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Emission standard of air pollutants for glass industry
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Emission standard of air pollutants for flat glass industry
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Basic data | Standard ID | GB 26453-2022 (GB26453-2022) | | Description (Translated English) | Emission standard of air pollutants for glass industry | | Sector / Industry | National Standard | | Classification of Chinese Standard | Z60 | | Classification of International Standard | 13.040.20 | | Word Count Estimation | 16,139 | | Date of Issue | 2022-10-22 | | Date of Implementation | 2023-01-01 | | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration | | Summary | This standard specifies the control requirements, monitoring and supervision management requirements for air pollutant emissions in the glass industry. This standard is applicable to the management of air pollutant discharge of existing glass industry enterprises or production facilities, as well as the environmental impact assessment of glass industry construction projects, the design of environmental protection facilities, the completion of environmental protection acceptance, the issuance of pollutant discharge permits and the air pollution after they are put into production. emissions management. |
GB 26453-2011: Emission standard of air pollutants for flat glass industry---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Emission standard of air pollutants for flat glass industry
National Standards of People's Republic of China
Flat glass industry air pollutant emission standards
Published on.2011-04-02
2011-10-01 Implementation
Ministry of Environmental Protection released
State Administration of Quality Supervision, Inspection and Quarantine
Ministry of Environmental Protection
announcement
No. 30 of.2011
To implement the "Environmental Protection Law of the People's Republic of China", "Water Pollution Prevention and Control Law of the People's Republic of China"
Pollution Prevention and Control Law, prevention and control of pollution, protection and improvement of the ecological environment, and protection of human health, is now approved "vanadium industrial pollutant discharge standards", etc.
The three standards are national pollutant discharge standards, and are jointly issued by the Ministry and the General Administration of Quality Supervision, Inspection and Quarantine.
The standard name and number are as follows.
I. Vapor industry industrial pollutant discharge standard (GB 26452-2011)
2. Water pollutant discharge standards for phosphate fertilizer industry (GB 15580-2011)
According to the relevant laws, the above standards have the effect of enforcement.
The above standards have been implemented since October 1,.2011.
From the date of implementation of the above standards, the following national pollutant discharge standards are abolished.
Phosphate fertilizer industry water pollutant discharge standard (GB 15580-1995).
Special announcement.
(This announcement was signed by Ji Zhengkun of the General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China)
April 2,.2011
Content
Foreword..iv
1 Scope..1
2 Normative references..1
3 Terms and definitions. 2
4 Air pollutant emission control requirements.3
5 Air pollutant monitoring requirements 4
6 Implementation and supervision.5
Iv
Foreword
To implement the Environmental Protection Law of the People's Republic of China, the Law of the People's Republic of China on the Prevention and Control of Air Pollution, and the State Council on Implementing Science
Laws and regulations such as the "Development View on Strengthening Environmental Protection" and the "Opinions of the State Council on the Preparation of National Main Functional Area Planning", Protection
The environment, pollution prevention, promotion of flat glass industrial production process and pollution control technology advancement, the development of this standard.
This standard specifies the emission limits, monitoring and monitoring requirements for atmospheric pollutants in flat glass manufacturing enterprises. Flat glass manufacturing company discharge water
Contaminants and environmental noise shall be applied to the corresponding national pollutant discharge standards, and the identification, treatment and disposal of solid waste shall be applied to the national solid waste.
Pollution control standards.
This standard is the first release.
From the date of implementation of this standard, the emission control of atmospheric pollutants of flat glass manufacturing enterprises shall be implemented in accordance with the provisions of this standard.
Emission Standards for Air Pollutants in Furnace and Kiln (GB 9078-1996) and Integrated Emission Standards for Air Pollutants (GB 16297-1996)
Relevant regulations.
Local provincial people's governments may formulate local pollutant discharge standards for pollutants not specified in this standard;
For the specified pollutants, local pollutant discharge standards that are stricter than this standard can be formulated.
This standard was formulated by the Science and Technology Standards Department of the Ministry of Environmental Protection.
This standard is mainly drafted by. China Academy of Environmental Sciences, Glass-lined Industrial Design and Research Institute.
This standard was approved by the Ministry of Environmental Protection on April 2,.2011.
This standard has been implemented since October 1,.2011.
This standard is explained by the Ministry of Environmental Protection.
Flat glass industry air pollutant emission standards
1 Scope of application
This standard specifies the limits, monitoring and monitoring requirements for air pollutants in flat glass manufacturing enterprises or production facilities, as well as standards.
Relevant regulations such as supervision and supervision.
This standard applies to the management of atmospheric pollutant emissions from existing flat glass manufacturing enterprises or production facilities.
This standard is applicable to the environmental impact assessment of flat glass industrial construction projects, the design of environmental protection facilities, and the acceptance of environmental protection for completion.
Its management of atmospheric pollutant emissions after its production.
Electronic glass industry solar cell glass (substrate glass for thin film solar cells, package glass for crystalline silicon solar cells, etc.)
This standard is applicable to the control of atmospheric pollutant emissions during production.
This standard applies to the discharge of pollutants permitted by law. Sites for newly established pollution sources and tubes for existing pollution sources in special protection areas
Li, in accordance with the Law of the People's Republic of China on the Prevention and Control of Air Pollution, the Law of the People's Republic of China on the Prevention and Control of Water Pollution,
Environmental Protection Law, Law of the People's Republic of China on the Prevention and Control of Environmental Pollution by Solid Waste, Law of the People's Republic of China on Environmental Impact Assessment, etc.
The relevant provisions of laws, regulations and rules are implemented.
2 Normative references
The contents of this standard refer to the following documents or their terms.
GB/T 15432-1995 Determination of total suspended particulate matter in ambient air
GB/T 16157-1996 Determination of particulate matter in fixed pollution source exhaust gas and sampling method of gaseous pollutants
HJ/T 27-1999 Determination of hydrogen chloride in fixed source emissions - Mercury thiocyanate spectrophotometric method
HJ/T 42-1999 Determination of nitrogen oxides from fixed source s
HJ/T 43-1999 Determination of nitrogen oxides from fixed source s
HJ/T 55-2000 Technical Guidelines for the Monitoring of Unorganized Emissions of Air Pollutants
HJ/T 56-2000 Determination of sulphur dioxide in fixed source s
HJ/T 57-2000 Determination of sulfur dioxide in fixed source exhaust gases
HJ/T 65-2001 Determination of tin in fixed atmosphere sources - Graphite furnace atomic absorption spectrophotometric method
HJ/T 67-2001 Determination of Fluoride in Fixed Atmospheric Sources Ion Selective Electrode Method
HJ/T 75-2007 Technical Specifications for Continuous Monitoring of Flue Gas Emissions from Fixed Sources (Trial)
HJ/T 76-2007 Technical requirements and testing methods for continuous monitoring system for fixed source flue gas emissions (Trial)
HJ/T 397-2007 Fixed source exhaust gas monitoring technical specification
HJ/T 398-2007 Determination of blackness of flue gas from fixed pollution sources - Ringermann smoke blackness diagram
HJ 548-2009 Determination of Hydrogen Chloride from Fixed Pollution Sources - Silver Nitrate Capacity Method (Provisional)
HJ 549-2009 Determination of Hydrogen Chloride in Ambient Air and Exhaust Gas Ion Chromatography (Provisional)
Measures for the Automatic Monitoring and Control of Pollution Sources (Order No. 28 of the State Environmental Protection Administration)
Measures for the Administration of Environmental Monitoring (Order No. 39 of the State Environmental Protection Administration)
3 Terms and definitions
The following terms and definitions apply to this standard.
3.1
Flat glass
Plate-shaped silicate glass.
3.2
Flat glass industry
The industry of flat glass is produced by a float process, a flat pull process, a calendering process, and the like.
3.3
Glass furnace
A thermal equipment for melting glass, made of steel and refractory.
3.4
Cold repair cold repair
The process of overhauling the glass melting furnace after it has been cooled down.
3.5
Oxygen-fuel combustion
A combustion mode in which the combustion gas contains 90% or more of oxygen.
3.6
Emission concentration of air pollutants
At a temperature of 273 K and a pressure of 101.3 kPa, the average concentration of atmospheric pollutants in the exhaust gas from the exhaust gas is 1 h.
The bit is mg/m3.
3.7
Exhaust height
The height from the ground level from the exhaust pipe (or its main building structure) to the outlet of the exhaust pipe, in m.
3.8
Unorganized emission
Air pollutants do not pass through the irregular discharge of the exhaust pipe, mainly including material storage in the workplace, open transport of dust, and equipment,
Leakage of dusty gas in pipelines, etc.
3.9
Unconcentrated emission monitoring point concentration limit concentration limit at fugitive emission reference point
At a temperature of 273 K and a pressure of 101.3 kPa, the monitoring point (determined according to HJ/T 55) has a mass concentration of atmospheric pollutants at any of
The value of h should not exceed the value in mg/m3.
3.10
Existing enterprise existing facility
Before the implementation of this standard, the flat glass manufacturing enterprise or production facility that has been approved for production or environmental impact assessment documents has been completed.
3.11
New enterprise new facility
Since the implementation of this standard, the environmental impact assessment document has been approved for the construction, reconstruction and expansion of the flat glass industrial construction project.
4 Air pollutant emission control requirements
4.1 Air pollutant emission limits
4.1.1 From October 1,.2011 to December 31,.2013, existing enterprises will implement the air pollutant discharges specified in Table 1.
Limit.
