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Process Data set: Dry distillation ; Coal gas ; Coal ; Coal retorting ; All sizes; NESPS2 (en) en zh

Key Data Set Information
Location CN
Reference year 2019
Name
Dry distillation ; Coal gas ; Coal ; Coal retorting ; All sizes; NESPS2
Use advice for data set This dataset is derived from the Pollution Source Census Report and contains information on pollution emissions and related products. However, it does not include data on energy or chemical consumption, nor does it provide information on waste or co-product generation. When utilizing this dataset, please supplement the missing data based on actual conditions before use
Technical purpose of product or process 该数据集描述了适用于所有规模的煤炭干馏工艺,用于生产煤气。提到的末端治理技术用于控制该过程中的颗粒物(PM2.5 - PM10)、二氧化硫和氮氧化物排放。袋式过滤器的效率为97%,用于颗粒物处理,而二氧化硫使用石灰石/石膏法、石灰/石膏法、氨法和双碱法管理,效率范围为84%至92%。氮氧化物通过选择性催化还原(SCR)进行处理,效率为85%。这些污染控制技术对于最小化环境影响和符合工业排放标准至关重要。
Classification
Class name : Hierarchy level
  • ILCD: Reference Parameters / Energy carriers and technologies / Hard coal based fuels
General comment on data set the Technical of end-of-pipe management technology for pollution Exhaust gasisDirect discharge,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is k = equipment operating time (hours) / total production time (hours)
Copyright No
Owner of data set
Quantitative reference
Reference flow(s)
Technological representativeness
Technology description including background system the Technical of end-of-pipe management technology for pollution Exhaust gasisDirect discharge,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is k = equipment operating time (hours) / total production time (hours)
LCI method and allocation
Type of data set Unit process, single operation
Data sources, treatment and representativeness
Deviation from data treatment and extrapolations principles / explanations None
Data source(s) used for this data set
Completeness
Completeness of product model No statement
Validation
Type of review
Dependent internal review
Reviewer name and institution
Data generator
Data set generator / modeller
Publication and ownership
UUID 7056db40-4845-4a67-a82b-272e61110d75
Date of last revision 2024-04-15T22:06:41.852761+08:00
Data set version 00.01.005
Permanent data set URI https://lcadata.tiangong.world/showProcess.xhtml?uuid=7056db40-4845-4a67-a82b-272e61110d75&version=01.00.000&stock=TianGong
Owner of data set
Copyright No
License type Free of charge for all users and uses

Inputs

Outputs

Type of flow Classification Flow Location Mean amount Resulting amount Minimum amount Maximum amount
Product flow
Energy carriers and technologies / Hard coal based fuels 10000.0 m310000.0 m3
General comment nan
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 1.28 kg1.28 kg
General comment the Technical of end-of-pipe management technology for pollution volatile organic compoundisDirect discharge
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 2.032 kg2.032 kg
General comment the Technical of end-of-pipe management technology for pollution sulfur dioxideisLime/gypsum method,Its Technical efficiency of end-of-pipe management92,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is /
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 2.032 kg2.032 kg
General comment the Technical of end-of-pipe management technology for pollution sulfur dioxideisLimestone/gypsum method,Its Technical efficiency of end-of-pipe management92
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 2.286 kg2.286 kg
General comment the Technical of end-of-pipe management technology for pollution sulfur dioxideisAmmonia method,Its Technical efficiency of end-of-pipe management91,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is /
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 4.064 kg4.064 kg
General comment the Technical of end-of-pipe management technology for pollution sulfur dioxideisDouble alkali process,Its Technical efficiency of end-of-pipe management84
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 7.11 kg7.11 kg
General comment the Technical of end-of-pipe management technology for pollution Nitrogen oxidesisSCR,Its Technical efficiency of end-of-pipe management85
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 13.08 kg13.08 kg
General comment the Technical of end-of-pipe management technology for pollution particles (PM2.5 - PM10)isBag filter,Its Technical efficiency of end-of-pipe management97,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is k = equipment operating time (hours) / total production time (hours)
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 25.4 kg25.4 kg
General comment the Technical of end-of-pipe management technology for pollution sulfur dioxideisDirect discharge,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is k = activated carbon consumption (tons) / standard activated carbon consumption (tons)
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 47.4 kg47.4 kg
General comment the Technical of end-of-pipe management technology for pollution Nitrogen oxidesisDirect discharge
Elementary flow
Emissions / Emissions to air / Emissions to air, unspecified 436.0 kg436.0 kg
General comment the Technical of end-of-pipe management technology for pollution particles (PM2.5 - PM10)isDirect discharge,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is k = equipment operating time (hours) / total production time (hours)
Product flow
Materials production / Inorganic chemicals 70500.0 m370500.0 m3
General comment the Technical of end-of-pipe management technology for pollution Exhaust gasisDirect discharge,The formula for calculating the actual operation rate (k-value) of the end-of-pipe treatment facility is k = equipment operating time (hours) / total production time (hours)