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HYDROELECTRIC GENERATION (2) answer(s).
 
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ID:   180143


Achieving sustainability and energy efficiency goals: assessing the impact of hydroelectric and renewable electricity generation on carbon dioxide emission in China / Xiaosan, Zhang   Journal Article
Xiaosan, Zhang Journal Article
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Summary/Abstract This study examines the relationship between total renewable electricity generation, total hydroelectric generation, and carbon dioxide emissions (CO2e) for China. The autoregressive distributed lag (ARDL) model showed that renewable electricity generation, hydroelectric generation, and green innovation decreased CO2e in China from 1990 to 2018, whereas gross domestic product per capita and foreign direct investment increased CO2e. Moreover, the Granger-causality test results are as follows. First, a two-way causal flow from CO2e to foreign direct investment and CO2e to gross domestic product per capita confirmed the feedback hypothesis. Second, a one-way causal flow from hydroelectric and renewable electricity generation to gross domestic product per capita supported the energy-led growth hypothesis. Third, the causality test reflected a one-way causal flow from renewable electricity generation to foreign direct investment and hydroelectric generation to foreign direct investment and renewable electricity generation. This study asserts the need for government to introduce taxes and other incentives for solar, wind, and hydropower-related projects. The paper also calls for designing policies to improve the market attractiveness of hydroelectric generation projects through special investment programs.
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2
ID:   128023


Sustainable power and scenic beauty: the Niagara River water diversion treaty and its relevance today / Sedoff, Andrei; Schott, Stephan; Karney, Bryan   Journal Article
Sedoff, Andrei Journal Article
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Publication 2014.
Summary/Abstract Niagara Falls and the Niagara River have always attracted great public interest due to their natural beauty, their enormous potential for electricity generation, their recreational value and as an important ecosystem. There have been simultaneous efforts to preserve this unique natural wonder and harness its power through hydroelectric development projects by both the United States and Canada. This paper explores the evolution of these efforts that culminated with the signing of the 1950 Niagara River Water Diversion Treaty that established minimum water flow rates to protect the "scenic beauty" of the falls, allowing the remaining water to be diverted for power production. We examine the rationale that led to specific water flow restrictions and question to what extent they are relevant today, as water intake capacity on the Canadian side has just been extended by around 25%. We find that current restrictions under the Niagara River Water Treaty (that expired in 2000) are not based on sound scientific evidence and estimate the upper limit of potential foregone benefits from clean electricity generation and greenhouse gas reductions. We identify a number of important issues that emerged in the last decades and that would justify an exploration of new treaty rules.
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