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Self-monitoring technology guidelines for pollution sources Phosphatic, potassic, compound, organic and microbial fertilizer
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HJ 1088-2020
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Basic data | Standard ID | HJ 1088-2020 (HJ1088-2020) | | Description (Translated English) | Self-monitoring technology guidelines for pollution sources Phosphatic, potassic, compound, organic and microbial fertilizer | | Sector / Industry | Environmental Protection Industry Standard | | Classification of Chinese Standard | Z27 | | Classification of International Standard | 13.030 | | Word Count Estimation | 16,129 | | Date of Issue | 2020 | | Date of Implementation | 2020-04-01 | | Issuing agency(ies) | Ministry of Ecology and Environment |
HJ 1088-2020: Self-monitoring technology guidelines for pollution sources Phosphatic, potassic, compound, organic and microbial fertilizer ---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.
Self-monitoring technology guidelines for pollution sources Phosphatic, potassic, compound, organic and microbial fertilizer
National Environmental Protection Standard of the People's Republic of China
Technical guide for self-monitoring of sewage units
Phosphate fertilizer, potassium fertilizer, compound fertilizer, organic fertilizer and micro
Biological fertilizer
Self-monitoring technology guidelines for pollution sources
Phosphatic, potassic, compound, organic and microbial fertilizer
2020-01-06 released
2020-04-01 implementation
release
Ministry of Ecology and Environment
Contents
Foreword ...
1 Scope ... 1
2 Normative references ... 1
3 Terms and definitions ... 1
4 General requirements for self-monitoring ... 2
5 Monitoring plan development ... 2
6 Information logging and reporting ... 11
7 Other ... 12
Foreword
In order to implement the "Environmental Protection Law of the People's Republic of China"
National Air Pollution Prevention and Control Law, "Administrative Measures for Pollutant Discharge Permit (Trial)", which guides and regulates phosphate fertilizer, potash fertilizer, compound fertilizer (composite
Fertilizers), organic fertilizers and microbial fertilizers, industrial sewage discharge units shall conduct their own monitoring work to formulate this standard.
This standard proposes industrial sewage discharge units for phosphate fertilizer, potassium fertilizer, compound fertilizer (composite fertilizer), organic fertilizer and microbial fertilizer.
General requirements for self-monitoring, basic content and requirements for monitoring program development, information recording and reporting.
This standard is issued for the first time.
This standard is proposed and organized by the Department of Eco-Environment Monitoring, the Department of Regulations and Standards of the Ministry of Ecology and Environment.
The main drafters of this standard. China National Environmental Monitoring Station and Chongqing Ecological Environment Monitoring Center.
This standard was approved by the Ministry of Ecology and Environment on January 6, 2020.
This standard will be implemented from April 01, 2020.
This standard is explained by the Ministry of Ecology and Environment.
Self-monitoring Technical Guide for Sewage Discharge Units Phosphate, Potassium, Compound Fertilizer,
Organic and microbial fertilizers
1 Scope
This standard proposes industrial sewage discharge units for phosphate fertilizer, potassium fertilizer, compound fertilizer (composite fertilizer), organic fertilizer and microbial fertilizer.
General requirements for self-monitoring, basic content and requirements for monitoring program development, information recording and reporting.
This standard applies to phosphate, potassium, compound fertilizer (composite fertilizer), organic fertilizer and microbial fertilizer industry sewage discharge units
Carry out self-monitoring of water, air pollutants, noise and its surrounding environmental quality during the production and operation stage
The self-monitoring requirements for self-provided thermal power generating units (plants) and supporting power boilers are in accordance with
"South Thermal Power Generation and Boiler" (HJ 820).
2 Normative references
The content of this standard refers to the following documents or clauses therein. For undated references, the valid version is
Used in this standard.
GB 15580 Water Pollutant Discharge Standard for Phosphate Fertilizer Industry
GB 18599 Standard for Pollution Control of General Industrial Solid Waste Storage and Disposal Sites
HJ 2.2 Technical Guidelines for Environmental Impact Assessment, Atmospheric Environment
HJ 194 Technical Specifications for Manual Monitoring of Ambient Air Quality
HJ 819 Technical Guidelines for Self-monitoring of Sewage Units
HJ 820 Technical Guideline for Self-monitoring of Sewage Units
HJ/T 164 Technical Specifications for Groundwater Environmental Monitoring
National Hazardous Waste List
3 terms and definitions
The following terms and definitions apply to this standard.
