Wastewater treatment, Western Australia {AU}| | AusLCI, U

Unit process Australia v00.00.000

Domestic wastewater treatment in Perth as the largest city in Western Australia. Included processes: Energy inputs and Infrastructure materials for municipal wastewater treatment and greenhouse gas emissions and nutrient emission. Remark: Wastewater purified in a moderatly large municipal wastewater treatment plant. Direct emissions inlcuded in National Pollutant Inventory Reports have been included. Geography: Energy and emission data are specific to the region. Technology: Assume to mostly be three stage wastewater treatment (mechanical, biological, chemical) including sludge digestion (fermentation) according to the typical technology in Australia Version: 1.0 Record: Data entry by: Rahul Korattyile E-mail: info@lifecycles.com.au; Company: Lifecycles; Country: AU Generator: Data entry by: Rahul Korattyile E-mail: info@lifecycles.com.au; Company: Lifecycles; Country: AU

Sector
Waste Treatment
Contributor
—
Last updated
01 Jul 2020
Reference ID
ba6e93ea-6d39-344c-9cba-c965557c47f5

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Documentation

Quantitative reference
Wastewater treatment, Western Australia {AU}| | AusLCI, U
Sampling procedure
—
Creation date
01 Jul 2020
Is copyright protected
No
Is infrastructure process
No
Tags
waste treatment
Sources
Energy use in the provision and consumption of urban water /2012/Cook.S et al
National Greenhouse Gas Inventory/2019/Commonwealth of Australia
NPI data for year 2017/2019/Commonwealth of Australia

Technical inputs

Flow AmountUnitComment
Aluminium sulfate, without water, in 4.33% aluminium solution state {GLO}| market for aluminium sulfate, without water, in 4.33% aluminium solution state | Cut-off, U 0.0031512 kg direct wastewater treatment plant burden. Uncertainty calculated from wastewater composition and treatment model
Diesel, burned in building machine, <30 MW {AU}| | AusLCI, U 0.085731505741089 MJ —
Electricity, high voltage {AU}| electricity production, wind, >3MW turbine, onshore | Cut-off, U 0.0 MJ —
Electricity, high voltage {AU}| heat and power co-generation, biogas, gas engine | Cut-off, U 0.06763054082714741 MJ —
Electricity, low voltage {AU-WA-SWIS}| market for electricity, low voltage | AusLCI, U 2.57194517223267 MJ —
Heat, district or industrial, natural gas {RoW}| heat production, natural gas, at industrial furnace >100kW | Cut-off, U 0.0142885842901815 MJ —
Heat, liquefied petroleum gas, at industrial furnace >100kW/MJ/RER/adapted {AU}| | AusLCI, U 0.0428657528705445 MJ —
Iron sulfate {RoW}| market for iron sulfate | Cut-off, U 0.01166 kg direct wastewater treatment plant burden. Uncertainty calculated from wastewater composition and treatment model
Iron(II) chloride {GLO}| market for iron(II) chloride | Cut-off, U 0.015944 kg direct wastewater treatment plant burden plus burden from sludge incineration. Uncertainty calculated from wastewater composition and treatment model
Operation, van, petrol less than 3,5t {AU}| | AusLCI, U 0.020661292883602446 km [ The original product with unit "MJ" (Energy) was automatically replaced by SimaPro with the current product with unit "km" (Length) using conversion factor 0.241 km/MJ. ]
Sewer grid, 1E9l/year, 30 km {GLO}| market for sewer grid, 1E9l/year, 30 km | Cut-off, U 0.000000218 km Based on econivent process
Wastewater treatment facility, capacity 1E9l/year {GLO}| market for wastewater treatment facility, capacity 1E9l/year | Cut-off, U 0.00000000569 Item(s) Based on econivent process

Elementary flow outputs

Flow CompartmentSub-compartment AmountUnitComment
Ammonia, as N Emissions to waterocean 0.0052570067161541185 kg —
BOD5 (Biological Oxygen Demand) Emissions to waterocean 6.080000000000005 g —
COD (Chemical Oxygen Demand) Emissions to waterocean 13.640000000000011 g —
Dinitrogen monoxide Emission to airhigh population density 0.0009756588900671617 kg —
Methane, non-fossil Emission to airhigh population density 0.01479749346058678 kg —
Nitrogen, total Emissions to waterocean 0.0182776394485684 kg —
Phosphorus, total Emissions to waterocean 0.005374188759278897 kg —
Suspended solids, unspecified Emissions to waterocean 7.640000000000007 g —
Water Emissions to waterocean 1.0 t —

Other

Flow AmountUnitComment
Wastewater treatment, Western Australia {AU}| | AusLCI, U 1.0 m3 —

