Grants and Contributions
About this information
In June 2016, as part of the Open Government Action Plan, the Treasury Board of Canada Secretariat (TBS) committed to increasing the transparency and usefulness of grants and contribution data and subsequently launched the Guidelines on the Reporting of Grants and Contributions Awards, effective April 1, 2018.
The rules and principles governing government grants and contributions are outlined in the Treasury Board Policy on Transfer Payments. Transfer payments are transfers of money, goods, services or assets made from an appropriation to individuals, organizations or other levels of government, without the federal government directly receiving goods or services in return, but which may require the recipient to provide a report or other information subsequent to receiving payment. These expenditures are reported in the Public Accounts of Canada. The major types of transfer payments are grants, contributions and \'other transfer payments\'.
Included in this category, but not to be reported under proactive disclosure of awards, are (1) transfers to other levels of government such as Equalization payments as well as Canada Health and Social Transfer payments. (2) Grants and contributions reallocated or otherwise redistributed by the recipient to third parties; and (3) information that would normally be withheld under the Access to Information Act and the Privacy Act.
$96,486.00
Mar 27, 2020
Aboriginal recipient
IMSI - Quatsino
FP860-19I049
Support aboriginal communities in becoming successful participants in commercial fisheries and aquaculture
$53,600.00
Mar 27, 2020
Aboriginal recipient
AICFI C4.0 - St. Mary's
FP860-19A039
Support aboriginal communities in becoming successful participants in commercial fisheries and aquaculture
$380,000.00
Mar 27, 2020
Aboriginal recipient
IMSI - Pictou Landing
FP860-19I120
Support aboriginal communities in becoming successful participants in commercial fisheries and aquaculture
$500,000.00
Mar 27, 2020
Aboriginal recipient
AICFI C4.0 - Pictou Landing
FP860-19A124
Support aboriginal communities in becoming successful participants in commercial fisheries and aquaculture
$231,500.00
Mar 27, 2020
Aboriginal recipient
AICFI C4.0 - Wagmatcook
FP860-19A110
Support aboriginal communities in becoming successful participants in commercial fisheries and aquaculture
$299,989.00
Mar 27, 2020
Academia
A Superpressure Balloon flight of the SuperBIT Telescope
19FATORA19
Stratospheric balloon telescopes, operating above 99.5% of the Earth's atmosphere, avoid atmospheric distortions present in terrestrial ground based telescopes, thus improving the observation of stars.
The project goal is to repair and upgrade the Superpressure Balloon-borne Imaging Telescope (SuperBIT) telescope to improve, in particular, star camera performance and automatic telescope focus/alignment. The SuperBIT telescope will provide large images of distant galaxies with detail comparable to NASA's Hubble Space Telescope. This project will pave the way for future telescopes with even greater capabilities and will additionally explore other applications, including earth observation.
$300,000.00
Mar 27, 2020
Academia
CALASET-NG - Advancing a payload for atmospheric infrared laser absorption spectroscopy
19FATORA22
Reliable climate data is crucial for Canadians to understand how our climate is changing. The Canadian Atmospheric Laser Absorption Spectroscopy Experiment Test-bed (CALASET) aims to build a suite of instruments to verify measurements from Earth-observing satellites. It is important to ensure that these space-based instruments are performing well to produce critical climate data.
The CALASET-Next Generation (CALASET-NG) project furthers this development with two main objectives: 1) develop new technologies for measuring gases in the atmosphere and provide a validation and verification capability for current and future satellite missions, and 2) provide concept-to-flight education and training for the students who will become the scientists and engineers needed for future satellite missions.
The project team will design, build and test innovative instrumentation for measuring how atmospheric gas concentrations change with height, and will analyze these data following the instruments' flight on a stratospheric balloon.
$100,000.00
Mar 27, 2020
Academia
High-Throughput, High-Resolution X-Ray Spectroscopy
19FAMANB05
Over the next decade, advancements in X-ray detectors will revolutionize our understanding of some of the most extreme events in the Universe. It will be possible to measure precisely and simultaneously the energy and arrival time of X-ray radiation coming from astrophysical sources.
The project aims to answer fundamental questions in astrophysics, leading to a better understanding of the nature and workings of neutron stars, black holes and the remnants of supernova explosions—the astrophysical objects driving the energetic and chemical evolution of our galaxy and beyond. The next generation of highly qualified personnel will be trained to get the most out of new large datasets by using observations from launched space-based missions, such as the Neutron star Interior Composition Explorer (NICER) onboard the International Space Station. They will be also trained to work on future missions and tackle the large datasets that businesses and governments use today.
$100,000.00
Mar 27, 2020
Academia
Surface-based Canadian microwave Scatterometer measurements (CanScats) during the MOSAiC international Arctic drift expedition
19FACALB08
Increasing variable and unpredictable sea ice conditions in Canadian Arctic waters require the development of technologies for enhancing domain awareness, mitigation hazards, and understanding environmental change.
As part of Multidisciplinary drifting Observatory for the Study of Arctic Climate (MOSAiC), researchers in the project, committed to understanding the consequences of Arctic climate change, are deploying microwave scatterometer systems on the sea ice in order to collect snow and sea ice geophysical property measurements, microwave scatterometer measurements, and multi-sensor satellite observations. Data collected will enable researchers to develop information products, addressing the social and environmental consequences of rapidly changing ice conditions in Canadian waters, decreasing risks from sea-ice associated hazards, and improving the accuracy of short-term weather and sea ice forecast.
$99,990.00
Mar 27, 2020
Academia
Determining the mechanism of bone loss in space
19FATORB13
Studies on spaceflights lasting more than one year have shown that, due to weightlessness, astronauts on long missions may lose as much as twenty percent of their bone mass, which leads to a significant increase in risk of fracture and other complications.
Following the previous work and discovery in bone-resorbing osteoclasts and in optimizing bone cell culture in simulated microgravity, the present project aims to determine the molecular mechanism behind bone loss in astronauts. The main objectives include the grow of osteoclasts on bone surfaces in simulated microgravity, comparison of the osteoclasts grown in static culture to those in simulated microgravity, and the direct measurement of osteoclast morphology, ultrastructure, differentiation, fusion and bone-resorbing activity.
In addition to engaging trainees' in discovery-based microgravity research and developing novel bone cell micro carriers, this work will identify potential therapeutic targets for the treatment of osteoporosis in astronauts and in patients on Earth.