Advanced biokinetic and hydrodynamic modelling to support and optimize the design of full-scale high rate algal ponds

被引:6
作者
Ortiz, Antonio [1 ]
Diez-Montero, Ruben [1 ]
Garcia, Joan [1 ]
Khalil, Nadeem [2 ]
Uggetti, Enrica [1 ]
机构
[1] Univ Politecn Catalunya Barcelona Tech, Dept Civil & Environm Engn, GEMMA Grp Environm Engn & Microbiol, C Jordi Girona 1-3,Bldg D1, E-08034 Barcelona, Spain
[2] Aligarh Muslim Univ, ZH Coll Engn & Technol, Dept Civil Engn, Aligarh 202001, Uttar Pradesh, India
关键词
HRAP design; Wastewater; Full-scale; Computational Fluid Dynamics; Microalgae-bacteria biokinetic modelling; WASTE-WATER TREATMENT; CONSTRUCTED WETLANDS; GROWTH; NITROGEN; QUALITY; BIOMASS; SYSTEMS; LIGHT;
D O I
10.1016/j.csbj.2021.12.034
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
High rate algal ponds (HRAP) are known for their suitability to treat wastewater and to produce microalgal biomass, which can be converted into bioproducts. However, full-scale application of HRAP is still limited to few cases, and design procedures are not consolidated or standardized. In this study, a demonstrative-scale HRAP system for secondary wastewater treatment to be implemented in India (treatment capacity of 50 m(3).d(-1)) has been designed combining conventional dimensioning techniques and advanced modelling tools. The objective of the study was to assist, verify and optimize the conventional dimensioning of the secondary HRAP by means of simulations predicting the behaviour of the system in the specific local conditions under different configurations and operational strategies. Biokinetic modelling and hydrodynamic analysis using Computational Fluid Dynamics (CFD) were carried out. The simulations performed with the biokinetic model showed that the optimal hydraulic retention time to enhance nutrient removal and biomass production is 4 days. For the hydrodynamic modelling, a 3D model of the HRAP was built to simulate the hydrodynamic behaviour of 36 different designs. Simulations allowed quantifying the presence of low velocity zones as well as the land use efficiency of the different designs in terms of the useful area vs. the total occupied area. Two baffles and tear-shapes with a diameter equal to 1/4 of the channel width was the most efficient configuration. Moreover, a technical-economic assessment of the system was carried out, resulting in an investment cost of 483 (sic) per population equivalent and an operational cost of 0.19 (sic) per m(3) of treated wastewater. (C) 2022 The Authors. Published by Elsevier B.V. on behalf of Research Network of Computational and Structural Biotechnology.
引用
收藏
页码:386 / 398
页数:13
相关论文
共 54 条
[1]   Constructed wetlands and solar-driven disinfection technologies for sustainable wastewater treatment and reclamation in rural India: SWINGS project [J].
Alvarez, J. A. ;
Avila, C. ;
Otter, P. ;
Kilian, R. ;
Istenic, D. ;
Rolletschek, M. ;
Molle, P. ;
Khalil, N. ;
Amersek, I. ;
Mishra, V. K. ;
Jorgensen, C. ;
Garfi, A. ;
Carvalho, P. ;
Brix, H. ;
Arias, C. A. .
WATER SCIENCE AND TECHNOLOGY, 2017, 76 (06) :1474-1489
[2]  
[Anonymous], 2010, MANUAL IMPLANTACION
[3]   Natural Pigments and Biogas Recovery from Microalgae Grown in Wastewater [J].
Arashiro, Larissa T. ;
Ferrer, Ivet ;
Paniker, Catalina C. ;
Luis Gomez-Pinchetti, Juan ;
Rousseau, Diederik P. L. ;
Van Hulle, Stijn W. H. ;
Garf, Marianna .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8 (29) :10691-10701
[4]   Influence of solar irradiance levels on the formation of microalgae-bacteria aggregates for municipal wastewater treatment [J].
Arcila, Juan S. ;
Buitron, German .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2017, 27 :190-197
[5]   Understanding the effects of bulk mixing on the determination of the affinity index: consequences for process operation and design [J].
Arnaldos, Marina ;
Rehman, Usman ;
Naessens, Wouter ;
Amerlinck, Youri ;
Nopens, Ingmar .
WATER SCIENCE AND TECHNOLOGY, 2018, 77 (03) :576-588
[6]   Modelling of Microalgae Culture Systems with Applications to Control and Optimization [J].
Bernard, Olivier ;
Mairet, Francis ;
Chachuat, Benoit .
MICROALGAE BIOTECHNOLOGY, 2016, 153 :59-87
[7]   Hydrodynamic optimization of multi-environment reactors for biological nutrient removal: A methodology combining computational fluid dynamics and dimensionless indexes [J].
Blanco-Aguilera R. ;
Lara J.L. ;
Barajas G. ;
Tejero I. ;
Díez-Montero R. .
Chemical Engineering Science, 2020, 224
[8]  
Bux F, 2016, GREEN ENERGY TECHNOL, P1, DOI 10.1007/978-3-319-12334-9
[9]  
Caballero PB, 2003, ANAL CHARACTERIZATIO
[10]   Mass transfer enhancement and improved nitrification in MABR through specific membrane configuration [J].
Castrillo, M. ;
Diez-Montero, R. ;
Esteban-Garcia, A. L. ;
Tejero, I. .
WATER RESEARCH, 2019, 152 :1-11