scholarly journals Climate change adaptation: a pragmatic approach for assessing vulnerability

2018 ◽  
Vol 14 (1) ◽  
pp. 172-177
Author(s):  
M. Carvalho ◽  
B. Martins ◽  
J. P. Coelho ◽  
N. Brôco ◽  
A. K. Ribeiro ◽  
...  

Abstract The impacts of climate change on society are becoming increasingly evident. The water sector is sensitive to variations in climatic patterns as it is expected that major changes in flows will occur, along with increased risks of water quality degradation and flooding. According to published climate scenarios the Mediterranean area will become dryer. As a leading group operating in the water sector in Portugal, AdP decided to develop a strategic plan for climate change adaptation with the aim of establishing a strategy for reducing business vulnerability and increasing systems resilience. In developing the plan, a pragmatic method was adopted for characterizing current vulnerabilities. This was founded on the bottom-up approach and supported with past events data, including evaluating their impacts, and the adaptive capacity of systems and utilities to climate extremes. In water supply, the effects of more severe and frequent extreme events are being felt with respect to water quality and availability, representing as much as 80% of the events studied, whereas, in terms of sanitation, floods account for about 90% of events identified. Globally, 78% and 21% of the measures adopted in water supply and wastewater management, respectively, were effective.

Atmosphere ◽  
2021 ◽  
Vol 12 (3) ◽  
pp. 296
Author(s):  
Andreas Matzarakis ◽  
Sorin Cheval ◽  
Tzu-Ping Lin ◽  
Oded Potchter

Facing the impacts of climate change and urbanization, adaptation and resilience to climate extremes have become important issues of global concern. [...]


2016 ◽  
Vol 52 (2) ◽  
pp. 622-643 ◽  
Author(s):  
Edoardo Borgomeo ◽  
Mohammad Mortazavi-Naeini ◽  
Jim W. Hall ◽  
Michael J. O'Sullivan ◽  
Tim Watson

2021 ◽  
Author(s):  
Katalin Demeter ◽  
Julia Derx ◽  
Jürgen Komma ◽  
Juraj Parajka ◽  
Jack Schijven ◽  
...  

<p><strong>Background</strong>: Rivers are important sources for drinking water supply, however, they are often impacted by wastewater discharges from wastewater treatment plants (WWTP) and combined sewer overflows (CSO). Reduction of the faecal pollution burden is possible through enhanced wastewater treatment or prevention of CSOs. Few methodological efforts have been made so far to investigate how these measures would affect the long-term treatment requirements for microbiologically safe drinking water supply under future changes.</p><p><strong>Objectives</strong>: This study aimed to apply a new integrative approach to decipher the interplay between the effects of future changes and wastewater management measures on the required treatment of river water to produce safe drinking water. We investigated scenarios of climate change and population growth, in combination with different wastewater management scenarios (i.e., no upgrades and upgrades at WWTPs, CSOs, and both). To the best of our knowledge, this is the first study to investigate this interplay. We focussed on the viral index pathogens norovirus and enterovirus and made a cross-comparison with a bacterial and a protozoan reference pathogen (Campylobacter and Cryptosporidium).</p><p><strong>Methods</strong>: We significantly extended QMRAcatch (v1.0 Python), a probabilistic-deterministic model that combines virus fate and transport modelling in the river with quantitative microbial risk assessment (QMRA). To investigate the impact of climatic changes, we used a conceptual semi-distributed hydrological model and regional climate model outputs to simulate river discharges for the period 2035 – 2049. We assumed that population growth leads to a corresponding increase in WWTP discharges. QMRAcatch was successfully calibrated and validated based on a four-year dataset of a human-associated genetic MST marker and enterovirus. The study site was the Danube in Vienna, Austria.</p><p><strong>Results</strong>: In the reference scenario, approx. 98% of the enterovirus and norovirus loads at the study site (median: 10<sup>10</sup> and 10<sup>13</sup> N/d) originated from WWTP effluent, while the remainder was via CSO events. The required log reduction value (LRV) to produce safe drinking water was 6.3 and 8.4 log<sub>10</sub> for enterovirus and norovirus. Future changes in population size, river flows and CSO events did not affect these treatment requirements, and neither did the prevention of CSOs. In contrast, in the scenario of enhanced wastewater treatment, which showed lower LRVs by 2.0 and 1.3 log<sub>10</sub>, climate-change-driven increases in CSO events had a considerable impact on the treatment requirements, as they affected the main pollution source. Preventing CSOs and installing enhanced treatment at the WWTPs together had the most significant positive effect with a reduction of LRVs by 3.9 and 3.8 log<sub>10</sub> compared to the reference scenario.</p><p><strong>Conclusions</strong>: The integrative modelling approach was successfully realised. The simultaneous consideration of source apportionment and concentrations of the reference pathogens were found crucial to understand the interplay among the effects of climate change, population growth and pollution control measures. The approach was demonstrated for a study site representing a large river impacted by WWTP and CSO discharges, but is applicable at other sites to support long term water safety planning.</p>


