Key Data Set Information | |
Location | SI |
Geographical representativeness description | This study refers to the reclamation activities that were per formed at the Old Zinc-Works site in the town of Celje (in eastern Slovenia). |
Reference year | 2018 |
Name |
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Use advice for data set | When utilizing this data set for environmental impact assessments or LCA studies, ensure that the incineration process is appropriately accounted for as a waste treatment method for contaminated soil. It is essential to model the transport and treatment of soil specifically from the excavation site to the incineration facility. Furthermore, include considerations for the assumptions made regarding the long-term management (100-year time horizon) of the treated soil. Data users should model the use phase behavior, taking into account the complete cycle from soil excavation to the refilling of pits with waste rock, and the subsequent disposal or reuse of incinerated material. Methodological consistency with the broader LCA framework is crucial for accurate representation. |
Technical purpose of product or process | The remediated soil through ex-situ thermal treatment in a hazardous waste incineration plant is primarily utilized for the structural destruction of harmful chemicals within contaminated soil, recovered from historically polluted industrial sites. This process is mainly applicable in environmental reclamation projects involving the cleanup of old industrial facilities like zinc factories, where soil contamination is addressed through high-temperature incineration methods. |
Classification |
Class name
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Hierarchy level
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General comment on data set | The principle of incineration treatment technology is to use an incinerator to incinerate contaminated soil at a certain temperature, destroying the structure of harmful chemicals. |
Copyright | No |
Owner of data set | |
Quantitative reference | |
Reference flow(s) |
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Functional Unit | The functional unit was the management of 1.0 m3 of contaminated soil at the Old Zinc-Works site. A time horizon of 100 years was assumed. |
Technological representativeness | |
Technology description including background system | Excavated contaminated soil was removed from the site. Excavated pit was refilled by waste rock. The contaminated soil, which was excavated from the site, was assumed to be loaded onto a train, transported and thermally treated at a hazardous waste incineration plant in order to reduce the volume and mass of waste. |
Flow diagram(s) or picture(s) |
LCI method and allocation | |||||
Type of data set | Unit process, black box | ||||
Deviation from LCI method principle / explanations | None | ||||
Deviation from modelling constants / explanations | None | ||||
Data sources, treatment and representativeness | |||||
Deviation from data cut-off and completeness principles / explanations | None | ||||
Deviation from data selection and combination principles / explanations | None | ||||
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 | |||||
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Data generator | |
Data set generator / modeller | |
Data entry by | |
Time stamp (last saved) | 2024-03-25T15:45:22+08:00 |
Publication and ownership | |
UUID | 3ab74c72-011c-4a1c-8d74-f5682c43eced |
Date of last revision | 2024-04-20T15:03:29.639004+08:00 |
Data set version | 00.01.005 |
Permanent data set URI | https://lcadata.tiangong.world/showProcess.xhtml?uuid=3ab74c72-011c-4a1c-8d74-f5682c43eced&version=01.00.000&stock=TianGong |
Owner of data set | |
Copyright | No |
License type | Free of charge for all users and uses |
Inputs
Type of flow | Classification | Flow | Location | Mean amount | Resulting amount | Minimum amount | Maximum amount | ||
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Product flow | Energy carriers and technologies / Crude oil based fuels | 0.0016899999999999999 kg | 0.0016899999999999999 kg | ||||||
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Product flow | Energy carriers and technologies / Electricity | 90.86399999999999 MJ | 90.86399999999999 MJ | ||||||
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Product flow | Wastes / Mining waste | 1.0 kg | 1.0 kg | ||||||
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Product flow | Energy carriers and technologies / Crude oil based fuels | 7.199999999999999E-4 kg | 7.199999999999999E-4 kg | ||||||
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Product flow | Energy carriers and technologies / Crude oil based fuels | 5.8E-4 kg | 5.8E-4 kg | ||||||
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Product flow | Energy carriers and technologies / Crude oil based fuels | 0.085 kg | 0.085 kg | ||||||
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Product flow | Materials production / Other mineralic materials | 22.6 kg | 22.6 kg | ||||||
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Product flow | Materials production / Water | 6.030600000000001 kg | 6.030600000000001 kg | ||||||
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Product flow | Energy carriers and technologies / Electricity | 1009.8000000000001 MJ | 1009.8000000000001 MJ | ||||||
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Product flow | Materials production / Inorganic chemicals | 0.04 kg | 0.04 kg | ||||||
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Product flow | Materials production / Other materials | 28.0 kg | 28.0 kg | ||||||
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Product flow | Materials production / Inorganic chemicals | 0.38 kg | 0.38 kg | ||||||
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Product flow | Materials production / Inorganic chemicals | 2.1 kg | 2.1 kg | ||||||
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Product flow | Materials production / Raw materials | 5.19 kg | 5.19 kg | ||||||
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Product flow | Materials production / Inorganic chemicals | 8.27 kg | 8.27 kg | ||||||
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Product flow | Materials production / Inorganic chemicals | 21.74 kg | 21.74 kg | ||||||
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Product flow | Materials production / Glass and ceramics | 40.11 kg | 40.11 kg | ||||||
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Product flow | Energy carriers and technologies / Electricity | 17.64 MJ | 17.64 MJ | ||||||
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Product flow | Materials production / Plastics | 3.91 kg | 3.91 kg | ||||||
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Product flow | Wastes / Production residues | 5.44 kg | 5.44 kg | ||||||
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Product flow | Materials production / Raw materials | 5.17 kg | 5.17 kg | ||||||
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Product flow | Materials production / Other materials | 0.41 kg | 0.41 kg | ||||||
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Product flow | Energy carriers and technologies / Electricity | 2.3760000000000003 MJ | 2.3760000000000003 MJ | ||||||
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Product flow | Materials production / Other materials | 1.0 m3 | 1.0 m3 |
Outputs
Type of flow | Classification | Flow | Location | Mean amount | Resulting amount | Minimum amount | Maximum amount |
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Product flow | Materials production / Other materials | 1.0 m3 | 1.0 m3 |