Networks, stocks, and climate change: A new approach to the study of foreign investment and the environment

2022 ◽  
Vol 87 ◽  
pp. 102461
Author(s):  
Andrew Jorgenson ◽  
Rob Clark ◽  
Jeffrey Kentor ◽  
Annika Rieger
Author(s):  
M. John Plodinec

Abstract Over the last decade, communities have become increasingly aware of the risks they face. They are threatened by natural disasters, which may be exacerbated by climate change and the movement of land masses. Growing globalization has made a pandemic due to the rapid spread of highly infectious diseases ever more likely. Societal discord breeds its own threats, not the least of which is the spread of radical ideologies giving rise to terrorism. The accelerating rate of technological change has bred its own social and economic risks. This widening spectrum of risk poses a difficult question to every community – how resilient will the community be to the extreme events it faces. In this paper, we present a new approach to answering that question. It is based on the stress testing of financial institutions required by regulators in the United States and elsewhere. It generalizes stress testing by expanding the concept of “capital” beyond finance to include the other “capitals” (e.g., human, social) possessed by a community. Through use of this approach, communities can determine which investments of its capitals are most likely to improve its resilience. We provide an example of using the approach, and discuss its potential benefits.


2017 ◽  
Vol 142 (1-2) ◽  
pp. 301-309 ◽  
Author(s):  
Adam Seth Levine ◽  
Reuben Kline

2021 ◽  
Author(s):  
Ponnambalam Rameshwaran ◽  
Ali Rudd ◽  
Vicky Bell ◽  
Matt Brown ◽  
Helen Davies ◽  
...  

<p>Despite Britain’s often-rainy maritime climate, anthropogenic water demands have a significant impact on river flows, particularly during dry summers. In future years, projected population growth and climate change are likely to increase the demand for water and lead to greater pressures on available freshwater resources.</p><p>Across England, abstraction (from groundwater, surface water or tidal sources) and discharge data along with ‘Hands off Flow’ conditions are available for thousands of individual locations; each with a licence for use, an amount, an indication of when abstraction can take place, and the actual amount of water abstracted (generally less than the licence amount). Here we demonstrate how these data can be used in combination to incorporate anthropogenic artificial influences into a grid-based hydrological model. Model simulations of both high and low river flows are generally improved when abstractions and discharges are included, though for some catchments model performance decreases. The new approach provides a methodological baseline for further work investigating the impact of anthropogenic water use and projected climate change on future river flows.</p>


2019 ◽  
Vol 35 (3) ◽  
pp. 230-238
Author(s):  
Mehri Mirzaei Rafe ◽  
Khosrow Bagheri Noaparast ◽  
Afzal Sadat Hosseini ◽  
Narges Sajadieh

AbstractThis article will investigate the philosophy of science of Roy Bhaskar (1944–2014) as a coherent basis for environmental education. The work of Bhaskar serves as an in-depth approach to understanding how to apply critical realism (the critical and the realist) to matters such as environmental education, because he concretely theorises the connections between science, social change and metaphysics. By mobilising key Bhaskarian motifs — that is, the primacy of ontology over epistemology, the laminated system as a means to understand reality, the ways in which inquiry may be organised through the real, actual and the empirical, and the positive application of dialectics — this article constructs a new approach to environmental education and positions it in the field of environmental education by comparing it to posthumanism and the new materialisms. This article contains inquiry-based study outlines for enhanced thinking around: (1) climate change and social justice; (2) movements towards a carbon-free economy; (3) water, food and population; and (4) the future of human habitation.


2019 ◽  
Author(s):  
Inne Vanderkelen ◽  
Jakob Zschleischler ◽  
Lukas Gudmundsson ◽  
Klaus Keuler ◽  
Francois Rineau ◽  
...  

Abstract. Ecotron facilities allow accurate control of many environmental variables coupled with extensive monitoring of ecosystem processes. They therefore require multivariate perturbation of climate variables, close to what is observed in the field and projections for the future, preserving the co-variances between variables and the projected changes in variability. Here we present a new experimental design for studying climate change impacts on terrestrial ecosystems and apply it to the UHasselt Ecotron Experiment. The new methodology consists of generating climate forcing along a gradient representative of increasingly high global mean temperature anomalies and uses data derived from the best available regional climate model (RCM) projection. We first identified the best performing regional climate model (RCM) simulation for the ecotron site from the Coordinated Regional Downscaling Experiment in the European Domain (EURO-CORDEX) ensemble with a 0.11° (12.5 km) resolution based on two criteria: (i) highest skill of the simulations compared to observations from a nearby weather station and (ii) representativeness of the multi-model mean in future projections. Our results reveal that no single RCM simulation has the best score for all possible combinations of the four meteorological variables and evaluation metrics considered. Out of the six best performing simulations, we selected the simulation with the lowest bias for precipitation (CCLM4-8-17/EC-EARTH), as this variable is key to ecosystem functioning and model simulations deviated the most for this variable, with values ranging up to double the observed values. The time window is subsequently selected from the RCM projection for each ecotron unit based on the global mean temperature of the driving Global Climate Model (GCM). The ecotron units are forced with 3-hourly output from the RCM projections of the five-year period spanning the year in which the global mean temperature crosses the predefined values. With the new approach, Ecotron facilities become able to assess ecosystem responses on changing climatic conditions, while accounting for the co-variation between climatic variables and their projection in variability, well representing possible compound events. The gradient approach will allow to identify possible threshold and tipping points.


Subject Outlook for the mining sector. Significance Encouraged by this year’s price increases for most of Peru’s mineral exports, the government is seeking to push ahead with plans to attract much-needed foreign investment into the mining industry. This will involve politically contentious moves to deregulate some of the cumbersome procedures that affect investors. Impacts Next year’s growth target of 4% is probably over-optimistic. Social and environmental protests will add to the costs of mining investment in Peru. Once opposition has emerged to projects, it will prove difficult to reverse. Climate change will accentuate problems of water shortage for mining operations.


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