Author(s):  
Gerald T. Orlob ◽  
Gabriela K. Meyer ◽  
László Somlyódy ◽  
Danuta Jurak ◽  
Karolý Szesztay

Author(s):  
Marie Davidova ◽  
Dana Rakova

The research claims that traditions are not static. They develop and adapt based on the present situation. Due to the recent climate extremes coming to formally mild climate locations, their architectures can learn from traditional ones from more climate extreme locations. The present systemic design study on semi-interior, ‘non-discrete spaces’ (Hensel, 2013; Hensel & Turko, 2015), of Norwegian traditional architectures, so called ‘svalgangs’ and ‘skuts’ examine its reuse for today climate change adaptation and support of biodiversity that is currently decreasing. Our agricultural land become so toxic, that its species are recently moving and adapting for life in the cities. The discussed traditional spaces offer various boundary penetration of its surrounding environment while providing mediation of its biotic and abiotic agency. These do not cover only anthropocentric benefits for its users such as light and climate comfort but also offer opportunities of communication with other species or their sheltering. This practitioners’ historical research survey motivated by design co-developes its own systemic process based methodology Systemic Approach to Architectural Performance that originates from ‘Systems Oriented Design’ (Sevaldson, 2013b) and ‘Time Based Design’ (Sevaldson, 2004). Where, this ‘non-anthropocentric architecture’ (Hensel, 2012) is in over-evolving co-design with ambient environment’s abiotic and biotic agents, including humans.


SAGE Open ◽  
2019 ◽  
Vol 9 (3) ◽  
pp. 215824401986420 ◽  
Author(s):  
Asnarulkhadi Abu Samah ◽  
Hayrol Azril Mohamed Shaffril ◽  
Azimi Hamzah ◽  
Bahaman Abu Samah

This study aims to examine the influence of individual differences on the small-scale fishermen’s climate change adaptation practices toward climate change. This is a descriptive correlational study on 400 small-scale fishermen living in four climate change–affected areas in Malaysia, which were selected based on a multistage cluster sampling. In conclusion, it was found that age, income, and fishing experience recorded a significant relationship with climate change adaptation practices, whereas their household size did not yield any relationship with the adaptation practices. Furthermore, a number of small-scale fishermen who use fisheries technologies, have alternative jobs, and possess higher education have recorded better climate change adaptation practices compared with nonusers, full-timers, and less educated fishermen. Several recommendations were made to assist the concerned parties in developing better adaptation strategies that are fitted to the fishermen’s needs, interests, and abilities.


2019 ◽  
Vol 2 (4) ◽  
pp. 899-921 ◽  
Author(s):  
Nithya Natarajan ◽  
Katherine Brickell ◽  
Laurie Parsons

An emerging body of work has critiqued the concept of climate adaptation, highlighting the structural constraints impeding marginalised communities across the Global South from being able to adapt. This article builds on such work through analysis of debt-bonded brick workers in Cambodia, formerly small farmers. It argues that the detrimental impacts of climate change experienced by farmers-turned-workers across the rural – urban divide is due to their precarity. In doing so, this article draws on a conceptualisation of precarity which recognises it as emerging from the specific political economy of Cambodia, and as something that is neither new, nor confined to conditions of labour alone. As such, in looking to precarity as a means of conceptualising the relations of power which shape impacts of climate change, we advance a ‘climate precarity’ lens as a means of understanding how adaptation to climate change is an issue of power, rooted in a specific geographical context, and mobile over the rural–urban divide.


Climate Law ◽  
2011 ◽  
Vol 2 (3) ◽  
pp. 299-344 ◽  
Author(s):  
Yee Huang ◽  
Robert L. Glicksman ◽  
Catherine O’Neill ◽  
William L. Andreen ◽  
Victor Flatt ◽  
...  

Regardless of the efforts governments may take to mitigate the impacts of greenhouse gas emissions and other human activities on climate change, the need for society to adapt to climate change is unavoidable. Adapting to the myriad impacts of climate change will require actions at all levels of government. This article focuses on the anticipated impacts of climate change on the Puget Sound region in the northwestern United States as an example of the range of problems climate change will present and of the solutions available to governments and others interested in avoiding or minimizing the adverse impacts of climate change. As a guide for policy-makers, the article offers general principles for formulating climate change adaptation policies, suggestions for changes in decision-making processes that make them more suitable for addressing the unpredictable impacts of climate change, and strategies for adapting to three specific categories of climate change effects: impacts on the hydrologic cycle, sea-level rise, and altered meteorological conditions. The strategies and recommendations analysed in the article can provide a model for climate change adaptation policies, both in the Puget Sound region and more broadly, that are both environmentally protective and socially equitable.


2008 ◽  
Vol 22 (10) ◽  
pp. 1477-1497 ◽  
Author(s):  
Jeffrey K. O’Hara ◽  
Konstantine P. Georgakakos

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