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Infrastructure for water security: coping with risks in rural Kenya
Author(s) -
Leigh C. Hamlet,
Mark Mwiti Kamui,
Jessica Kaminsky
Publication year - 2020
Publication title -
journal of water sanitation and hygiene for development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.414
H-Index - 22
eISSN - 2408-9362
pISSN - 2043-9083
DOI - 10.2166/washdev.2020.038
Subject(s) - critical infrastructure , rainwater harvesting , water security , business , environmental planning , water infrastructure , green infrastructure , natural hazard , context (archaeology) , environmental resource management , resilience (materials science) , water resources , water supply , engineering , environmental science , geography , computer security , environmental engineering , ecology , physics , thermodynamics , archaeology , meteorology , computer science , biology
Achieving universal access to sufficient water is becoming more challenging as climate change exacerbates water insecurity. Previous studies of water insecurity and climate-related hazards recommend understanding how people perceive and manage water-related risks. By uniquely combining protection motivation theory and photovoice, we explore water infrastructure's function in rural Kenyan households’ perception and mitigation of water-related risk. We find that infrastructure construction provides a sense of security, regardless of long-term management plans. During the dry season, built infrastructure's viability to mitigate risk is strained due to natural infrastructure's unreliability. In the context of limited built infrastructure, natural infrastructure, though unimproved, is necessary for water security. In the expected absence of large-scale infrastructure projects, for water authorities in rural Kenya, we recommend the construction of small-scale infrastructure to increase reliance upon rainwater harvesting and lessen the strain on other built infrastructure during the dry season. Coupling our method with an itemized scale can help explain discrepancies between actual insecurity and individuals’ responses to help water authorities predict interventions’ effectiveness and inform the division of responsibilities in policies intended to promote sustainable infrastructure management. We also recommend our method for assessing water infrastructure's role among households managing multiple climate-related risks to expand the resilience of the infrastructure.

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