مشخصات مقاله | |
ترجمه عنوان مقاله | بررسی نانوذرات اکسید روی (ZnO) به عنوان کاتالیزور نوری خورشیدی: سنتز، مکانیسم ها و کاربردها |
عنوان انگلیسی مقاله | A review of ZnO nanoparticles as solar photocatalysts: Synthesis, mechanisms and applications |
انتشار | مقاله سال 2018 |
تعداد صفحات مقاله انگلیسی | 16 صفحه |
هزینه | دانلود مقاله انگلیسی رایگان میباشد. |
پایگاه داده | نشریه الزویر |
نوع نگارش مقاله |
مقاله مروری (Review article) |
مقاله بیس | این مقاله بیس نمیباشد |
نمایه (index) | scopus – master journals – JCR |
نوع مقاله | ISI |
فرمت مقاله انگلیسی | |
ایمپکت فاکتور(IF) |
10.032 در سال 2017 |
شاخص H_index | 193 در سال 2019 |
شاخص SJR | 3.036 در سال 2017 |
شناسه ISSN | 1364-0321 |
شاخص Quartile (چارک) | Q1 در سال 2017 |
رشته های مرتبط | زیست شناسی – شیمی |
گرایش های مرتبط | بیوشیمی – شیمی تجزیه – شیمی معدنی – نانو شیمی |
نوع ارائه مقاله |
ژورنال |
مجله / کنفرانس | Renewable and Sustainable Energy Reviews |
دانشگاه | Department of Chemical and Process Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, UKM, 43600 Bangi, Selangor, Malaysia |
کلمات کلیدی | کاتالیز نوری خورشیدی، اکسید روی، نانوذرات، آلاینده های پایدار آلی |
کلمات کلیدی انگلیسی | Solar photocatalytic, Zinc oxide, Nanoparticles, Persistent organic pollutants |
شناسه دیجیتال – doi |
https://doi.org/10.1016/j.rser.2017.08.020 |
کد محصول | E11790 |
وضعیت ترجمه مقاله | ترجمه آماده این مقاله موجود نمیباشد. میتوانید از طریق دکمه پایین سفارش دهید. |
دانلود رایگان مقاله | دانلود رایگان مقاله انگلیسی |
سفارش ترجمه این مقاله | سفارش ترجمه این مقاله |
فهرست مطالب مقاله: |
Outline Abstract Keywords 1. Introduction 2. Fundamental and mechanism of zinc oxide photocatalysis 3. ZnO nanostructure material 4. Improvement of ZnO as photocatalyst 5. Comparison of photocatalyst immobilization and suspension system 6. Future challenges and prospects 7. Conclusions Acknowledgement References |
بخشی از متن مقاله: |
Abstract Persistent organic pollutants (POPs) are carbon-based chemical substances that are resistant to environmental degradation and may not be completely removed through treatment processes. Their persistence can contribute to adverse health impacts on wild-life and human beings. Thus, the solar photocatalysis process has received increasing attention due to its great potential as a green and eco-friendly process for the elimination of POPs to increase the security of clean water. In this context, ZnO nanostructures have been shown to be prominent photocatalyst candidates to be used in photodegradation owing to the facts that they are low-cost, non-toxic and more efficient in the absorption across a large fraction of the solar spectrum compared to TiO2. There are several aspects, however, need to be taken into consideration for further development. The purpose of this paper is to review the photo-degradation mechanisms of POPs and the recent progress in ZnO nanostructured fabrication methods including doping, heterojunction and modification techniques as well as improvements of ZnO as a photocatalyst. The second objective of this review is to evaluate the immobilization of photocatalyst and suspension systems while looking into their future challenges and prospects. Introduction In recent years, implementation of water reclamation and reuse is gaining attention rapidly world-wide due to the water scarcity occurred as a result of climate change and poor water resource management (i.e. limited access to clean water resources and water demands exceed the available resources). Access to clean water is becoming an ever increasing problem in an expanding global economy and population countries [1]. One of the attractive solutions in response to water issues is implementation of wastewater reclamation and reuse projects to ensure a sustainable water development and management. However, concerns still arise from the fact that persistent organic pollutants (POPs) could still be present in treated water. |