scholarly journals Effect of physical and chemical weathering on water resources: A glacial assessment

2017 ◽  
Vol 5 (01) ◽  
Author(s):  
Sipika Sundriyal ◽  
Tanuj Shukla ◽  
Sanjay Shukla

Global climate change has a huge impact on our environment. The shrinking of the glaciers has affected not only the rivers and lakes but also the animals and birds. According to IPCC reports, climatic change is adversely affecting the glaciers and the trend will increase with the passage of time. The green house gases added by human activities are increasing the global temperature. Some glaciers are receding by 20 meters per year while few smaller ones have vanished or have come on the verge of extinction. The most of the rivers of South Asia like Ganga, Yamuna, Sindhu, Brahmaputra, etc. are fed by glaciers. In the absence of glaciers, these rivers will become seasonal rivers. This will affect lives of millions of people residing in their respective valleys/ plains, and have to face drought and flood frequently. In this research, the physical parameter of water has been studied in relation to the climate change, and their effects of glacier have been summed up. Over the past few decades, melting and retreat of the glaciers of the Himalayas have emerged as a major problem. In many Himalayan states, various types of efforts and research are being done to preserve the glaciers, to overcome the water crisis and climate change problem in future.

2011 ◽  
Vol 12 (5) ◽  
pp. vii-670
Author(s):  
Ahmad S.A.S. AL-TAYER ◽  
A.F.M. MANIRUZZAMAN

Author(s):  
Alix Dietzel

Chapter Four sets out the parameters for the cosmopolitan assessment of climate governance. The chapter first provides overview of the processes involved in global climate change governance: multilateral (United Nations Framework for the Convention on Climate Change, or UNFCCC) and transnational (cities, corporations, NGOs, sub-state authorities). Following this, Chapter Four outlines why actors in the UNFCCC and actors involved in transnational governance processes can be held responsible for bringing about a just response to the climate change problem. The chapter grounds the responsibility of these actors in their capability to enable the three demands of justice set out in Chapter Three by restructuring the social and political context. Finally, Chapter Four outlines a methodological framework to clarify how current practice will be assessed. This framework is based on a four-point hierarchy that can be used to investigate to what extent global governance actors enable each demand of justice.


2017 ◽  
Author(s):  
Pei Hou ◽  
Shiliang Wu ◽  
Jessica L. McCarty

Abstract. Wet deposition driven by precipitation is an important sink for atmospheric aerosols and soluble gases. We investigate the sensitivity of atmospheric aerosol lifetimes to precipitation intensity and frequency in the context of global climate change. Our study, based on the GEOS-Chem model simulation, shows that the removal efficiency and hence the atmospheric lifetime of aerosols have significantly higher sensitivities to precipitation frequencies than to precipitation intensities, indicating that the same amount of precipitation may lead to different removal efficiencies of atmospheric aerosols. Combining the long-term trends of precipitation patterns for various regions with the sensitivities of atmospheric aerosols lifetimes to various precipitation characteristics allows us to examine the potential impacts of precipitation changes on atmospheric aerosols. Analyses based on an observational dataset show that precipitation frequency in some regions have decreased in the past 14 years, which might increase the atmospheric aerosol lifetimes in those regions. Similar analyses based on multiple reanalysis meteorological datasets indicate that the precipitation changes over the past 30 years can lead to perturbations in the atmospheric aerosol lifetimes by 10 % or higher at the regional scale.


Author(s):  
Alice Vilela

In recent years, wine consumers have been looking for fruitier wines, with less ethanol, but presenting a good balance in terms of mouthfeel. However, due to the effects of global climate change, wines can be more alcoholic and flatter in terms of acidity. If in the past, non-Saccharomyces yeasts were often considered as spoilage yeasts, now they are used to modulate wine composition, namely in terms of aroma and acidity. In this article, the ability of some non-Saccharomyces yeasts to modulate wine acidity is reviewed.


Author(s):  
Jaryna Turchyn ◽  

The article considers peculiarities of climate strike as a new instrument that might stop climate change as a biggest challenge of the present. The author outlines main reasons that prompted Swedish schoolgirl Greta Thunberg to initiate school strikes for the climate. It is explained about environmental activism as a movement of representatives of various groups of individuals and organizations that work in collaboration in social, scientific, political and conservational fields with the main purpose of addressing environmental concerns. It has been analyzed an origin, goals, methods and tools of the climate strike activities of 350.org as an international environmental organization addressing the climate crisis. Special attention is paid to hydraulic fracturing, or fracking as a technique designed to recover gas and oil from shale rock. Based on US fundamental research, the author underlines dangers and risks of fracking due to earth tremor concerns as well as possibility of escaping of potentially carcinogenic chemicals during drilling and contaminating groundwater around the fracking site. Besides of FridaysforFuture and 350.org movements addressed climate crisis author describes the history, main goals, vision and strategy of the Extinction Rebellion movement. It is emphasized that Extinction Rebellion created with the aim of using nonviolent civil disobedience to compel government action to avoid tipping points in the climate system, biodiversity loss, and the risk of social and ecological collapse. It is underlined that activists often violate public order; most of them during protests accept arrest and imprisonment. It has been mentioned that 2019 was the year of climate change and because of coronavirus disease global climate strike nowadays moved online. The author draws conclusion, pointing that acknowledge the reality of climate change, cooperation of all stakeholders and far-sighted leadership are among the fundamentally important steps that must be taken to achieve the goals and consolidate countries around the global climate change problem.


