Showing posts with label Climate. Show all posts
Showing posts with label Climate. Show all posts

Thursday, February 27, 2020

Libera is NASA's New Instrument to Continue Key Climate Record

NASA released the statement below regarding its new space-based instrument that would continue the 40-year climate data record.

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NASA has selected a new space-based instrument as an innovative and cost-effective approach to maintaining the 40-year data record of the balance between the solar radiation entering Earth’s atmosphere and the amount absorbed, reflected, and emitted. This radiation balance is a key factor in determining our climate: if Earth absorbs more heat than it emits, it warms up; if it emits more than it absorbs, it cools down.

The new instrument, named Libera, is NASA’s first mission selected in response to the 2017 National Academies’ Earth Science Decadal Survey. The project’s principal investigator is Peter Pilewskie of the University of Colorado Laboratory for Atmospheric and Space Physics in Boulder, Colorado.
“This highly innovative instrument introduces a number of new technologies such as advanced detectors that will improve the data we collect while maintaining continuity of these important radiation budget measurements,” said Sandra Cauffman, acting director of the Earth Science Division at NASA Headquarters in Washington.

Libera will measure solar radiation with wavelengths between 0.3 and 5 microns reflected by the Earth system and infrared radiation with wavelengths between 5 and 50 microns emitted from the Earth system as it exits the top of the atmosphere. The sensor will also measure the total radiation leaving the Earth system at all wavelengths from 0.3 to 100 microns. An innovative additional “split shortwave” channel measuring radiation between 0.7 and 5 microns has been added to enable new Earth radiation budget science.

These wavelength ranges allow scientists to understand changes to Earth’s climate system such as whether the planet is getting brighter or darker, and heating up or cooling down. The data will be available publicly following a brief checkout and commissioning period.
The new instrument was selected competitively from four proposals considered under NASA's first Earth Venture Continuity opportunity, a new type of investigation in this class. NASA Earth Venture missions are led by principal investigators, competitively selected, and are cost- and schedule-constrained.

Earth Venture Continuity missions focus on demonstrating innovative, low-cost approaches to maintaining targeted measurements important to the Earth science community in an unbroken and consistent way. The National Academies’ Decadal Survey recommended this new way to continue existing measurements of vital importance over the long term.

Libera is named after the daughter of Ceres, the Roman goddess of agriculture. The name acknowledges the relationship between this new mission and the Clouds and the Earth's Radiant Energy System (CERES) instruments that currently make the radiation balance measurements that Libera will continue. Six CERES instruments are currently collecting data on NASA and National Oceanic and Atmospheric Administration satellites.

The new research instrument will fly on NOAA’s operational Joint Polar Satellite System-3 (JPSS-3) satellite, which is scheduled to launch by December 2027.

Earth Venture missions are managed by the Earth System Science Pathfinder program, located at NASA’s Langley Research Center in Hampton, Virginia, for the agency’s Science Mission Directorate.

For more information about the Earth Venture program, visit:


NASA uses the vantage point of space to increase our understanding of our home planet, improve lives, and safeguard our future. NASA develops new ways to observe and study Earth's interconnected natural systems with long-term data records. The agency freely shares this unique knowledge and works with institutions around the world to gain new insights into how our planet is changing.

For more information about NASA’s Earth science activities, visit:

Monday, July 29, 2019

Effects of climate change on nutrient pollution: nitrogen and phosphorus loadings in Ohio

Title: Implications of climate change on nutrient pollution: a look into the nitrogen and phosphorus loadings in the Great Miami and Little Miami watersheds in Ohio

Authors: Eric Ariel L. Salas, Sakthi Kumaran Subburayalu

The Great Miami (GM) and Little Miami (LM) watersheds in Ohio are included in the 51 major river systems in the United States for long-term assessment of conditions of water quality under the USGS National Water-Quality Assessment (NAWQA) Program. Nitrogen (N) and phosphorus (P) loadings have decreased over the years in the GM and LM basins, however, they still remain among the highest concentrations detected in the nation. The latest nutrient loading analysis from Ohio Environmental Protection Agency (OEPA) showed slightly above period of record averages for N and P. Significant amounts of mobilized agricultural N and P from fertilizers in watersheds are transported to the Ohio River and other coastal marine systems such as the Gulf of Mexico, leading to increased growth of harmful algal blooms. In the GM and LM watersheds, changes in flood frequency and intensity are projected to occur in the future as heavy precipitation events are likely to increase as a result of climate change. As climate plays a role for nutrient transformation and transport, studies have shown that N and P inputs to surface waters from agriculture and other sources are projected to continue to increase over the next several decades. This paper reviewed the means of how the GM and LM watersheds are ecologically affected by the N and P nutrient pollution and how climate change impacts the quantity of N and P loadings that go into the river systems. Without better understanding of the nutrient loading processes and their association with various agricultural practices and interactions with climate, there could be additional threats to water quality in both the GM and LM watersheds in decades to come. This literature review has made references to many pertinent new publications that have become available in recent years, as well as to the classic literature.

Keywords:  algal bloom; climate projections; GCM; global warming; nutrient loadings; Ohio watersheds

Citation: Eric Ariel L. Salas, Sakthi Kumaran Subburayalu. Implications of climate change on nutrient pollution: a look into the nitrogen and phosphorus loadings in the Great Miami and Little Miami watersheds in Ohio. AIMS Environmental Science, 2019, 6(3): 186-221. doi: 10.3934/environsci.2019.3.186

Access the full paper here.

Thursday, March 20, 2014

Earth Science and Climate Change: Earth Science-2014 Conference

Join the 3rd International Conference on Earth Science and Climate Change (Earth Science-2014) on July 28-30, 2014 in San Francisco, USA.

This conference will focus on a number of disciplines and areas of research, and will provide a forum for scientists, postgraduate & graduate students, and representatives from the private sector to discuss recent research and developments in Earth Science & Climate Change Research. The main theme of the conference is: An Insight into the Recent Advancements in Geosciences and Climate Change Control, which is highlighted by the following sessions:

Track 1: Geosciences and Geology
Track 2: Geophysics and Atmospheric Sciences
Track 3: Climate Change and Extreme Weather
Track 4: Technologies and Applications of Earth Science
Track 5: Global Warming and Environmental Change
Track 6: Environmental and Marine Sciences
Track 7: Environmental Calamity and Hazards
Track 8: Environmental Management
Track 9: Current Approaches in Environmental Studies
Track 10: Effect of Climate Change on Ecosystem

Please submit your abstract on/before April 20th, 2014.

For more details about the event and abstract submission please click this link: http://www.omicsgroup.com/earth-science-climate-change-conference-2014/cfa.php

Tuesday, January 15, 2013

NASA: Analysis of 2012 Global Temperature (VIDEO)

NASA's analysis of Earth's surface temperature found that 2012 ranked as the ninth warmest year since 1880. NASA scientists at the Goddard Institute for Space Studies (GISS) compare the average global temperature each year to the average from 1951 to 1980. This 30-year period provides a baseline from which to measure the warming Earth has experienced due to increasing atmospheric levels of heat-trapping greenhouse gases. While 2012 was the ninth warmest year on record, all 10 of the warmest years in the GISS analysis have occurred since 1998, continuing a trend of temperatures well above the mid-20th century average.

The record dates back to 1880 because that is when there were enough meteorological stations around the world to provide global temperature data.

Data source: Goddard Institute for Space Studies
Credit: NASA/Goddard Space Flight Center Scientific Visualization Studio

Video: