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Tomer Fishman

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How Terminological and Conceptual Distinctions Constrain Integration Between Material Flow Analysis Data, Supply-Use Tables and Input-Output Tables

Master thesis (2025) - N.T. 't Mannetje, Arjan De Koning, Tomer Fishman, Ranran Wang
Despite similarities between Material Flow Analysis (MFA) and Input-Output Analysis (IOA), integration between the two has so far remained limited. This thesis conducts a critical comparison eleven to better undistinct data types used in MFA and IOA, to better understand what obstacles hold back integration. Unlike earlier studies, which focused on similarities in purpose and data structure, the emphasis of this thesis is on terminology and conceptual interpretation, which until now have not been clearly reviewed and articulated.

Key contributions of this thesis include conceptual clarification and recommendations on the use of terminology, as well as a method-neutral conceptual framework to use where conventional terminology proved insufficiently precise. Together, these strategies improve conceptual clarity and precision, reduce misunderstandings when discussing multiple data types simultaneiously, and make it easier to discuss conceptual similarities between data types.

The critical comparison, conducted with help of a novel conceptual mapping approach, finds that differences between MFA data, Supply-Use Tables (SUTs), Input-Output Tables (IOTs), and their subtypes stem from four key sources: (i) a lack of terminological alignment between MFA and IOA; (ii) misalignment of system boundaries and disaggregation schemes; (iii) varying units-of-account; and (iv) the one-to-one correspondence requirement between products and industries in IOTs. Only the latter two relate to fundamental characteristics of data types. Misalginment of terminology, system boundaries and disaggregation schemes could in principle be addressed by revising or adapting established conventions.

From these findings, the conclusion is drawn that no insurmountable barriers stand in the way of integration or unification MFA data with Physical Supply-Use Tables (PSUTs). Because the System of National Accounts (SNA) and System of Environmental-Economic Accounting (SEEA) are already well-established and guarantee alignment with a broad range of other economic statistics, the most promising route to integration seems to be for MFA practitioners to seek alignment with these frameworks and/or adopt a PSUT format for storing data. This would increase the comparability and reusability of material stock and flow data, while also strenghtening the case for systematic data collection.

Finally, this thesis emphasizes that differences between monetary and physical data cannot be overcome with simple unit conversions, even when using sophisticated models such as WIO-MFA. It therefore points to multilayer Hybrid Supply-Use Tables (HSUTs) as a promising approach to integrate monetary and physical data for comprehensive analyses of socio-economic metabolism. ...

A pilot study on the effect of biobased insulation materials on human wellbeing

Master thesis (2023) - T. van Hoorn, C.J. van Oel, Tomer Fishman
The Dutch government is aiming to transition towards a fully circular economy by 2050 to mitigate climate change. To comply with these standards, a transition team for the construction sector has identified biobased materials as a cornerstone for the sector to become circular, enabling a crucial shift because of the sector's large contribution to carbon emissions and environmental pollution. Principles on which this shift relies are focused on environmental health while neglecting human wellbeing, especially mental health as one of the building blocks of human wellbeing (the other being physical health), albeit of great importance due to the significant amount of time humans spend indoors. Mental health is defined by life satisfaction and happiness and is measured through perception and experience. A two-way path is identified: from mental and physical health to human wellbeing.
This research aims at identifying the effect of biobased insulation materials on the wellbeing of residents through a pilot study in the Netherlands. Individuals' perceptions and experiences of their living environments—specifically, their homes—serve as the basis for measuring wellbeing in this context.
A mixed method is used, combining quantitative and qualitative results from a discrete choice experiment in a virtual reality environment. Participants were presented with three sets of two predetermined configurations. For every set, participants were asked to make a discrete choice between the two alternatives.
The results were analysed using a Cox proportional hazard model in SPSS. The quantitative and qualitative data showed several discrepancies, but both emphasised the importance of indoor comfort. It is concluded that biobased insulation materials that ensure good indoor comfort are preferred over materials that don’t. Additionally, the importance of low maintenance needs and a small wall diameter is emphasised to lead to a preferred living environment and thus increased wellbeing.
Recommendations to move the model beyond a pilot include diversifying the sample population, materials, and attributes that are presented while aligning these with the target audience, including non-expert views throughout the development of the model, and revealing associations with the materials.
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