Recently, the Department of Standards and Technology Management of the State Administration of Market Supervision and Administration issued a circular on the issuance of the Guidelines for the Construction of Carbon Neutralization Standard System for Carbon Peak. This guideline is formulated to speed up the construction of a carbon peak carbon neutralization standard system with reasonable structure, clear hierarchy and high quality development of economy and society.
hydrogen energy, we should focus on improving the technical standards of the whole industry chain, speeding up the revision of basic general standards such as hydrogen fuel quality and hydrogen energy detection, hydrogen and hydrogen system safety and risk assessment standards, hydrogen sealing, hydrogen-facing materials, hydrogen leakage detection and explosion-proof suppression, hydrogen safety discharge standards, hydrogen supply mother stations, oil, gas and hydrogen. Standards for electrolytic water hydrogen production system and its key components, standards for refinery hydrogen preparation and testing, standards for hydrogen storage and transportation of hydrogen liquefaction equipment and liquid hydrogen storage vessels, high-pressure gaseous hydrogen transportation, pure hydrogen/hydrogen-doped pipelines, standards for hydrogen station system and its key technologies and equipment, and technical standards for hydrogen energy application in fuel cells, metallurgy and other fields.
National Standards Committee National Development and Reform Commission Ministry of Industry and Information Technology
Ministry of Natural Resources Ministry of Ecology and Environment Ministry of Housing and Urban-Rural Development
Ministry of Transport People's Bank of China China Meteorological Administration
National Energy Administration National Forestry and Grass Administration In order to implement the major strategic decision of the Party Central Committee and the State Council on carbon peak and carbon neutralization, the Guidelines for
the Construction of Carbon Peak and Carbon Neutralization Standard System on April 1
,
2023 are to implement the National Standardization Development Outline in depth. In accordance with the relevant requirements of the Implementation Plan for Establishing and Improving the Standard Measurement System for Carbon Neutralization of Carbon Peak, this guideline is formulated to speed up the construction of a standard system for carbon neutralization of carbon peak with reasonable structure, clear hierarchy and high quality development of economy and society.
1. General requirements
(1) Guided by Xi Jinping Thought on Socialism with Chinese Characteristics for a New Era, the guiding ideology
comprehensively implements the spirit of the 20th National Congress of the Communist Party of China, thoroughly practices the thought of ecological civilization of Xi Jinping, bases itself on the new stage of development, completely, accurately and comprehensively implements the new development concept, and strives to build a well-off society in an all-round way. Accelerate the construction of a new development pattern, adhere to the concept of system, highlight the top-level design of standards, strengthen the effective supply of standards, pay attention to the benefits of standard implementation, promote domestic and international standards as a whole, continue to improve the standard system, and strive to contribute to the standardization of carbon peak and carbon neutralization.
(2) The basic principle
is to adhere to the system layout. Strengthen top-level design, optimize the dual structure of standards promulgated by the government and independently formulated by the market, strengthen cross-industry and cross-domain standards coordination, enhance the applicability and effectiveness of standards, and achieve the convergence and matching of various standards at all levels.
Insist on highlighting the key points. Speed up the improvement of basic general standards. Focus on key areas and key industries, and strengthen the revision of energy conservation and carbon reduction standards. The achievements of carbon neutralization technology innovation will be transformed into standards in time to promote green development through scientific and technological innovation.
Insist on steady progress. Anchoring the short-term goals and long-term development needs of carbon peak and carbon neutralization, speeding up the updating and upgrading of standards, firmly promoting the development of standards, adhering to the combination of systematic promotion and urgent use first, and implementing them in an orderly and stable manner step by step on an annual basis.
Adhere to openness and integration. We will firmly promote international exchanges and cooperation in standardization, actively participate in the formulation of international standards and rules, strengthen the overall planning of international standardization work, increase the promotion of Chinese standards abroad, and promote domestic and international coordination.
(3) The main goal
is to basically build a carbon peak and carbon neutralization standard system around the basic general standards, as well as the development needs of carbon emission reduction, carbon removal and carbon market. By 2025, no less than 1000 national and industrial standards (including foreign versions) will be revised, and the consistency with international standards will be significantly improved. Carbon accounting and verification standards for major industries will be fully covered, and energy consumption and efficiency standards for key industries and products will be steadily improved. Substantive participation in green low-carbon related international standards is not less than 30, and the level of green low-carbon international standardization has been significantly improved.
