A modelling approach for the assessment of energy recovery and impact on the water line of sludge pre-treatments
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[1] V. Tyagi,et al. Free nitrous acid (FNA) pretreatment enhances biomethanation of lignocellulosic agro-waste (wheat straw) , 2023, Energy.
[2] Duu-Jong Lee,et al. Anaerobic-anoxic-oxic biological treatment of high-strength, highly recalcitrant polyphenylene sulfide wastewater. , 2023, Bioresource technology.
[3] Xu Wang,et al. Strategies for energy conversion from sludge to methane through pretreatment coupled anaerobic digestion: Potential energy loss or gain. , 2023, Journal of environmental management.
[4] M. V. van Loosdrecht,et al. Machine learning and circular bioeconomy: Building new resource efficiency from diverse waste streams. , 2022, Bioresource technology.
[5] Beibei Yan,et al. Modification of Anaerobic Digestion Model No.1 with Machine Learning Models Towards Applicable and Accurate Simulation of Biomass Anaerobic Digestion , 2023, SSRN Electronic Journal.
[6] Anne-Lise Hantson,et al. Dynamic modeling and parameter estimation of biomethane production from microalgae co-digestion , 2022, Bioprocess and Biosystems Engineering.
[7] C. Onu,et al. Development of a surrogate model for the simulation of anaerobic co-digestion of pineapple peel waste and slaughterhouse wastewater: appraisal of experimental and kinetic modeling , 2022, Environmental Advances.
[8] R. Suthan,et al. Modelling and optimization of thermophilic anaerobic digestion using biowaste. , 2022, Environmental research.
[9] Rami Béchara. Improvements to the ADM1 based Process Simulation Model: Reaction segregation, parameter estimation and process optimization , 2022, Heliyon.
[10] J. P. García-Sandoval,et al. A simple unstructured kinetic model for anaerobic treatment of a class agro‐industrial waste , 2022, Journal of Chemical Technology & Biotechnology.
[11] Ashok Pandey,et al. Impact of thermal pretreatment on anaerobic digestion of dewatered sludge from municipal and industrial wastewaters and its economic feasibility , 2022, Energy.
[12] Mariano Martín,et al. Anaerobic digestion and nutrient recovery , 2022, Sustainable Design for Renewable Processes.
[13] P. Mondal,et al. Biofuels production from pine needles via pyrolysis: Process parameters modeling and optimization through combined RSM and ANN based approach , 2022, Fuel.
[14] T. Louw,et al. Probabilistic Simulation of Biogas Production from Anaerobic Co-Digestion Using Anaerobic Digestion Model No. 1: A Case Study on Agricultural Residue , 2023, SSRN Electronic Journal.
[15] Mahmoud M. Abdel daiem,et al. Modeling and optimization of semi-continuous anaerobic co-digestion of activated sludge and wheat straw using Nonlinear Autoregressive Exogenous neural network and seagull algorithm , 2021, Energy.
[16] B. Ni,et al. Enhanced methane production from anaerobic digestion of waste activated sludge through preliminary pretreatment using calcium hypochlorite. , 2021, Journal of environmental management.
[17] Zhiguo Yuan,et al. The origin of waste activated sludge affects the enhancement of anaerobic digestion by free nitrous acid pre-treatment. , 2021, The Science of the total environment.
[18] Jun-xin Liu,et al. Effects of low- and high-temperature thermal-alkaline pretreatments on anaerobic digestion of waste activated sludge. , 2021, Bioresource technology.
[19] Qi Yang,et al. Digestion liquid based alkaline pretreatment of waste activated sludge promotes methane production from anaerobic digestion. , 2021, Water research.
[20] M. Villen‐Guzman,et al. Anaerobic codigestion with fruit and vegetable wastes: An opportunity to enhance the sustainability and circular economy of the WWTP digesters , 2021, Clean Energy and Resources Recovery.
[21] K. Gernaey,et al. Assessment of sludge management strategies in wastewater treatment systems using a plant-wide approach. , 2020, Water research.