Table 1 Limits of air pollutant emissions from existing enterprises
Unit. mg/m3 (except smoke blackness)
Serial number pollutant project
Emission limit
Pollutant emission monitoring location glass melting furnace a online coating tail gas treatment system
Ingredients, broken glass, etc.
He ventilated production equipment
1 Particulate matter 100 50 50
Workshop or production facility exhaust
2 Smoke blackness (Lingeman, grade) 1 - -
3 sulfur dioxide 600 - -
4 Hydrogen chloride 30 30 -
5 Fluoride (in total F) 5 5 -
6 Tin and its compounds - 8.5 -
a Refers to the emission concentration limit in the state where the O2 content of the dry flue gas is 8% (the pure oxygen combustion is the reference exhaust gas condition).
4.1.2 As of January 1,.2014, existing enterprises will implement the air pollutant emission limits specified in Table 2.
4.1.3 If the existing enterprise re-commissions the glass melting furnace before January 1,.2014, it will be executed from the date of commissioning.
2 The limits of atmospheric pollutant emissions specified.
4.1.4 Since October 1,.2011, new enterprises will implement the air pollutant emission limits specified in Table 2.
Table 2 Limits of Air Pollutant Emissions from New Enterprises
Unit. mg/m3 (except smoke blackness)
Serial number pollutant project
Emission limit
Pollutant emission monitoring location glass melting furnace a online coating tail gas treatment system
Ingredients, broken glass, etc.
He ventilated production equipment
1 Particulate matter 50 30 30
Workshop or production facility exhaust
2 Smoke blackness (Lingeman, grade) 1 - -
3 sulfur dioxide 400 - -
4 Hydrogen chloride 30 30 -
5 Fluoride (in total F) 5 5 -
6 tin and its compounds - 5 -
7 Nitrogen oxides (in terms of NO2) 700 - -
a Refers to the emission concentration limit in the state where the O2 content of the dry flue gas is 8% (the pure oxygen combustion is the reference exhaust gas condition).
4.1.5 For glass furnace exhaust (except pure oxygen combustion), the oxygen content in the exhaust gas should be monitored at the same time to measure the air pollution in the exhaust pipe.
The discharge concentration of the substance should be converted into the baseline emission concentration under the condition of 8% oxygen content according to formula (1), and used as the basis for determining whether the emission is up to standard.
according to. Exhaust from other workshops or production facilities shall be calculated according to the measured concentration, but shall not be diluted by humans.
21 O
ρ ρ−= ⋅−基实实
(1)
Where. ρ base - the baseline emission concentration of atmospheric pollutants, mg/m3;
ρ实--Measure the concentration of atmospheric pollutants in the exhaust pipe, mg/m3;
O real--the measured value of the oxygen content in the dry flue gas of the glass melting furnace.
Emission concentration, exhaust volume and glass discharge amount in the corresponding time,
According to the formula (quasi-emission concentration, and use this as a measure of whether the emission is up to
The basis of the target. The monitoring and statistical period of atmospheric pollutant emission concentration, exhaust volume and product output is 1 h, which can be continuously sampled or waited for time.
4.1.6 Pure oxygen burning glass melting furnace should monitor air pollution in the exhaust pipe
2) Calculate the base of the baseline exhaust volume [3 000 m3/t (glass)]
The air pollutant discharge concentration and exhaust volume data are obtained by sampling, and the glass discharge data is based on the enterprise statistical report.
ρ ρ= ⋅⋅
Basic (2)
Where. ρ base - the baseline emission concentration of atmospheric pollutants, mg/m3;
ρ实--Measure the concentration of atmospheric pollutants in the exhaust pipe, mg/m3;
Q real--measured hourly exhaust capacity of glass melting furnace, m3/h;
t/h.
4.2 Unorganized
4.2.1, mixing, conveying, feeding and other stages should be closed, anti-proof
The concentration limit of unorganized emission monitoring points of air pollutants in glass manufacturing enterprises shall comply with Table 3.
Unit. mg/m
No. Pollutant project emission limit value meaning unorganized emission monitoring position
M--the amount of hourly glass discharge corresponding to the monitoring period,
Emission control requirements
Flat glass manufacturing companies crush, screen, store, weigh raw materials
Unorganized emissions.
4.2.2 From the date of implementation of this standard, the tablet
Provisions.
Table 3 Unorganized emission limits for atmospheric pollutants
1 particulate matter 1.0
1 h concentration value difference
Execute the provisions of HJ/T 55, and set up the wind direction
Point, downwind set monitoring point
Monitoring point and reference point total suspended particulate matter (TSP)
4.2.3 Responsible for the supervision department in the process of production and completion of environmental protection of existing enterprises
Responding to the sensitivity of living, medical care, etc.
The surrounding sensitive areas identified by the evaluation; the existing enterprises that have not conducted environmental impact assessment are monitored by the environmental protection administrator responsible for supervision.