2. Standard system framework
Carbon peak carbon neutralization standard system includes four first-level sub-systems, namely, basic general standard sub-system, carbon emission reduction standard sub-system, carbon removal standard sub-system and market-oriented mechanism standard sub-system, which are further subdivided into 15 second-level sub-systems and 63 third-level sub-systems. The system covers key industries and fields such as energy, industry, transportation, urban and rural construction, water conservancy, agriculture and rural areas, forestry and grassland, finance, public institutions and residents'lives, and meets the application of various scenarios such as regions, industries, parks and organizations. This standard system is dynamically adjusted according to the development needs.
3. Key construction contents
of standards (1) Basic general standard subsystem
1.2
. Formulate and revise regional carbon emission accounting and reporting standards for regions, parks and other regions. We will accelerate the formulation and revision of carbon emission accounting and reporting standards for enterprises in key industries such as energy, metallurgy, building materials, chemical industry, non-ferrous metals, textiles, machinery, information and communications, transportation, livestock and poultry breeding, as well as relevant standards and norms for data quality. We will improve the carbon emission reduction assessment standards for typical projects such as energy efficiency improvement, renewable energy utilization, raw material and fuel substitution, waste energy utilization, biological marine forest and grass soil carbon sequestration, and livestock and poultry breeding. Develop general standards such as product carbon footprint quantification and category rules, and explore the formulation of carbon emission accounting and carbon footprint standards for key products. To formulate and revise basic common standards for carbon emission verification procedures, personnel and institutions.
3.
(2) Carbon emission reduction standard subsystem
1. Adhere to the coordination of pollution reduction and carbon reduction, the combination of source and end, and give full play to the role of standard inversion, optimization, adjustment and promotion. To meet the international advanced standards, we will upgrade the mandatory energy efficiency standards for key products and equipment such as household appliances, heating equipment for rural residents, refrigeration and cold chain logistics equipment, industrial equipment, lighting products, data centers, new and renewable energy equipment, and machinery manufacturing equipment. We will accelerate the improvement of standards for energy consumption calculation, energy efficiency testing, energy conservation assessment, energy conservation acceptance and energy audit, which are compatible with mandatory energy conservation standards.
We will accelerate the formulation of basic standards for energy-saving design planning, energy balance calculation, energy management system, energy performance evaluation, economic operation, rational energy use, energy-saving diagnosis, energy-saving services, and evaluation of green and conservation-oriented organizations. We will improve common energy-saving technical standards such as energy efficiency benchmarking, energy-saving technology evaluation, system energy-saving, energy recovery, waste energy utilization, energy system optimization, high-efficiency energy-saving equipment, energy-saving monitoring, energy-saving measurement and verification, energy measurement, digital enabling technology, regional energy system, distributed energy system and energy management and control center.
2.
In the field of wind power generation, we will focus on the formulation and revision of standards for wind energy resources monitoring, assessment and wind power forecasting, standards for wind turbines and key components, standards for fire protection systems, standards for materials for wind power towers, standards for construction of offshore wind power generation projects and standards for grid connection. Wind power system stability calculation standard.
nuclear power generation, we will focus on the formulation and revision of nuclear power technology standards, nuclear power plant risk management standards, maintenance effectiveness evaluation standards, and nuclear power plant site evaluation standards.In the field of
biomass energy, we will focus on the formulation and revision of standards for raw material quality control, key technologies and equipment, and product quality grading in the areas of domestic waste incineration power generation, agricultural and forestry biomass thermoelectricity, biomass clean heating, biogas (biogas), biomass pyrolysis and gasification, biomass liquid fuel and biomass briquette fuel. In the field of
hydrogen energy, we should focus on improving the technical standards of the whole industry chain, speeding up the formulation and revision of basic general standards such as hydrogen fuel quality and hydrogen energy detection, safety and risk assessment standards for hydrogen and hydrogen systems, hydrogen sealing, hydrogen-facing materials, hydrogen leakage detection, explosion-proof and explosion suppression, and hydrogen safety discharge standards. Hydrogen energy safety standards such as hydrogen supply mother station, oil, gas, hydrogen and electricity integrated energy station safety, electrolytic water hydrogen production system and its key components standards, refinery hydrogen preparation and testing standards, hydrogen liquefaction equipment and liquid H ydrogen storage containers, high-pressure gaseous hydrogen transportation, pure hydrogen/hydrogen-doped pipelines and other hydrogen storage and transportation standards, hydrogenation station system and its key technologies. Technical standards for hydrogen energy application in fuel cells, metallurgy and other fields. In the field of
ocean energy and geothermal energy, standards for testing, evaluation, deployment and operation of ocean energy power generation equipment and standards for geothermal energy power generation equipment are mainly revised.
