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Industrial wastewater pre-treatment for heavy metal reduction by employing a sorbent-assisted ultrafiltration system 总被引:1,自引:0,他引:1
This work examined the adoption of a sorbent-assisted ultrafiltration (UF) system for the reduction of Pb(II), Cu(II), Zn(II) and Ni(II) from industrial wastewater. In such a system metals were removed via several processes which included precipitation through the formation of hydroxides, formation of precipitates/complexes among the metal ions and the wastewater compounds, adsorption of metals onto minerals (bentonite, zeolite, vermiculite) and retention of insoluble metal species by the UF membranes. At pH = 6 the metal removal sequence obtained by the UF system was Pb(II) > Cu(II) > Zn(II) > Ni(II) in mg g−1 with significant amount of lead and copper being removed due to chemical precipitation and formation of precipitates/complexes with wastewater compounds. At this pH, zinc and nickel adsorption onto minerals was significant, particularly when bentonite and vermiculite were employed as adsorbents. Metal adsorption onto zeolite and bentonite followed the sequence Zn(II) > Ni(II) > Cu(II) > Pb(II), while for vermiculite the sequence was Ni(II) > Zn(II) > Cu(II) > Pb(II) in mg g−1. The low amount of Pb(II) and Cu(II) adsorbed by minerals was attributed to the low available lead and copper concentration. At pH = 9 the adoption of UF could effectively reduce heavy metals to very low levels. The same was observed at pH = 8, provided that minerals were added. The prevailing metal removal process was the formation of precipitates/complexes with wastewater compounds. 相似文献
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Panaretou Vasiliki Vakalis Stergios Ntolka Aggeliki Sotiropoulos Aggelos Moustakas Konstantinos Malamis Dimitris Loizidou Maria 《Environmental science and pollution research international》2019,26(20):20232-20247
Environmental Science and Pollution Research - This article presents the pilot experience of an integrated biowaste management system developed in Tinos island, Greece, which promoted source... 相似文献
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Giannis Lemesios Christos Giannakopoulos Christina Papadaskalopoulou Anna Karali Konstantinos V. Varotsos Konstantinos Moustakas Dimitris Malamis Maria Zachariou-Dodou Michael Petrakis Maria Loizidou 《Regional Environmental Change》2016,16(7):1915-1927
Tourism is a vital sector of Cyprus economy, attracting millions of tourists every year and providing economic growth and employment for the country. The aim of this study was to investigate the impacts of projected climate change in the tourism industry in Cyprus (Republic of Cyprus) using both “Tourism Climate Index” (TCI) and “Beach Climate Index” (BCI). TCI refers to tourism activities mainly related to sightseeing, nature-based tourism, and religious tourism etc., while BCI represents beach tourism that constitutes 85 % of tourism activities in Cyprus. The projections of climate change impacts in tourism are performed for 2071–2100 period, using regional climate model output employing the A1B greenhouse gas emissions scenario. The 1961–1990 period is used as the control run to compare the respective results of the future projections. The significant warming anticipated in the distant future (increases in annual and summer temperatures close to 4 °C) will have adverse impacts on Cyprus tourism industry regarding sightseeing tourism. TCI results for the distant future period show only acceptable conditions for general tourism activities during summer in contrast with the good/very good conditions in the present climate. Conversely, this type of tourism seems to be benefited in shoulder seasons, i.e., during spring and autumn; TCI and hence tourist activities improve in the distant future in relation to the present climate. On the other hand, concerning beach tourism, future projections indicate that it will not be negatively affected by future climate change and any changes will be positive. 相似文献
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Multi-criteria analysis for the determination of the best WEEE management scenario in Cyprus 总被引:2,自引:0,他引:2
Rousis K Moustakas K Malamis S Papadopoulos A Loizidou M 《Waste management (New York, N.Y.)》2008,28(10):1941-1954
Waste from electrical and electronic equipment (WEEE) constitutes one of the most complicated solid waste streams in terms of its composition, and, as a result, it is difficult to be effectively managed. In view of the environmental problems derived from WEEE management, many countries have established national legislation to improve the reuse, recycling and other forms of recovery of this waste stream so as to apply suitable management schemes. In this work, alternative systems are examined for the WEEE management in Cyprus. These systems are evaluated by developing and applying the Multi-Criteria Decision Making (MCDM) method PROMETHEE. In particular, through this MCDM method, 12 alternative management systems were compared and ranked according to their performance and efficiency. The obtained results show that the management schemes/systems based on partial disassembly are the most suitable for implementation in Cyprus. More specifically, the optimum scenario/system that can be implemented in Cyprus is that of partial disassembly and forwarding of recyclable materials to the native existing market and disposal of the residues at landfill sites. 相似文献
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Papadopoulos A Malamis S Moustakas K Kiranoudis CT Loizidou M 《Environmental monitoring and assessment》2007,130(1-3):255-270
This work focuses on the development and application of appropriate software tools for recording, assessing and reporting
data related to the operation of the Urban Wastewater Treatment Plants (UWTPs) in Cyprus. An appropriate Internet-Based Management
System was designed, developed and installed at the premises of the UWTPs and of the Cypriot Competent Authority (Water Development
Department — WDD) in order to coordinate and disseminate tasks and related information for monitoring the operation of UWTPs.
In addition, a client Geographical Information System database was compiled to be used for obtaining and analyzing spatial
information. The software tools are based on common procedures and state-of-the-art technology for the recording and transmission
of data and information and they provide an integrated view related to the operation and the efficiency of wastewater treatment
systems. Moreover, continuous control and systematic monitoring of the UWTPs by the operators as well as continuous and direct
supervision of the UWTPs environmental performance is achieved by the personnel of the Competent Authority. Furthermore, direct
and unobstructed provision of data to the Competent Authority of Cyprus is accomplished by the operators of the UWTPs, while
the Competent Authority is supported to compose full and representative reports to the European Commission and other International
Organizations. The developed tools enable the direct recording of data obtained through measurements and analyses, permit
the comparison of data with existing legislation and provide an integrated picture of the operation of the wastewater treatment
plants as well as the option to focus and assess each individual treatment stage. 相似文献
6.
Stergios Vakalis Carlo Caligiuri Konstantinos Moustakas Dimitris Malamis Massimiliano Renzi Marco Baratieri 《Environmental science and pollution research international》2018,25(36):35866-35873
There is a growing market demand for small-scale biomass gasifiers that is driven by the economic incentives and the legislative framework. Small-scale gasifiers produce a gaseous fuel, commonly referred to as producer gas, with relatively low heating value. Thus, the most common energy conversion systems that are coupled with small-scale gasifiers are internal combustion engines. In order to increase the electrical efficiency, the operators choose dual fuel engines and mix the producer gas with diesel. The Wiebe function has been a valuable tool for assessing the efficiency of dual fuel internal combustion engines. This study introduces a thermodynamic model that works in parallel with the Wiebe function and calculates the emissions of the engines. This “vis-à-vis” approach takes into consideration the actual conditions inside the cylinders—as they are returned by the Wiebe function—and calculates the final thermodynamic equilibrium of the flue gases mixture. This approach aims to enhance the operation of the dual fuel internal combustion engines by identifying the optimal operating conditions and—at the same time—advance pollution control and minimize the environmental impact. 相似文献
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