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1.
Environ Sci Pollut Res Int ; 31(24): 35835-35852, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38740685

RESUMO

Due to depletion of fossil fuels and environmental issues, renewable energy consumption is increasingly growing. Solar energy as the most abundant renewable energy source available is becoming more popular around the world. In the current study, the optimal sites for solar photovoltaic power plants in East Azerbaijan province, Northwest Iran, were investigated. A total of 17 variables were categorized into four groups: climatic, geomorphological, environmental, and access-economic. In order to integrate the variables, a model based on catastrophe theory in the context of GIS was applied. The relative importance and weight of the criteria are computed based on the internal mechanism of the catastrophic system, thus greatly reducing subjectivism and uncertainties of the decision-making process. Five optimal sites located in the western part of the province within the counties of Malekan, Bonab, Ajabshir, Shabestar, and Tabriz were identified as suitable sites for the construction of solar photovoltaic power plants, where there are ideal conditions in terms of many environmental-human variables such as high potential of solar energy, high sunshine hours, low relative humidity, suitable slope, poor vegetation, distance to protected areas, proximity to the population centers, excellent access to the roads and to the main power lines.


Assuntos
Sistemas de Informação Geográfica , Centrais Elétricas , Energia Solar , Irã (Geográfico) , Humanos
2.
Environ Sci Pollut Res Int ; 29(20): 30394-30409, 2022 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-35000170

RESUMO

Government incentive policies play an important role in the promotion of distributed photovoltaic power. However, which policy is more effective for the diffusion of distributed photovoltaic power? This is a question that needs to be answered. Based on this, we combined the two-factor learning curve and system dynamics model to study the dynamic diffusion process of China's distributed photovoltaic power (DSP). The results show that (1) the coefficients of learning by doing and learning by researching for DSP are 0.0435 and 0.2971 respectively. This indicates that technological innovation caused by R&D expenditures in the DSP is the driving force for cost reduction. (2) Both demand-pull and technology-push policies contribute to the diffusion of DSP; (3) the effect of FIT policy on the diffusion of distributed photovoltaic technology is more significant than that of R&D policy; and the reduction of production cost of photovoltaic power industry by R&D policy is more significant than FIT policy.


Assuntos
Indústrias , Motivação , China , Difusão , Políticas , Tecnologia
3.
Environ Sci Pollut Res Int ; 28(40): 57232-57247, 2021 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-34089160

RESUMO

The fact that traditional energy sources have limited reserves and have a negative impact on the environment increases the demand for renewable energy sources. Environmental, economic, and sustainability concerns have led researchers, investors, and policy makers to seek the potential of renewable energy sources. Suitable site selection for new-generation renewable resources is vital in large-scale projects. In this paper, geographic information systems and multicriteria decision-making (MCDM) methods were integrated to exploit and construct the best location for solar PV power plants in Kayseri, Turkey. Three main, twelve subcriteria, and their indicators related to the study area were determined. The rank-based (i.e., rank sum, rank reciprocal weights, and rank order centroid weights) and analytical hierarchical process (AHP) MCDM methods were used to determine the weights of the criteria. Thirty-three existing solar PV power plants were used to verify the success of MCDM methods. Four MCDM methods yielded effective results according to the proposed criteria, and most of the existing solar PV power plants match the convenient regions on the suitability map provided by geographic information systems-based rank reciprocal method. In addition, according to the experimental study, Sariz, Tomarza, and Incesu districts of Kayseri were the most suitable sites.


Assuntos
Sistemas de Informação Geográfica , Energia Solar , Fontes Geradoras de Energia , Centrais Elétricas , Turquia
4.
Eng. sanit. ambient ; 25(2): 333-344, mar.-abr. 2020. tab
Artigo em Português | LILACS-Express | LILACS | ID: biblio-1098217

RESUMO

RESUMO A geração de energia fotovoltaica vem crescendo no Brasil, e a capacidade instalada de usinas fotovoltaicas (UFV) deve superar 3 GW em alguns anos. Essa tecnologia causa menor impacto ambiental do que formas de geração tradicionais, como termoelétricas e hidroelétricas. Entretanto os impactos quando da implantação de UFV devem ser considerados no licenciamento ambiental. No Brasil, não há uma legislação federal que estabeleça critérios mínimos para esse tipo de licenciamento. Alguns estados criaram legislações próprias, que divergem nas exigências e critérios adotados. Essa disparidade causa insegurança no processo de licenciamento, dificuldade na aprovação dos estudos, aumento de custos e prazos, podendo inviabilizar empreendimentos. Neste estudo foram analisadas e comparadas as legislações em 12 estados, nas quais está previsto o desenvolvimento de UFV, como base para propor critérios claros, objetivos e padronizados para o enquadramento legal das UFV. Como resultado desta pesquisa, propõe-se o enquadramento como de baixo impacto, com licenciamento simplificado e emissão de licença prévia (LP) e licença de instalação (LI) em etapa única. Os critérios para enquadramento de porte são potência instalada e área diretamente ocupada. Para potencial poluidor, os critérios são necessidade de supressão de vegetação nativa (e/ou em área de preservação permanente - APP) e localização em área de fragilidade socioambiental. A avaliação conjunta desses critérios define qual o estudo ambiental necessário ao licenciamento. O trabalho lista os principais aspectos e impactos ambientais a serem abordados em tais estudos. Estes critérios unificados formam uma ferramenta para promover tanto o desenvolvimento de UFV como a proteção do meio ambiente com minimização de possíveis impactos.


ABSTRACT Photovoltaic power generation is growing in Brazil. It is expected that installed capacity of photovoltaic power plants (PVPP) will exceed 3 GW within a few years. This technology is known to have less environmental impacts than other traditional forms of energy generation, however its environmental impacts should be considered in the environmental licensing process. In Brazil there is no federal legislation establishing the criteria or requirements for licensing this type of power plants. Some states have created their own legislation, whose criteria differ widely. This lack of national standardization causes licensing agencies' insecurity, difficulty in approving studies, increase in costs and deadlines, and has caused many projects to be unfeasible. Therefore, this study did an analysis and comparison of 12 states' legislation regarding environmental licensing of PVPPs. This analysis based the proposal of clear, objective and standardized criteria for PVPPs licencing. It is proposed to normally classify the PVPPs as having low environmental impact, with simplified licensing, issuing Preliminary and Installation License in a single step. The proposed criteria for classification in size are installed power and directly occupied area. Regarding the pollution potential, the criteria are suppression of native vegetation (and/or in a permanent preservation area); and location in environmental fragile areas. The joint evaluation of these criteria defines the type of environmental study to be required for licensing. The main aspects and environmental impacts that should be addressed are listed. These unified criteria are a tool to promote both development of PVPP projects and the protection of the environment, by minimizing their potential environmental impacts.

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