3.1
Phosphate fertilizer industry
Industry producing phosphate fertilizer products. Phosphate fertilizer products include. monoammonium phosphate, diammonium phosphate, heavy superphosphate, nitrate phosphate fertilizer,
Phosphorus potassium nitrate fertilizer, calcium superphosphate, calcium magnesium phosphate fertilizer, calcium magnesium phosphate potassium fertilizer and other by-products (sodium fluorosilicate, potassium fluorosilicate, etc.) and
Phosphoric acid (wet process) as an intermediate product for phosphate fertilizer production.
3.2
Potashic fertilizer industry
Industry that produces potash products. Potassium fertilizer products include. potassium chloride, potassium sulfate, potassium nitrate, and potassium magnesium sulfate.
3.3
Compound fertilizer (complex fertilizer) industry
Industry producing compound fertilizers (compound fertilizers). Compound fertilizer (composite fertilizer) refers to the three nutrients of nitrogen, phosphorus and potassium
Fertilizers with less nutrient content (monoammonium phosphate, diammonium phosphate, phosphate nitrate, phosphate potassium nitrate, calcium magnesium phosphate, calcium
Except for magnesium phosphorus potassium fertilizer and potassium nitrate).
3.4
Organic and microbial fertilizer industry
Production of organic and microbial fertilizers.
3.5
Direct emission
The act of a pollutant discharge unit directly discharging pollutants into environmental water bodies.
3.6
Indirect emission
The act of a pollutant discharge unit discharging pollutants into a public sewage treatment system.
3.7
Rainwater outlet
Refers to discharge outlets that discharge natural precipitation directly outside the plant boundary, directly or through facilities such as trenches, canals, or pipelines.
4 General requirements for self-monitoring
Pollutant discharge units should find out their own pollution sources, pollutant indicators and potential environmental impacts, formulate monitoring plans, and set up
And maintain monitoring facilities, carry out self-monitoring in accordance with the monitoring plan, do quality assurance and quality control, record and maintain monitoring
Data, and publicize the monitoring results to the society according to law.
5 Monitoring plan development
5.1 Wastewater discharge monitoring
All phosphate fertilizer industrial sewage discharge units must
Monitoring points shall be set at the discharge outlets and rainwater discharge outlets. The monitoring indicators and minimum monitoring frequency shall be implemented according to Table 1.
Table 1 Monitoring points, monitoring indicators and minimum monitoring frequency of phosphate fertilizer industrial wastewater discharge
Monitoring point monitoring index
Monitoring frequency
Direct emissions indirect emissions
Total waste water outlet
Automatic monitoring of flow, COD, ammonia nitrogen, total phosphorus
pH, fluoride, suspended matter, total nitrogen
Workshop or production facility
Waste water outlet
Total Arsenic Month
Domestic sewage discharge
Automatic monitoring of flow, COD, ammonia nitrogen, total phosphorus-
pH, suspended solids, total nitrogen a week-
Monitoring point monitoring index
Monitoring frequency
Direct emissions indirect emissions
Rainwater discharge chemical oxygen demand, ammonia nitrogen, total phosphorus, suspended matter monthb
a In areas where total nitrogen is controlled, the minimum monitoring frequency of total nitrogen is implemented daily.
bMonthly monitoring during the drainage period. If there is no abnormal situation during the year, it can be relaxed to monitor once a quarter.
All compound fertilizer (composite fertilizer) industrial sewage discharge units must be at their total wastewater discharge outlets, domestic sewage discharge outlets, rain
Monitoring points are set at the water outlet. The monitoring indicators and minimum monitoring frequency are implemented according to Table 2.
Table 2 Monitoring point, monitoring index and minimum monitoring frequency of industrial wastewater discharge of compound fertilizer (composite fertilizer)
Monitoring point monitoring index
Monitoring frequency
Direct emissions indirect emissions
Total waste water outlet
Automatic monitoring of flow, COD, ammonia nitrogen, total phosphorus, total nitrogena
pH, suspended matter monthly
Domestic sewage discharge
Automatic monitoring of flow, COD, ammonia nitrogen, total phosphorus, total nitrogena-
pH, suspended matter month-
Chemical oxygen demand, ammonia nitrogen, suspended matter, total phosphorus month at the rainwater discharge outletb
a Prior to the release and implementation of the technical specification for automatic monitoring of total nitrogen, daily monitoring is required.
bMonthly monitoring during the drainage period. If there is no abnormal situation during the year, it can be relaxed to monitor once a quarter.
All potash industrial sewage discharge units must set up monitoring at their total wastewater discharge, domestic sewage discharge, and rainwater discharge
Point, monitoring index and minimum monitoring frequency shall be implemented according to Table 3.
