Results 11 to 20 of about 214,541 (256)

Ranking negative emissions technologies under uncertainty [PDF]

open access: yesHeliyon, 2020
Existing mitigation strategies to reduce greenhouse gas (GHG) emissions are inadequate to reach the target emission reductions set in the Paris Agreement. Hence, the deployment of negative emission technologies (NETs) is imperative. Given that there are multiple available NETs that need to be evaluated based on multiple criteria, there is a need for a ...
W.Y. Ng   +5 more
openaire   +3 more sources

Investigating the Impacts of Feedstock Variability on a Carbon-Negative Autothermal Pyrolysis System Using Machine Learning

open access: yesFrontiers in Climate, 2022
Feedstock properties impact the economic feasibility and sustainability of biorefinery systems. Scientists have developed pyrolysis kinetics, process, and assessment models that estimate the costs and greenhouse gas (GHG) emissions of various ...
Arna Ganguly   +4 more
doaj   +1 more source

The politics and governance of negative emissions technologies [PDF]

open access: yesGlobal Sustainability, 2018
Recent projections to stay within 2°C and especially 1.5°C rely upon both more aggressive emissions cuts and larger scales of “negative emission technologies” (NETs). Yet not only are NETs’ actual development and scalability still uncertain, the technologies would present social and environmental risks of their own.
openaire   +4 more sources

Application status and prospect of low carbon technology in iron and steel industry

open access: yes工程科学学报, 2022
China proposes to achieve carbon peaking and carbon neutralization by 2030 and 2060, respectively. As a heavily carbon-based fuel industry, the carbon dioxide emission of the iron and steel industry is lower than that of the power and transportation ...
Yi XING   +7 more
doaj   +1 more source

Negative Emission Technologies – NETs

open access: yesApplied Energy, 2019
QC ...
Yan, Jinyue   +3 more
openaire   +2 more sources

Prospective contributions of biomass pyrolysis to China’s 2050 carbon reduction and renewable energy goals

open access: yesNature Communications, 2021
BIPP with biochar sequestration is a ready-to-implement negative emission technology in China. Here, the authors show that its national deployment could contribute to a 61% reduction of carbon emissions per GDP in 2030 compared to 2005, and contribute 13–
Qing Yang   +13 more
doaj   +1 more source

Ideas and perspectives: Synergies from co-deployment of negative emission technologies [PDF]

open access: yesBiogeosciences, 2019
Numerous publications propose the deployment of negative emission technologies, which intend to actively remove CO2 from the atmosphere with the goal to reach the 1.5∘ target as discussed by the IPCC.
T. Amann, J. Hartmann
doaj   +1 more source

Human and planetary health implications of negative emissions technologies

open access: yesNature Communications, 2022
AbstractMeeting the 1.5 °C target may require removing up to 1,000 Gtonne CO2 by 2100 with Negative Emissions Technologies (NETs). We evaluate the impacts of Direct Air Capture and Bioenergy with Carbon Capture and Storage (DACCS and BECCS), finding that removing 5.9 Gtonne/year CO2 can prevent <9·102 disability-adjusted life years per million ...
Selene Cobo   +4 more
openaire   +7 more sources

The Need-Efficiency Tradeoff for negative emissions technologies

open access: yesPLOS Climate, 2022
Negative emissions technologies seem to be a necessary part of our climate change portfolio. However, their introduction should not be left to market forces, forces which are neither likely to optimize climate gains nor to promote moral values. Instead, we should strategically consider which moral values negative emission technology investment should ...
openaire   +3 more sources

Environmental sustainability of negative emissions technologies

open access: yesSustainable Production and Consumption, 2022
Negative emissions technologies (NETs) are expected to play a significant role in mitigating climate change. However, there are also concerns that a large scale deployment of NETs may cause various environmental impacts due to the use of land, water and energy resources.
Jeswani, HK   +2 more
openaire   +2 more sources

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