial waste heat into a valuable and sustainable energy source. Our integrated systems are tailored for waste heat recovery, ensuring maximum efficiency and reliability.

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Scenarios - Waste Heat Power Generation

Industrial Waste Heat Resource Distribution

Industry

Waste Heat Sources

Proportion of Fuel Consumption

Metallurgy

Steel rolling heating furnaces, soaking pits, open hearth furnaces, converters, blast furnaces, roasting kilns, etc.

Over 33%

Chemical

Reaction heat (e.g., physical sensible heat from gas generation, shift gas, syngas); combustible heat (e.g., fuel heat from carbon black tail gas, acetylene gas)

Over 15%

Building Materials

High-temperature flue gas, kiln top cooling, high-temperature products, etc.

Approximately 40%

Glass

Glass furnaces, enamel kilns, crucible kilns, etc.

Approximately 20%

Papermaking

Dryers, digesters, waste gas, black liquor, etc.

Approximately 15%

Textile

Drying machines, sizing machines, boiling furnaces, etc.

Approximately 15%

Machinery

Forging heating furnaces, cupolas, heat treatment furnaces, exhaust from air hammers, etc.

Approximately 15%

Applicable Scenarios

· Rich in high-temperature waste heat resources (e.g., kiln inlet / outlet in cement plants, heating furnaces in metallurgical steel rolling);
· Reducing reliance on fossil fuels while enhancing energy self-sufficiency;
· Qualifying for energy-saving subsidies (e.g., coal-saving incentives and carbon trading benefits).

Suitable Industries

· Chemical: Syngas waste heat (coal chemical), hydrogen production waste heat
· Metallurgy: Blast furnace gas waste heat, soaking furnace waste heat (steel rolling)
· Building Materials: Cement clinker lines, glass melting furnaces
· Energy: Waste incineration, waste heat recovery from thermal power plants

SOLUTION 5: Electrical Balance of Plant (eBoP) for Hydrogen Production

We specialize in delivering robust power and electrical solutions for the hydrogen industry. Our tailored Electrical Balance of Plant (eBoP) packages support various production pathways, from coal and natural gas reforming to By-Products conversion and electrolysis. By ensuring the stability and high efficiency of your operations, our solutions provide a reliable foundation for your hydrogen production goals.

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Comparison of Hydrogen Production Costs

1.Electrolytic Hydrogen Production Cost:
at electricity price of 0.2 CNY/kWh     
Alkaline Water Electrolysis:    
Annual output: 2 million Nm³ | Cost: 18.8 CNY/kgH₂     
PEM Water Electrolysis:     
Annual output: 1 million Nm³ | Cost: 48.9 CNY/kgH₂ 
2.Industrial By-Product Hydrogen Production:    Cost: 12-18 CNY/kgH₂

3.Natural Gas and Coal-Based Hydrogen 
Production:     
Coal-to-Hydrogen: 11.5 CNY/kgH₂     
Natural Gas-to-Hydrogen: 48.9 CNY/kgH₂

Three Methods of Hydrogen Production by Water Electrolysis

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SOLUTION 6: Electrical Balance of Plant (eBoP) for Renewable Energy Power Plants

We provide power and electrical solutions for renewable energy systems, designed to meet the unique challenges of grid integration. Our expertise in generators and Electrical Balance of Plant (eBoP) enables us to enhance grid stability and generation efficiency for projects like solar and hydropower.

Our integrated solutions ensure your renewable energy assets operate at peak performance while complying with strict grid codes. By providing reliable and stable systems, we help you maximize energy output and secure the long-term viability of your renewable energy investment.

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Tower-Type Solar Thermal Molten Salt Power Generation System

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Hydropower Generation System

SOLUTION 7:Electrical Balance of Plant (eBoP) for CCUS(Carbon Capture Utilization Storage)

Our integrated solutions are specifically engineered to power high-load equipment, such as large compressors and pumps, while maintaining a stable and reliable electrical supply. By providing dependable and optimized systems, we help you maximize the operational efficiency of your CCUS facility, reduce energy consumption, and secure the long-term viability of your decarbonization investment.

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Technology Readiness Level (TRL) ranges of the considered CO2 utilisation

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