Engineering of solar photocatalytic collectors

被引:152
作者
Rodríguez, SM
Gálvez, JB
Rubio, MIM
Ibáñez, PF
Padilla, DA
Pereira, MC
Mendes, JF
de Oliveira, JC
机构
[1] CIEMAT, Plataforma Solar Almeria, Tabernas 04200, Almeria, Spain
[2] INETI, P-1649038 Lisbon, Portugal
[3] Aosol Energia Renovaveis, Edificio Galp, Lugar Sesmaria Limpa, P-2135402 Correira, Portugal
关键词
advanced oxidation processes; compound parabolic collector; solar photocatalysis; wastewater treatment;
D O I
10.1016/j.solener.2004.03.020
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper briefly describes the different collectors used in solar photocatalysis for wastewater treatment and, based on prior experience, the main advantages and disadvantages of each. As the tubular-shape reactor configuration is the most appropriate for handling and pumping water, the compound parabolic collector (CPC) is proposed as an interesting combination of parabolic concentrators and flat static systems and constitutes a good option for solar photochemical applications. The design of compound parabolic concentrators for solar photocatalytic applications is described in detail and 25-50 turn is proposed as the optimum photoreactor diameter, based on the optical characteristics and optimum concentration of the two photocatalytic systems (TiO2 and photo-Fenton) that can be used with sunlight for wastewater treatment. It has been demonstrated that since aluminium is the only metal that is highly reflective in the ultraviolet spectrum of solar radiation, aluminium-based mirrors are the best option. But, especially when exposed to outdoor conditions, aluminium must be protected and, therefore, at the present time, anodised and electropolished aluminium surfaces are considered the most suitable solutions. As the photochemical reactor contain the working fluid, including the catalyst, it must transmit UV sunlight efficiently and be able to work under enough pressure to handle the high volumes resulting from the large number of collectors in an industrial treatment plant, only low-iron glass is proposed as feasible for constructing the photoreactor (collector absorbers). Finally, ray-tracing algorithm simulations are presented as a design tool for the optical configuration of a particular reactor, drawing conclusions for its improvement and assisting in final engineering decision-making. (C) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:513 / 524
页数:12
相关论文
共 74 条
[1]   The use of CPC collectors for detoxification of contaminated water: Design, construction and preliminary results [J].
Ajona, JI ;
Vidal, A .
SOLAR ENERGY, 2000, 68 (01) :109-120
[2]  
ALFANO OM, 2000, CATAL TODAY, V58, P230, DOI DOI 10.1016/S0920-5861(00)00252-2
[3]   EVALUATION OF THE OPTICAL-PERFORMANCE OF A PROTOTYPE STRETCHED-MEMBRANE MIRROR MODULE FOR SOLAR CENTRAL RECEIVERS [J].
ALPERT, DJ ;
HOUSER, RM .
JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 1989, 111 (01) :37-43
[4]   DEVELOPMENT OF SOLAR DETOXIFICATION TECHNOLOGY IN THE USA - AN INTRODUCTION [J].
ANDERSON, JV ;
LINK, H ;
BOHN, M ;
GUPTA, B .
SOLAR ENERGY MATERIALS, 1991, 24 (1-4) :538-549
[5]   Advanced oxidation processes (AOP) for water purification and recovery [J].
Andreozzi, R ;
Caprio, V ;
Insola, A ;
Marotta, R .
CATALYSIS TODAY, 1999, 53 (01) :51-59
[6]  
*ASTM, 1990, 58079 ASTM, P337
[7]  
B?er KW., 1995, ADV SOLAR ENERGY, P165
[8]   Current challenges in photocatalysis: Improved photocatalysts and appropriate photoreactor engineering [J].
Bahnemann, DW .
RESEARCH ON CHEMICAL INTERMEDIATES, 2000, 26 (02) :207-220
[9]  
*BECHT CORP, 1991, 917005 SAND
[10]  
Blake DM, 1997, OPTICAL MAT TECHNOLO, P154