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Misria

New social and environmental obligations are now imposed on transnational companies. They are now responsible for the concrete implementation of these obligations and are developing a set of practices to measure, prevent and remedy their environmental impact. These “corporate transition policies” (Lhulier & Tenreira, 2023) are at the frontier of law, management and natural sciences (mapping, indicators, thresholds), thus constitutive of a new co-produced scientific-normative space. A qualitative Science & Technology (STS) analysis on the basis of corporate documents and other collective practices is useful in order to describe this “corporate assemblages” (Tenreira, 2023), especially using Jasanoff's four-tiered analysis. The case study analysis reveals that the firm Decathlon refers to the 9 planetary limits ("experts/identities" N°1). It also refers to "institutions" (N°2) such as Sciences Based Target. The analysis of the "discourses" (N°3) shows that Decathlon's commitment actually appears largely declarative. The firm falls short of adopting concrete methodologies for calculating its ecological footprint, thereby highlighting a gap between rhetoric and action. This discrepancy presents a unique "representation" (N°4) of science, which permits the company a considerable degree of latitude in employing or constructing scientific indicators according to its “discretion”. At this stage of the analysis, it is thus possible to “problematize” (Laurent, 2022) corporate objects as corporate assemblages. The next steps of the analysis would nevertheless require other methodological approaches to “assess reflexively” these assemblages regarding an “rhizomatic ecological reality”.

Image : Tomas Saraceno, "Galaxies Forming along Filaments, Like Droplets along the Strands of a Spider’s Web", 2009, in Bruno Latour

Tenreira, Luca. 2023. "The construction of an episteme of objectification of corporate practices in the field of transition." In 4S Paraconference X EiJ: Building a Global Record, curated by Misria Shaik Ali, Kim Fortun, Phillip Baum and Prerna Srigyan. Annual Meeting of the Society of Social Studies of Science. Honolulu, Hawai'i, Nov 8-11.

Lead Hazard

karishmakkhanal
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WHAT (& WHAT FOR): Lead is a metal often found in pipes, and in old paint (before it was banned in paint in the late 1970s). Before 1996, lead also found in vehicle fuel resulting in  soil contamination in many communities from both paint dust and vehicle pollution. 

HEALTH IMPACT: Lead is a neurotoxin and is known to have no safe blood lead level in children. 

Has been linked to:

  1. Brain swelling, anemia, seizures, renal failure, reduced IQ, and ADHD

  2. Damages brain development in children

  3. Connected to behavioral problems like aggression and bullying, and internalizing problems such as depression and anxiety 

LOCAL IMPACT: Recent research in Santa Ana has shown that there is a disproportionately impact of solid lead contamination crisis on lower income, people of color communities. 

POSSIBLE RESPONSES: There are many ways to respond to lead contamination:

  1. Providing special health care for children with high blood lead levels, and investigating possible sources of lead exposure in homes, daycares and school, playground, etc.

  2. Implement strict housing policies where landlord and city housing officials are required to have lead inspections of homes for lead paint hazards (especially in low income, people of color communities)

  3. Requiring a minimum reduction standard for lead paint in older homes 

  4. Requiring blood lead level test as part of the routine check up for children (extremely important for children in low-income housing)