Table 3 Monitoring points, monitoring indicators and minimum monitoring frequency of potassium fertilizer industrial wastewater discharge
monitor
Point
Sewage list
Bit level
Monitoring indicators
Monitoring frequency
Direct emissions indirect emissions
Waste water
Bus
Let go
Key row
Dirty unit
Automatic monitoring of flow, COD, ammonia nitrogen
pH, suspended matter monthly
Non-focus
Sewage list
Flow, COD, ammonia nitrogen monthly quarter
pH value, suspended matter
Domestic sewage discharge flow, pH value, chemical oxygen demand, ammonia nitrogen, suspended matter
Rainwater discharge chemical oxygen demand, ammonia nitrogen, suspended matter daya
aMonitor daily during the drainage period. If there is no abnormal situation during the year, you can relax to monitor once a quarter.
All organic fertilizer and microbial fertilizer industrial sewage discharge units must be at their total wastewater discharge outlets, domestic sewage discharge outlets, rain
Monitoring points are set at the water outlet. The monitoring indicators and minimum monitoring frequency are implemented according to Table 4.
Table 4 Monitoring points, monitoring indicators and minimum monitoring frequency of organic fertilizer and microbial fertilizer industrial wastewater discharge
monitor
Point
Sewage list
Bit level
Monitoring indicators
Monitoring frequency
Direct emissions indirect emissions
Waste water
Bus
Let go
Key row
Dirty unit
Automatic monitoring of flow, COD, ammonia nitrogen, total phosphorus, total nitrogena
pH, suspended matter monthly
Waste water
Bus
Let go
Non-focus
Sewage list
Flow, COD, ammonia nitrogen, total phosphorus, total nitrogen
pH value, suspended matter
Domestic sewage discharge flow, pH value, chemical oxygen demand, ammonia nitrogen, suspended matter
Rainwater discharge chemical oxygen demand, ammonia nitrogen, suspended matter dayb
a Prior to the release and implementation of the technical specification for automatic monitoring of total nitrogen, daily monitoring is required.
b. Monitor daily during the drainage period. If there is no abnormal situation during the year, you can relax to monitor once a quarter.
5.2 Exhaust emission monitoring
5.2.1 Organized exhaust emission monitoring
For multiple pollution sources or production equipment sharing one exhaust tube, the monitoring points can be arranged on the common exhaust tube. Pawn
When exhaust gas with different exhaust control requirements is combined with exhaust gas cylinders, it should be monitored before the exhaust gas is mixed; if the monitoring point can only be
Arranged on the mixed exhaust cylinder, the monitoring index should cover the monitoring index of the corresponding pollution source or production equipment, and the minimum monitoring
The frequency is strictly enforced.
The organic waste gas emission monitoring points, monitoring indicators and minimum monitoring frequency for each production process of the phosphate fertilizer industry are implemented according to Table 5.
Table 5 Monitoring points, monitoring indicators and minimum monitoring frequency of organic waste gas emission in the phosphate fertilizer industry
Product production process monitoring point monitoring index monitoring frequency
Phosphoric acid
Raw material preparation dust-containing exhaust gas collection and treatment facility exhaust pipe particulate matter for half a year
Acid hydrolysis reaction reaction tail gas treatment system exhaust cylinder fluoride month
Filtration filter exhaust gas exhaust system fluoride month
Monoammonium phosphate /
Diammonium phosphate
Neutralization reaction reaction tail gas treatment system exhaust cylinder ammonia quarter
Finished product preparation
Exhaust canister for spray/granulation granulation exhaust gas treatment system
Automatic particle monitoring
Ammonia quarter
Fluoride Month
Exhaust tube for dry and dry exhaust gas treatment system
Automatic particle monitoring
Fluoride Month
SO2 a month
NOx Month
Product production process monitoring point monitoring index monitoring frequency
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Crushing exhaust gas treatment system exhaust particulate matter for half a year
Cooling exhaust particles from exhaust gas treatment system for half a year
Finished product packaging packaging exhaust gas exhaust particulate matter six months
Heavy superphosphate
/ Superphosphate
Raw material preparation
Exhaust pipe
Automatic particle monitoring
SO2 a month
NOx Month
Phosphorus ore crushing dust-containing waste gas collection and treatment facility exhaust pipe particulate matter for half a year
Exhaust canister for acid hydrolysis reaction tail gas treatment system
Fluoride Month
Sulfuric acid mist b half year
Finished product preparation
Automatic monitoring of particulate matter in the exhaust tube of the granulation granulation tail gas treatment system
Exhaust tube for dry and dry exhaust gas treatment system
Automatic particle monitoring
SO2 a month
NOx Month
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Crushing exhaust gas treatment system exhaust particulate matter for half a year