[22] G. Campo,et al. Comparative analysis between a conventional and a temperature-phased anaerobic digestion system: Monitoring of the process, resources transformation and energy balance , 2020 .
[23] D. Panepinto,et al. Feasibility analysis for reduction of carbon footprint in a wastewater treatment plant , 2020, Journal of Cleaner Production.
[24] Stephen R. Smith,et al. A multi-level biogas model to optimise the energy balance of full-scale sewage sludge conventional and THP anaerobic digestion , 2020 .
[25] Xiaolei Zhang,et al. Pretreatments for enhancing sewage sludge reduction and reuse in lipid production , 2020, Biotechnology for Biofuels.
[26] G. Campo,et al. Thermophilic vs. mesophilic anaerobic digestion of waste activated sludge: Modelling and energy balance for its applicability at a full scale WWTP , 2020 .
[27] V. Gude,et al. Near Future Energy Self-sufficient Wastewater Treatment Schemes , 2020, International Journal of Environmental Research.
[28] X. Zhan,et al. Inactivation of pathogens in anaerobic digestion systems for converting biowastes to bioenergy: A review , 2020 .
[29] J. Steyer,et al. Unraveling the literature chaos around free ammonia inhibition in anaerobic digestion , 2020 .
[30] Zhiwei Wang,et al. Perspective on enhancing the anaerobic digestion of waste activated sludge. , 2019, Journal of hazardous materials.
[31] S. Astals,et al. Characterising and modelling free ammonia and ammonium inhibition in anaerobic systems. , 2018, Water research.
[32] A. Grosser,et al. Circular Economy in Wastewater Treatment Plant–Challenges and Barriers , 2018, Proceedings.
[33] Luz Alejo,et al. Effluent composition prediction of a two-stage anaerobic digestion process: machine learning and stoichiometry techniques , 2018, Environmental Science and Pollution Research.
[34] Dong-bo Wang,et al. Free ammonia pre-treatment of secondary sludge significantly increases anaerobic methane production. , 2017, Water research.
[35] Youcai Zhao,et al. Overview of pretreatment strategies for enhancing sewage sludge disintegration and subsequent anaerobic digestion: Current advances, full-scale application and future perspectives , 2017 .
[36] Silvia Fiore,et al. Scale-up evaluation of the anaerobic digestion of food-processing industrial wastes , 2016 .
[37] G. Genon,et al. Preliminary Technical and Economic Analysis of Alkali and Low Temperature Thermo-alkali Pretreatments for the Anaerobic Digestion of Waste Activated Sludge , 2016 .
[38] R. Tyagi,et al. Anaerobic digestion of thermal pre-treated sludge at different solids concentrations--Computation of mass-energy balance and greenhouse gas emissions. , 2015, Journal of environmental management.
[39] A. Hendriks,et al. Thermal hydrolysis of waste activated sludge at Hengelo Wastewater Treatment Plant, the Netherlands. , 2014, Water science and technology : a journal of the International Association on Water Pollution Research.
[40] A. Gianico,et al. Reduced temperature hydrolysis at 134 °C before thermophilic anaerobic digestion of waste activated sludge at increasing organic load. , 2013, Bioresource technology.
[41] O. Yenigün,et al. Ammonia inhibition in anaerobic digestion: A review , 2013 .
[42] Grietje Zeeman,et al. Anaerobic Wastewater Treatment , 2008 .
[43] D J Batstone,et al. Kinetics of thermophilic, anaerobic oxidation of straight and branched chain butyrate and valerate , 2003, Biotechnology and bioengineering.
[44] H. Siegrist,et al. The IWA Anaerobic Digestion Model No 1 (ADM1). , 2002, Water science and technology : a journal of the International Association on Water Pollution Research.
[45] M C M van Loosdrecht,et al. Experience with guidelines for wastewater characterisation in The Netherlands. , 2002, Water science and technology : a journal of the International Association on Water Pollution Research.