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Monitoring and Quantification of Carbon Dioxide Emissions and Impact of Sea Surface Temperature on Marine Ecosystems as Climate Change Indicators in the Niger Delta Using Geospatial Technology
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作者 okechukwu okpobiri Eteh Desmond Rowland +1 位作者 Francis Emeka Egobueze Mogo Felicia Chinwe 《Journal of Atmospheric Science Research》 2023年第1期1-20,共20页
The Niger Delta marine environment has experienced a series of environmental disasters since the inception of oil and gas exploration,which can be attributed to climate change.Carbon dioxide(CO_(2))emissions and sea s... The Niger Delta marine environment has experienced a series of environmental disasters since the inception of oil and gas exploration,which can be attributed to climate change.Carbon dioxide(CO_(2))emissions and sea surface temperature(T)ties associated with burning fossil fuels,such as gas flaring,vehicular traffic,and marine vessel movement along the sea,are increasing.Using data extracted from the NASA Giovanni satellite’s Atmospheric Infrared Sounder(AIRS)and Moderate Resolution Imaging Spectroradiometer(MODIS),this study mapped the carbon footprint and T along the coastline into the deep sea from 2003 to 2011,using ArcGIS software.The spatial distribution of CO_(2) and T concentrations determined by the inverse distance weighting(IDW)method reveals variations in the study area.The results show an increase in the quantity of the mean tropospheric CO_(2) from July 2003 to December 2011,from 374.5129 ppm to 390.7831 ppm annual CO_(2) emissions,which also reflects a continuous increase.The average Monthly sea surface temperature had a general increasing trend from 25.79℃ in July 2003 to 27.8°C in December,with the Pearson correlation coefficient between CO_(2) and T indicating 50%strongly positive,20%strongly negative,20%weakly positive,and 10%weakly negative.CO_(2) levels,like temperature,follow a seasonal cycle,with a decrease during the wet season due to precipitation dissolving and plant uptake during the growing season,and then a rise during the dry season.Carbon capture and storage technologies must be implemented to benefit the marine ecosystem and human well-being. 展开更多
关键词 Carbon footprint NASA Giovanni Climate change COASTLINE Carbon capture and storage
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Floodplain Mapping and Risks Assessment of the Orashi River Using Re­mote Sensing and GIS in the Niger Delta Region, Nigeria 被引量:1
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作者 Eteh Desmond Rowland okechukwu okpobiri 《Journal of Geographical Research》 2021年第2期10-16,共7页
Residents along the shoreline of the Orashi River have yearly been dis­placed and recorded loss of lives,farmland,and infrastructures.The Gov­ernment’s approach has been the provision of relief materials to... Residents along the shoreline of the Orashi River have yearly been dis­placed and recorded loss of lives,farmland,and infrastructures.The Gov­ernment’s approach has been the provision of relief materials to the victims instead of implementing adequate control measures.This research employs Shuttle Radar Topographic Mission and Google Earth imagery in devel­oping a 3D floodplain map using ArcGIS software.The result indicates the drainage system in the study area is dendritic with catchment of 79 subbasins and 76 pour point implying the area is floodplain.Incorporating the 3D slope which reveals that>8 and<8 makes up 1.15%and 98.85%of the study area respectively confirms the area is a floodplain.Aspect indicate west-facing slope are dark blue,3D hillshade indicate yellow is very low area and the high area is pink and also the buffer analysis result reveals wa­terbodies reflecting blue with an estimated area of 1.88 km2,yellow indicate 0.79 km2 of the shoreline,red indicate 0.81 km2 of the minor floodplain and pink contain 0.82 km2 with the length of 32.82 km.The result from google earth image in 2007 indicate absent of settlement,2013 indicate minimal settlement and 2020 indicate major settlement in the study area when cor­related with 3D Floodplain mapping before and during the flood in other to analyze and manage flooding for further purpose and the majority of the area are under seize with flood like in 2020.Therefore,Remote Sensing and GIS techniques are useful for Floodplain mapping,risk analysis for control measures for better flood management. 展开更多
关键词 3D floodplain Flood hazard assessment SRTM GIS Remote sensing Flood management BUFFER
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