Finished product packaging packaging exhaust gas exhaust particulate matter six months
Nitrate phosphate fertilizer /
Potassium nitrate fertilizer
Raw material preparation
Phosphorus ore crushing dust-containing waste gas collection and treatment facility exhaust pipe particulate matter for half a year
Phosphate ore powder drying exhaust gas exhaust system exhaust tube
Automatic particle monitoring
SO2 a month
NOx Month
Exhaust tube of phosphate rock roasting and roasting exhaust gas treatment system
Automatic particle monitoring
SO2 a month
NOx Month
Phosphorite powder cooling and cooling tail gas treatment system exhaust pipe particulate matter
Exhaust canister for acid hydrolysis reaction tail gas treatment system
Automatic NOx monitoring
Fluoride Month
Filtration Filter Exhaust Gas Treatment System Fluoride Month
Neutralization reaction reaction tail gas treatment system exhaust cylinder ammonia quarter
Product production process monitoring point monitoring index monitoring frequency
Transformer exhaust gas treatment system exhaust cylinder ammonia quarter
Finished product preparation
Granulated granulated exhaust treatment exhaust pipe
Automatic particle monitoring
Ammonia quarter
Exhaust tube for dry and dry exhaust gas treatment system
Automatic particle monitoring
SO2 a month
NOx Month
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Crushing exhaust gas treatment system exhaust particulate matter for half a year
Cooling exhaust particles from exhaust gas treatment system for half a year
Finished product packaging packaging exhaust gas exhaust particulate matter six months
Calcium Magnesium Phosphate Fertilizer /
Calcium magnesium phosphate potassium fertilizer
Raw material preparation dust-containing exhaust gas collection and treatment facility exhaust pipe particulate matter for half a year
Blast furnace exhaust gas treatment system exhaust tube
Automatic particle monitoring
Automatic monitoring of sulfur dioxide
Automatic NOx monitoring
Fluoride Month
Finished product preparation
Drying and exhausting system exhaust tube
Automatic particle monitoring
Sulphur dioxide month
NOx Month
Particulate matter discharged from the grinding ball mill exhaust gas treatment system for six months
Finished product packaging packaging exhaust gas exhaust particulate matter six months
Sodium fluosilicate /
Potassium fluosilicate
Metathesis reaction reaction tail gas treatment system exhaust cylinder fluoride quarter
Finished product preparation
Automatic monitoring of particulate matter in exhaust cylinder of dry and dry exhaust gas treatment system
Cooling exhaust particles from exhaust gas treatment system for half a year
Finished product packaging packaging exhaust gas exhaust particulate matter six months
Note. Exhaust gas monitoring must monitor the flue gas parameters in accordance with the corresponding standard monitoring analysis methods and technical specifications.
aUsing the blowdown unit of coal-fired hot blast stove.
b Sewage unit producing superphosphate.
Organized waste gas emission monitoring points, monitoring indicators and minimum monitoring frequency for each production process of the potash fertilizer industry are implemented according to Table 6.
Table 6 Monitoring points, monitoring indicators, and minimum monitoring frequency of organic waste gas emissions from the potash industry
Product production process monitoring point monitoring index monitoring frequency
Potassium chloride, sulfur
Potassium acid
Salt conversion method,
Metathesis method),
Potassium sulfate magnesium fertilizer
Finished product preparation
Granulated exhaust gas treatment system exhaust pipe particulate matter for six months
Dry exhaust gas treatment system exhaust tube
Particulate matter for half a year
SO2 a half year
NOx for half a year
Packing exhaust particles for six months
Potassium nitrate
Neutralization reaction reaction tail gas treatment system exhaust cylinder nitrogen oxides for half a year
Finished product preparation
Granulated exhaust gas treatment system exhaust pipe particulate matter for six months
Dry exhaust gas treatment system exhaust tube
Particulate matter for half a year
SO2 a half year
NOx for half a year
Packing exhaust particles for six months
Potassium sulfate
Heimfa)
Mannheim furnaces
Particulate matter for half a year
Sulfur dioxide b half a year
NOx for half a year
cool down
Serum film absorber tail gas exhaust cylinder hydrogen chloride for half a year
Cooler exhaust gas treatment system exhaust particulate matter for half a year
Finished product preparation
Broken exhaust gas treatment system exhaust pipe particulate matter for six months
Packing exhaust particles for six months
Note. Exhaust gas monitoring must monitor the flue gas parameters in accordance with the corresponding standard monitoring analysis methods and technical specifications.
a Sewage unit using coal-fired hot blast stove.
b Sewage unit using heavy oil and coal-fired gas generator as fuel.
