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Kimou Environmental: Leading Sustainable Development in Parks through Robust ESG Practices

Kimou Environmental: Leading Sustainable Development in Parks through Robust ESG Practices

  • Categories:Company News
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  • Time of issue:2025-03-03
  • Views:155

(Summary description)Recently, the Tianjin park under the Kimou Environmental Group was awarded a green power consumption certificate by a national authoritative institution.

Kimou Environmental: Leading Sustainable Development in Parks through Robust ESG Practices

(Summary description)Recently, the Tianjin park under the Kimou Environmental Group was awarded a green power consumption certificate by a national authoritative institution.

  • Categories:Company News
  • Author:
  • Origin:
  • Time of issue:2025-03-03
  • Views:155

Recently, the Tianjin park under the Kimou Environmental Group was awarded a green power consumption certificate by a national authoritative institution. This is not only a significant achievement in the group's implementation of the "dual carbon" goals, but also an important reflection of the group's full commitment to the ESG (environment, social, and governance) sustainable development strategy.

Key Measures for Sustainable Development

In response to the national strategy of carbon peak and carbon neutrality, the group has incorporated the "dual carbon" goals into its strategic development plan. The group has established a dual carbon promotion committee, set the "1+2+N" green and low-carbon development goals, and formulated and released relevant implementation plans. Under the leadership of the group, all parks have worked together and adopted a dual-driven model of "technological innovation + management optimization." They have clarified the annual targets and measures, and have effectively implemented the green and low-carbon concept from multiple dimensions, including energy, resources, environmental protection, construction, and management, achieving remarkable carbon reduction results.

Significant Energy Conservation and Carbon Reduction

By constructing a rooftop distributed photovoltaic power generation project (with a total installed capacity of 27 megawatts), the annual power generation exceeds 25.33 million kilowatt-hours, which can meet the demand for clean electricity production. This results in an annual reduction of over 22,500 tons of carbon dioxide emissions and a saving of 7,600 tons of standard coal. Additionally, a pilot project for green new power storage (with an annual power generation of 830,000 kilowatt-hours) has been implemented to achieve efficient energy allocation and significantly improve energy utilization efficiency, reducing carbon dioxide emissions by over 600 tons per year.

Efficient Resource Utilization

Advanced resource recovery and recycling technologies, such as nano-resin adsorption, UF+RO membrane concentration, and advanced oxidation, are employed for in-depth wastewater treatment. This reduces the use of fresh water, with a reclaimed water reuse rate of over 60%, achieving efficient and low-carbon operation of water resource recycling.

Innovative Pollution Reduction and Efficiency Improvement

Upgraded processes for pollutant reduction and resource recovery, combined with the introduction of low-carbon development concepts, have formed a closed loop of "reduction-utilization-recycling." Green alternatives for production chemicals are implemented to reduce pollutant emissions at the source. High-energy-consuming equipment, such as fans and pump sets, has been phased out and replaced to reduce energy consumption and maintenance frequency, achieving energy savings of over 30%. Valuable metals are recovered from wastewater and sludge, reducing the generation of hazardous waste and turning waste into valuable resources.

Green Supply Chain Collaboration

A green supplier database has been established to advocate carbon reduction from the source. The procurement and use of green, clean, low-toxicity, and non-toxic raw materials, such as low-COD and phosphorus-free degreasing powders, are promoted. This collaborative effort aims to reduce the carbon emission intensity of the entire industrial chain and achieve carbon reduction throughout the product life cycle.

Energy Structure Optimization

Gas-fired boilers have replaced traditional coal-fired boilers, reducing CO₂ emissions through the use of clean energy while also lowering the emission concentrations of NOx, SO₂, and particulate matter. Combined with optimized thermal system design, this has significantly improved steam generation efficiency and reduced steam pipeline loss rates to below 5%. The proportion of renewable energy used has been increased. In 2024, the Tianjin park consumed 1,000 MWh of wind power, and it is expected to consume 3,000 MWh in 2025, which will result in an annual reduction of over 2,000 tons of carbon dioxide emissions and bring significant green environmental benefits.

The "Green Power Consumption Certificate" is not only a testament to the group's low-carbon practices but also a symbol of its environmental responsibility and commitment. In the future, the group will continue to lead dual carbon actions with a green development philosophy, set industry benchmarks for sustainable development, adhere to green value creation, and actively fulfill its responsibilities in environmental, social, and governance (ESG) aspects.

 

Green Power Consumption Certificate

A certificate issued by an authoritative institution to identify the amount of renewable energy consumed by power users. It is traceable through a unique code and directly linked to a company's carbon reduction contributions. It helps achieve "dual carbon" goals and serves as an important quantitative basis for corporate green transformation under the ESG (environment, social, governance) framework, promoting sustainable value development.

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