2020 ◽  
Vol 12 (17) ◽  
pp. 7038
Author(s):  
Kirtika Deo ◽  
Abhnil Amtesh Prasad

Climate change has become one of the most debated topics in recent times. The social media platforms have given the general public the power and propensity to share and express concerns about climate change. However, climate change awareness created on social media depends on user engagement with the contents modulated by emotions. Much has been researched in this area using Twitter, but Facebook fan-based pages have not been extensively explored in the past. In this study, we investigate the engagement behaviour of users on a Facebook fan-based page titled “Global Climate Change Awareness” by analysing user insights data for two years starting from April 2018 to April 2020. Results show that the frequency of posts made to the page did not significantly promote engagement but improved visibility of the contents to the users. Overall, fan growth was attributed more to increased post visibility that enhanced post engagement. Hashtags associated with climate change had a significant reach amongst users, but those associated with disasters where the page expressed sadness and informed users about taking precautions had the highest engagement rate. Likewise, users from developing countries, especially from the small islands, were more engaged with climate change awareness. This study did not assess negative responses from users (possible deniers of climate change) and other Facebook fan-based pages due to data privacy and stringent Facebook policy.


2021 ◽  
Author(s):  
Guan Wang ◽  
Fengmin Luo ◽  
Zhiming Xin ◽  
Junran Li ◽  
Huijie Xiao

<p>The windbreak system is a major component of successful agricultural systems in arid deserts throughout the world. Ulan Buh Desert is one of the eight biggest deserts in China, and the oases there offer residence and cropland for over 90% of the local residents. However, due to climate change and human disturbances, the Ulan Buh Desert continues spreading to the south, bringing more pressure on the windbreak systems there. Meanwhile, the Chinese government put much effort into greening the desert, establishing artificial shrubs to prevent dune movement and soil loss. How microclimate in the cropland-windbreak-desert system responded to human activities and climate change has rarely been studied. In this study, we investigated the microclimate change dynamics across the cropland-windbreak-desert transition zone during the past 38 years. Two 50 m climatological towers, located in the same distance inner and outside a shelterbelt, have continuously monitored climatic factors, including air temperature, soil temperature, relative humidity, precipitation, evaporation, layered wind speeds, etc., and aeolian erosion related factors, such as layered dustfall. The long-time fluctuations of the inside and outside climatic factors have been analyzed, and the global climate change data, local land-use history, as well as the record of afforestation activities implemented by government and local people, were also collected. The results revealed that both the inside and outside windbreak air temperatures and soil temperatures increased during the past 38 years, which agrees with the global warming phenomenon. The inner windbreak air temperature is consistently lower than the outer windbreak areas, and the temperature difference is biggest in summer and smallest in winter. However, the soil temperature difference between the outside and inner windbreak is unstable. In 1995, 2002, and 2004, the dune areas even had lower soil temperature than the inner cropland. The precipitation is 0.5~100.7mm higher in cropland and the evaporation is lower in cropland when comparing to outside dune areas, but their annual variations changed greatly. The wind speed and erosion rate are significantly lower in cropland than desert dune areas, and the seasonal change exhibited a bimodal curve pattern. The results suggest that the cropland-windbreak-desert transition zone responded to global climate change simultaneously. Although the shelterbelt still creates a favorable regional climatic condition for the cropland, the differences between the inner and outer windbreak areas narrowed during the past 10 years. The aeolian erosion rate reduced significantly in outside windbreak dune areas, which may largely attribute to the artificial Haloxylon ammodendron communities planted at the southeastern margin of the desert.</p>


2018 ◽  
Vol 18 (11) ◽  
pp. 8173-8182 ◽  
Author(s):  
Pei Hou ◽  
Shiliang Wu ◽  
Jessica L. McCarty ◽  
Yang Gao

Abstract. Wet deposition driven by precipitation is an important sink for atmospheric aerosols and soluble gases. We investigate the sensitivity of atmospheric aerosol lifetimes to precipitation intensity and frequency in the context of global climate change. Our sensitivity model simulations, through some simplified perturbations to precipitation in the GEOS-Chem model, show that the removal efficiency and hence the atmospheric lifetime of aerosols have significantly higher sensitivities to precipitation frequencies than to precipitation intensities, indicating that the same amount of precipitation may lead to different removal efficiencies of atmospheric aerosols. Combining the long-term trends of precipitation patterns for various regions with the sensitivities of atmospheric aerosol lifetimes to various precipitation characteristics allows us to examine the potential impacts of precipitation changes on atmospheric aerosols. Analyses based on an observational dataset show that precipitation frequencies in some regions have decreased in the past 14 years, which might increase the atmospheric aerosol lifetimes in those regions. Similar analyses based on multiple reanalysis meteorological datasets indicate that the changes of precipitation intensity and frequency over the past 30 years can lead to perturbations in the atmospheric aerosol lifetimes by 10 % or higher at the regional scale.


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