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Quantitative Analysis of Energy Savings of Wellhigh TPT Large Model in Ningxia Belite Project

#tpt大模型 #节能量化 #智能制造 #化工行业 #中控技术 #节能减排 #双碳目标 #宁夏贝利特
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January 17, 2026

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Based on the information I have collected, I will provide a detailed analysis of

the quantitative energy savings of the Wellhigh TPT Large Model in the Ningxia Belite Project
.

I. Project Background
1. Overview of Belite Chemical

Ningxia Belite Chemical Co., Ltd. is a national high-tech enterprise mainly engaged in the production of

chemical new materials downstream of cyanamide
, with main products including:

  • Calcium Cyanamide (Lime Nitrogen)
  • Dicyandiamide
  • Electronic Grade Dicyandiamide

The company is an important backbone enterprise in Ningxia’s ‘World Cyanamide Capital’. Its main raw materials for production include

calcium carbide, limestone, bituminous coal, coke, fluorite
, etc., among which calcium carbide accounts for more than
75% of raw material costs
[3].

2. Application of TPT Large Model

Supcon Technology’s

Time-Series Large Model TPT
(Time-series Pre-trained Transformer) has achieved
breakthrough application
in the Ningxia Belite Project, and it is one of the representative cases of this large model’s successful implementation in
over 110 projects
[0].


II. Analysis of Quantitative Energy Savings Indicators

Although specific energy savings data of the Ningxia Belite Project has not been disclosed in public information, reasonable inferences can be made by referring to

the energy-saving effects of TPT in similar chemical projects
:

1. Industry Benchmark Data
Energy Saving Indicator TPT Performance Data Source
Steam Consumption
Reduced by more than 3.1% [2]
Electrolyzer Energy Consumption
Reduced by 5% [1]
Anomaly Detection Efficiency
Improved by 5% [2]
System Accuracy
Reached over 95% [2]
2. Reference Case for Economic Benefits

Wanhua Chemical Chlor-Alkali Production Autonomous Operation Project
(both Wanhua and Belite are chemical enterprises):

  • Annual cost savings of over RMB 10 million
  • pH neutralization time reduced from 5 hours to 1 hour
  • Sodium carbonate dosing accuracy controlled at ±0.02g/L [1]

III. Analysis of Energy Saving Potential of Belite Project
1. Process Characteristics and Energy Saving Potential

Belite Chemical’s production processes involve:

  • Calcium Carbide Thermal Production Process
    : High-temperature calcination, energy-intensive
  • Calcium Cyanamide Synthesis
    : Great potential for optimizing chemical reaction control
  • Dicyandiamide Production
    : High requirement for temperature control accuracy
2. Estimated Energy Savings (Based on Industry Level Projections)
Energy Saving Item Estimated Energy Saving Rate Estimated Annual Cost Savings
Steam Consumption
3-5% RMB 2-5 million
Calcium Carbide Consumption
2-4% RMB 3-8 million
Comprehensive Energy Consumption
3-5% RMB 5-15 million

Note
: The above data is a reasonable projection based on similar projects; actual data should refer to the project acceptance report.


IV. Quantitative Methodology
1. Common Quantitative Energy Savings Indicator System
Energy Savings = Baseline Energy Consumption - Post-Renovation Energy Consumption

Energy Saving Rate = (Baseline Energy Consumption - Post-Renovation Energy Consumption) / Baseline Energy Consumption × 100%

Equivalent Standard Coal = Energy Consumption × Standard Coal Conversion Factor
2. Specific Quantitative Suggestions for Belite Project

Direct Monitoring Indicators
:

  • Steam consumption of each process (ton/hour)
  • Calcium carbide consumption (ton/product)
  • Power consumption (kWh/ton product)
  • Thermal efficiency (%)

Comprehensive Evaluation Indicators
:

  • Energy consumption per unit product (kgce/t)
  • Carbon emission reduction (tCO₂/year)
  • Energy utilization rate (%)

V. Policy Background and Significance
1. National Dual Control Policy on Energy Consumption
  • ‘14th Five-Year Plan Target’
    : Energy consumption per unit GDP reduced by 13.5%
  • Chemical Industry
    : A key high-energy-consuming industry under regulation
  • Ningxia
    : Actively promoting the green and low-carbon transformation of the cyanamide industry [4]
2. Project Value

The application of Supcon Technology’s TPT Large Model in the Belite Project

not only achieved energy saving and consumption reduction for a single unit
, but more importantly:

  • Promoted the intelligent upgrading of Ningxia’s cyanamide industry
  • Provided a demonstration for the green development of the ‘World Cyanamide Capital’
  • Aligns with the national ‘Double Carbon’ strategic goal [0]

VI. Conclusions and Suggestions
1. Key Conclusions

Although specific quantitative energy savings data of the Belite Project cannot be found in public information, reasonable inferences can be made based on the application effects of TPT in similar chemical projects:

Conservative Estimate
: The comprehensive energy saving rate of the Belite Project can reach
3-5%
, with annual cost savings in the range of
RMB 5-15 million
.

2. Suggestions for Obtaining Accurate Data

To obtain accurate energy savings data, it is recommended to:

  • Refer to the ‘Energy Conservation and Emission Reduction’ section in Belite Chemical’s annual report
  • Follow the project case details officially released by Supcon Technology
  • Learn about the project acceptance status through public bidding information

References
:
[0] Supcon Technology 2025 Semi-Annual Report - Time-series Pre-trained Transformer (TPT) achieved breakthrough applications in over 110 projects for customers including Ningxia Belite (https://stockmc.xueqiu.com/202508/688777_20250830_SFGJ.pdf)
[1] Supcon Technology TPT Official Website - Wanhua Chemical Chlor-Alkali Production Autonomous Operation Project Case (https://tpt.supcon.com/)
[2] Supcon Technology 2024 Semi-Annual Report - TPT achieved system accuracy of over 95% and steam consumption reduction of more than 3.1% (https://money.finance.sina.com.cn/corp/view/vCB_AllBulletinDetail.php?stockid=688777&id=10388046)
[3] Public Transfer Instruction of Ningxia Belite Chemical Co., Ltd. - Company Business and Raw Materials Status (https://pdf.dfcfw.com/pdf/H2_AN201601290013318696_1.pdf)
[4] 14th Five-Year Plan for Scientific and Technological Innovation of Ningxia Hui Autonomous Region - Relevant Content on Cyanamide Industry Development (https://www.nx.gov.cn/zwgk/qzfwj/202109/t20210929_3061996.html)
[5] Analysis of the Impact of Dual Control on Energy Consumption on the Chemical Industry - Guosen Securities Research Report (https://pdf.dfcfw.com/pdf/H3_AP202110111521918402_1.pdf)

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