, up to standard
All exhaust cylinders should be at least 15 m high. When there is a building within a radius of.200 m around the exhaust pipe, the height of the exhaust pipe should also be high.
5.1 Sampling of the company's exhaust gas should be carried out according to the type of pollutants to be monitored at the specified pollutant discharge monitoring location.
Facilities should be monitored after the facility. A permanent drain outlet sign should be set at the pollutant discharge monitoring location.
5.2 Requirements for the installation of automatic monitoring equipment for pollutant discharge in newly-built enterprises and existing enterprises, in accordance with relevant laws and “Automatic Monitoring and Management of Pollution Sources”
Environmental Protection Administration Director of Production after Construction Project
The environmental quality of the surrounding area and the teaching use area are monitored. The specific monitoring scope of the construction project is the environmental impact
The management department shall refer to the relevant environmental impact assessment technical guidelines according to the characteristics and laws of the enterprise's sewage discharge and local natural and meteorological conditions.
determine. The local government shall be responsible for the environmental quality of its jurisdiction and take measures to ensure that the environmental conditions meet the requirements of environmental quality standards.
4.3 Exhaust gas collection and discharge
4.3.1 Production processes and installations for the production of atmospheric pollutants require the establishment of partial or integral gas collection systems and purification treatment devices
put.
4.3.2
The highest building is more than 3 m.
5 Air pollutant monitoring requirements
The provisions of the Measures are implemented.
The frequency of monitoring, the sampling time, etc., according to the national relevant pollution source monitoring technical specifications
The implementation of the regulations.
Project method standard name method standard number
5.3 Air pollutants for enterprises
5.4 Monitoring and sampling of atmospheric pollutants in the exhaust pipe shall be carried out in accordance with GB/T 16157-1996, HJ/T 397-2007 or HJ/T 75-2007.
The monitoring of unorganized emissions of atmospheric pollutants is carried out in accordance with HJ/T 55-2000.
5.5 The determination of atmospheric pollutant emission concentrations is based on the method criteria listed in Table 4.
Table 4 Standards for determination of atmospheric pollutant concentration
Serial number of pollutants
1 particulate matter
Determination of particulate matter in fixed pollution source exhaust gas and sampling method of gaseous pollutants GB/T 16157-1996
Technical requirements and test methods for continuous monitoring system of fixed pollution source flue gas emissions HJ/T 76-2007
Determination of total suspended particulate matter in ambient air - Gravimetric method GB/T 15432-1995
2 Determination of blackness of flue gas from stationary sources of smoke blackness. Ringermann blackness diagram HJ/T 398-2007
3 sulfur dioxide
Fixed pollution source row HJ/T 56-2000 Determination of sulfur dioxide in gas - Iodometric method
Determination of sulfur dioxide in fixed source exhaust gas - Potentiometric electrolysis method HJ/T 57-2000
Technical requirements and test methods for continuous monitoring system of fixed pollution source flue gas emissions HJ/T 76-2007
4 Hydrogen chloride
Determination of hydrogen chloride in fixed source exhaust gases - Mercury thiocyanate spectrophotometric method HJ/T 27-1999
Determination of hydrogen chloride in fixed source pollution - Determination of silver nitrate capacity (provisional) HJ 548-2009
Determination of ambient air and exhaust gases - Hydrogen chloride - Interim. HJ 549-2009
5 Determination of Fluoride in Fluoride Atmospheric Fixed Pollution Sources Ion Selective Electrode Method HJ/T 67-2001
6 Tin and its compounds spectrophotometric method for the determination of tin in atmospheric fixed pollution sources. Graphite furnace atomic absorption HJ/T 65-2001
7 NOx
Determination of nitrogen oxides in fixed source exhaust gases - UV spectrophotometric method HJ/T 42-1999
Determination of nitrogen oxides in fixed source exhaust gases - Naphthylethylenediamine spectrophotometric method HJ/T 43-1999
Technical requirements and test methods for continuous monitoring system of fixed pollution source flue gas emissions HJ/T 76-2007
5.6 Enterprises should conduct original monitoring according to relevant conditions
recording.
6 Shi
.1 This standard is supervised and implemented by the environmental protection administrative department of the people's government at or above the county level.
Dyeing and control facilities are operating normally. Environmental protection departments at all levels can immediately sample or monitor on-site when conducting supervisory inspections of enterprises.
As a result, it is used as a basis for determining whether the discharge behavior complies with emission standards and implements relevant environmental protection management measures.
The law and the provisions of the Environmental Monitoring Management Measures, monitoring and saving the sewage
Reality and supervision
6.2 Under any circumstance, the flat glass manufacturing enterprises shall comply with the air pollutant emission control requirements specified in this standard and take necessary measures.
Guaranteed pollution
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