Organized waste gas emission monitoring points, monitoring indicators and minimum monitoring for each production process of compound fertilizer
The frequency is executed according to Table 7.
Table 7 Monitoring points, monitoring indicators and minimum monitoring frequency of organic waste gas emissions for compound fertilizer (compound fertilizer) industry
Product production process monitoring point monitoring index monitoring frequency
Agglomeration
Fertilizer (composite
fertilizer)
Raw material preparation dust-containing exhaust gas collection and treatment facility exhaust pipe particulate matter for half a year
Exhaust tube for finished product preparation, granulation and tail gas treatment system
Automatic particle monitoring
Ammonia quarter
Product production process monitoring point monitoring index monitoring frequency
NOx a quarter
Hydrogen sulfide b half year
Exhaust tube for dry and dry exhaust gas treatment system
Automatic particle monitoring
Hydrogen sulfide b half year
Sulfur dioxide c month
NOx Month
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Crushing exhaust gas treatment system exhaust particulate matter for half a year
Cooling system exhaust gas treatment exhaust particulate matter for half a year
Packing Packing Exhaust Gas Treatment System Exhaust Particulate Matter for Half a Year
Melt-type compound
Fertilizer (composite
fertilizer)
Raw material preparation dust-containing exhaust gas collection and treatment facility exhaust pipe particulate matter for half a year
Finished product preparation
Exhaust tube for granulation granulation tail gas treatment system
Particulate matter month
Ammonia quarter
Hydrogen sulfide b half year
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Crushing exhaust gas treatment system exhaust particulate matter for half a year
Cooling system exhaust gas treatment exhaust particulate matter for half a year
Packing Packing Exhaust Gas Treatment System Exhaust Particulate Matter for Half a Year
Slurry type compound
Fertilizer (composite
fertilizer)
Metathesis reaction reaction tail gas treatment system exhaust gas cylinder hydrogen chloride for half a year
Neutralization reaction reaction tail gas treatment system exhaust cylinder ammonia quarter
Finished product preparation
Exhaust tube for granulation granulation tail gas treatment system
Automatic particle monitoring
Ammonia quarter
Exhaust tube for dry and dry exhaust gas treatment system
Automatic particle monitoring
Sulfur dioxide c month
NOx Month
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Crushing exhaust gas treatment system exhaust particulate matter for half a year
Product production process monitoring point monitoring index monitoring frequency
Cooling system exhaust gas treatment exhaust particulate matter for half a year
Packing Packing Exhaust Particulate Matter for Half a Year
Blending
Fertilizer (composite
fertilizer)
Finished product preparation
Blend exhaust particulates from exhaust gas treatment system for half a year
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Packaging packaging tail gas collection and processing facilities exhaust pipe particulate matter
Note. Exhaust gas monitoring must monitor the flue gas parameters in accordance with the corresponding standard monitoring analysis methods and technical specifications.
a Sewage unit producing nitro compound fertilizer (composite fertilizer).
b Sewage discharge unit producing organic-inorganic compound fertilizer (composite fertilizer).
c Sewage unit using coal-fired hot blast stove.
Organized waste gas emission monitoring points, monitoring indicators and minimum monitoring in each production process of organic fertilizer and microbial fertilizer industry
The frequency is executed according to Table 8.
Table 8 Monitoring points, monitoring indicators and minimum monitoring frequency of organic waste gas emissions from organic fertilizer and microbial fertilizer industry
Product production process monitoring point monitoring index monitoring frequency
organic fertilizer
Raw material preparation Dust-containing exhaust gas collection and treatment facility
Particulate matter for half a year
Ammonia for half a year
Hydrogen sulfide for half a year
Finished product preparation
Exhaust tube of fermentation fermentation tail gas collection and processing facility
Ammonia for half a year
Hydrogen sulfide for half a year
Dry exhaust gas collection and processing facility exhaust cylinder
Ammonia for half a year
Hydrogen sulfide for half a year
Crushing tail gas collection and processing facility exhaust pipe particulate matter for half a year
Granulated granulated exhaust gas treatment system exhaust cylinder particulate matter for six months
Screening of particulate matter in exhaust cylinder of exhaust gas treatment system for six months
Cooling exhaust particles from exhaust gas treatment system for half a year
Microbial ...
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