Parameters

NameValueFormulaDescription
N2Oemission — EFeffN2OFactor*NitrogenEff*N2Ofactor kg N2Oe
WWatervol 141.45 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
TSSReduction 0.98 — (5,5,5,5,5,5)
EFeffN2OFactor — — (6,3,1,2) WASTEWATER TREATMENT AND DISCHARGE
SplitOtherEnerg 40465.04956923461 EI_other*WWatervol/(WWatervol+Watervol) —
Maginalsupply 13.0 — (4,5,1,1,3,5), MJ per kl. Assumed energy from marginal water supply for this city based on desaliation.
LPGTotal 6063.360743538518 LPGFrac*WastewaterEn —
N2O 0.0009756588900671617 138006.95/WWatervol/1000000 —
EI_wwaterpump 93192.0 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
DieselSupperkl 0.085731505741089 DieselTotal/WWatervol/1000 MJ/kl
GridFrac 0.9 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
NaturalGasFrac 0.005 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
WastewaterEn 404224.0495692346 (EI_wwaterpump+EI_wwatertreat+SplitOtherEnerg) —
Pinfluent 22.6 — (4,5,1,3,1,5)
TotalA 0.0052570067161541185 743603.6/WWatervol/1000000 —
NatgasSupperkl 0.0142885842901815 NatGasTotal/WWatervol/1000 MJ/kl
EI_watertreat 702429.0 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
DieselTotal 12126.721487077037 DieselFrac*WastewaterEn —
Watervol 259.0 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
NitrogenEff 0.085162 (Ninfluent*NReduction)/1000 kg Ne
Renewsupplyperkl — RenewTotal/WWatervol/1000 MJ/kl
FuelSupperkl — FuelTotal/WWatervol/1000 MJ/kl
BODreduction 0.98 — (5,na,na,na,na,na)
EthanolTotal — EthanolFrac*WastewaterEn —
BODremovedinSludge 0.29 — Fsl - Fraction of BOD in wastewater removed as sludge by plant
PetrolTotal 12126.721487077037 Petrolfrac*WastewaterEn —
CH4 0.01479749346058678 2093105.45/WWatervol/1000000 —
CODReduction 0.98 — (5,5,5,5,5,5)
TSSinfluent 382.0 — (4,5,1,3,1,5)
SelfGenTotal 9566.34 SelfGenFrac*(EI_wwaterpump+EI_wwatertreat+EI_other) —
EthanolFrac — — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
BODinfluent 304.0 — (4,5,1,3,1,5)
LowEmTotal — LowEmissFrac*WastewaterEn —
EFCO2eCodRemoval — — Efw - Default methane emission factor for waste water 5.30 t CH4/ t
DieselFrac 0.03 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
RenewTotal — RenewFrac*WastewaterEn —
SludgeEmission — CODtreated*BODremovedinSludge*EFCH4CodRemoval —
CODEmission — (1-BODremovedinSludge)*CODtreated*EFCH4CodRemoval Wastewater emissions [COD*(1-Fsl)*MCFww*Efw]
FuelFrac — — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
RenewFrac — — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
EI_wwatertreat 270567.0 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
Ninfluent 86.9 — (4,5,1,3,1,5)
LowEmissFrac — — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
LPGSupperkl 0.0428657528705445 LPGTotal/WWatervol/1000 MJ/kl
Lowesupplyperkl — LowemTotal/WWatervol/1000 MJ/kl
EI_other 114558.0 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
TotalN 0.0182776394485684 2585372.1/WWatervol/1000000 —
LPGFrac 0.015 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
CODtreated 0.3 — MCFww (and MCFsl) - fraction of COD anaerobically treated
EI_waterpump 314523.0 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)
EthanolSupperkl — EthanolTotal/WWatervol/1000 MJ/kl
EFCH4CodRemoval — EFCO2eCodRemoval/23 —
TotalP 0.005374188759278897 760179/WWatervol/1000000 —
N2Ofactor 1.5714 — Conversion factor of kg N2O-N to kg N2O
PetrolSupperkl 0.085731505741089 PetrolTotal/WWatervol/1000 MJ/kl
NReduction 0.98 — (5,5,5,5,5,5)
Gridsupplyperkl 2.57194517223267 GridTotal/WWatervol/1000 MJ/Kl
NatGasTotal 2021.120247846173 NaturalGasFrac*WastewaterEn —
PetrolFrac 0.03 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
FuelTotal — FuelFrac*WastewaterEn —
PReduction 0.98 — (5,5,5,5,5,5)
EnergyperKL 2.8577168580363 (WastewaterEn)/WWatervol/1000 MJ/kl
Selfsupplyperkl 0.06763054082714741 SelfGenTotal/WWatervol/1000 MJ/kl
CODinfluent 682.0 — (4,5,1,3,1,5)
SelfGenFrac 0.02 — (2,1,1,1,1,5) GJ, Cook, S. Hall. M. and Gregory, A. (2012)-based on derived energy
Gridtotal 363801.64461231115 GridFrac*WastewaterEn —