The Biorefinery Simulation and Techno-Economic Analysis Modules
-
Updated
Sep 5, 2026 - Python
The Biorefinery Simulation and Techno-Economic Analysis Modules
BioSTEAM's Premier Repository for Biorefinery Models and Results
Quantitative Sustainable Design (QSD) of sanitation and resource recovery systems.
pyH2A is a Python framework for the analysis of hydrogen production cost
Tool to estimate the hydropower potential of a run of the river site.
OpenPyTEA: An open-source python toolkit for techno-economic assessment of process plants with economic sensitivity and uncertainty evaluation
EXPOsition of sanitation and resource recovery systems
Global Satellite Assessment Tool (GlobalSAT)
BioSTEAM-Assisted Educational Resources
POSTED: Potsdam open-source techno-economic database
This repository contains the MATLAB codes used for the design, simulation, techno-economic analysis (TEA), and life cycle assessment (LCA) of different anaerobic membrane bioreactor (AnMBR) configurations and the conventional activated sludge (AS) process.
Recovery of rare Earth Elements from Phosphogypsum System
This repository contains the MATLAB scripts used for techno-economic analysis (TEA) and life cycle assessment (LCA) for different perchlorate removal technologies.
This repository contains a model designed to evaluate the resource recovery potential, economics, and greenhouse gas emissions associated with three sanitation scenarios (the existing sanitation system and two alternatives) in Bwaise, Uganda.
ReFlowLab is a toolkit for the calculation of capital costs of redox flow batteries.
Techno-economic renewable energy simulator for Pakistan — solar PV, wind and wave modelling, LCOE, NPV, IRR, sensitivity and Monte Carlo risk.
A proposed open standard for representing TEA–LCA pathways in a structured, machine-readable format.
Techno-economic models for desalination and brine treatment technologies
Pakistan solar calculator for homes, businesses and industry — solar, battery and inverter sizing, bill forecasts, quote checks and Monte Carlo risk.
Designed an integrated green ammonia process covering renewable H2 production, N2 separation, Haber–Bosch synthesis, recycle/purge, NH3 recovery, energy analysis and techno-economic optimization, with Aspen Plus validation workflow and sensitivity analysis for electricity cost and process parameters.
To associate your repository with the techno-economic-analysis topic, visit your repo's landing page and select "manage topics."