3.
Focus on the revision of distributed generation operation control, power quality, power prediction and other standards in the field of power supply side. In the field of
load side, we should focus on revising the standards of power market load forecasting, demand side management, virtual power plant construction, evaluation and access. In the field of
energy storage, we will focus on the formulation and revision of standards for pumped storage, new energy storage standards for electrochemistry, compressed air, flywheel, gravity, carbon dioxide, heat (cold), hydrogen (ammonia) and superconductivity, and standards for safety management and emergency disposal of energy storage systems connected to the grid.
4.
In the petroleum sector, we will focus on the formulation and revision of technical standards for low-carbon petroleum exploitation and refining, and fuel standards for low emissions, high calorific value and high thermal efficiency. In the field of
natural gas, we will focus on the formulation and revision of LNG quality, flow measurement, sampling guidelines, composition analysis and determination, tail gas treatment and evaluation, pipeline transportation requirements standards and shale gas technical standards.
5.
In the field of green and low-carbon transportation, we will focus on revising the energy efficiency standards for infrastructure and equipment in the fields of railways, highways, waterways, civil aviation and postal services. As well as logistics green equipment and facilities, efficient transport organization, green travel, transportation low-carbon diversified power application, green transportation station facilities, transportation energy integration, industry pollution reduction and carbon reduction standards. We will accelerate the improvement of technical standards for energy storage trams, energy storage systems, power battery systems and electric energy measurement in the field of rail transit. Improve the relevant standards of road vehicle energy consumption limit and identification, energy consumption calculation test and evaluation method. We will accelerate the improvement of safety requirements, performance requirements, testing methods, remote service management, safety technology inspection and other standards related to electric vehicle drive systems, charging and replacement systems, and power battery systems. We will accelerate the study and formulation of emission standards for motor vehicles in the next stage, and promote the synergy of pollution reduction and carbon reduction for motor vehicles. In the field of
infrastructure construction and operation carbon reduction, we should focus on revising the standards of low-carbon construction of urban infrastructure, carbon reduction of urban housing, construction of low-carbon intelligent parks, low-carbon transformation of farm houses, green construction, resource utilization of sewage and garbage, desalination of seawater, recycling equipment of construction waste, air source heat pump equipment, etc. As well as the construction, operation and maintenance, use measurement, recycling and other standards of information and communication infrastructure such as communication network, data center and communication room for energy-saving and low-carbon goals. In the field of carbon reduction in
agricultural production, we will focus on formulating and revising technical standards for greenhouse gas emission reduction in planting industry, as well as emission reduction standards for animal intestinal methane emission reduction technology, livestock and poultry liquid manure emission reduction technology and other production processes in aquaculture industry, and improving energy-saving and low-carbon standards for factory agriculture, large-scale farming and agricultural machinery. In the field of energy conservation and low carbon in
public institutions, we will focus on formulating and revising standards for energy and resource conservation and green transformation of typical public institutions such as organs, hospitals and schools, evaluation standards for conservation-oriented organs, green schools, green hospitals and green venues, and management standards for low-carbon construction and low-carbon economic operation of public institutions.
6. Promote the formulation and revision of general standards for cleaner production assessment, standards for comprehensive utilization of rare earth and vanadium-titanium magnetite, and standards for comprehensive utilization of large solid wastes such as phosphogypsum, red mud and smelting waste residue. To formulate and revise standards for recycling and utilization of renewable resources such as scrap metals, waste textiles, waste plastics and waste power batteries. Speed up the improvement of water reuse standards. To formulate and revise remanufacturing standards for automotive parts, internal combustion engines, mechanical tools, etc. To formulate and revise the standards for recycling and utilization of forest and grass resources.
(3) Carbon removal standard subsystem
1. Ecosystem carbon sequestration and sink enhancement standards