Optimization of atmospheric carbonation in the integrated treatment immediate one-step lime precipitation and atmospheric carbonation. The case study of slaughterhouse effluents
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[1] J. Tijani,et al. A review of emerging micro-pollutants in hospital wastewater: Environmental fate and remediation options , 2022, Results in Engineering.
[2] O. Odunlami,et al. Advanced techniques for the capturing and separation of CO2 – A review , 2022, Results in Engineering.
[3] A. Lopes,et al. Landfill leachate treatment by immediate one-step lime precipitation, carbonation, and phytoremediation fine-tuning , 2022, Environmental Science and Pollution Research.
[4] Yufang Yin,et al. Smart energy savings for aeration control in wastewater treatment , 2022, Energy Reports.
[5] M. Teixeira,et al. Vertical flow constructed wetland as a green solution for low biodegradable and high nitrogen wastewater: A case study of explosives industry. , 2021, Chemosphere.
[6] J. Rivas,et al. Immediate one-step lime precipitation process for the valorization of winery wastewater to agricultural purposes , 2021, Environmental Science and Pollution Research.
[7] M. Friedrichs,et al. Challenges in Quantifying Air‐Water Carbon Dioxide Flux Using Estuarine Water Quality Data: Case Study for Chesapeake Bay , 2020, Journal of geophysical research. Oceans.
[8] L. Madeira,et al. Immediate one-step lime precipitation and atmospheric carbonation as pre-treatment for low biodegradable and high nitrogen wastewaters: A case study of explosives industry , 2020, Journal of Environmental Chemical Engineering.
[9] A. Almeida,et al. Manual Treatment of Urban Wastewater by Chemical Precipitation for Production of Hydroponic Nutrient Solutions , 2020 .
[10] A. R. Dinçer. Increasing BOD5/COD ratio of non-biodegradable compound (reactive black 5) with ozone and catalase enzyme combination , 2020, SN Applied Sciences.
[11] R. Selvarajan,et al. Investigating Industrial Effluent Impact on Municipal Wastewater Treatment Plant in Vaal, South Africa , 2020, International journal of environmental research and public health.
[12] J. Middelburg,et al. Ocean Alkalinity, Buffering and Biogeochemical Processes , 2019, Reviews of geophysics.
[13] R. Lohchab,et al. Lime treatment of wastewater in a plywood industry to achieve the zero liquid discharge , 2019 .
[14] M. Basitere,et al. Analysis of the characteristics of poultry slaughterhouse wastewater (PSW) and its treatability , 2019, Water Practice and Technology.
[15] F. Carvalho,et al. Treatment of vinasse from sugarcane ethanol industry: H2SO4, NaOH and Ca(OH)2 precipitations, FeCl3 coagulation-flocculation and atmospheric CO2 carbonation , 2019, Journal of Environmental Chemical Engineering.
[16] Wissam Al-Hayek,et al. Treatment of Amman Slaughterhouse Wastewater by Anaerobic Baffled Reactor , 2019, International Journal of Civil Engineering.
[17] Mohd Fairuz Abdul Hamid,et al. Energy efficiency of wastewater treatment plant through aeration system , 2019, DESALINATION AND WATER TREATMENT.
[18] Hongliang Dai,et al. Effects of Commonly Occurring Metal Ions on Hydroxyapatite Crystallization for Phosphorus Recovery from Wastewater , 2018, Water.
[19] J. Bohr,et al. Interactions of the Calcite {10.4} Surface with Organic Compounds: Structure and Behaviour at Mineral – Organic Interfaces , 2017, Scientific Reports.
[20] C. Bustillo-Lecompte,et al. Slaughterhouse Wastewater: Treatment, Management and Resource Recovery , 2017 .
[21] J. Rivas,et al. Sustainable treatment of different high-strength cheese whey wastewaters: an innovative approach for atmospheric CO2 mitigation and fertilizer production , 2016, Environmental Science and Pollution Research.
[22] Yun-nen Chen,et al. Removal of ammonia nitrogen from wastewater using modified activated sludge , 2016 .
[23] Vinod K. Gupta,et al. Removal of ammonium ions from wastewater: A short review in development of efficient methods , 2015 .
[24] Yongzhi Chi,et al. Magnesium hydroxide coagulation performance and floc properties in treating kaolin suspension under high pH , 2015 .
[25] N. R. Gilan,et al. Application of enhanced softening process in slaughterhouse wastewater treatment , 2013 .
[26] K. Fukushi,et al. Removal of phosphate from solution by adsorption and precipitation of calcium phosphate onto monohydrocalcite. , 2012, Journal of colloid and interface science.
[27] S. Andersen,et al. Effects of Brine Composition on the Adsorption of Benzoic Acid on Calcium Carbonate , 2012 .
[28] S. Siddique,et al. Optimization of coagulation process for the treatment of the characterized slaughterhouse wastewater , 2012 .
[29] J. Rivas,et al. Treatment of cheese whey wastewater: combined coagulation-flocculation and aerobic biodegradation. , 2010, Journal of agricultural and food chemistry.
[30] A. Nasir,et al. Coagulation/adsorption combined treatment of slaughterhouse wastewater , 2009 .
[31] Dong Chen,et al. Determination of 76 pharmaceutical drugs by liquid chromatography-tandem mass spectrometry in slaughterhouse wastewater. , 2009, Journal of chromatography. A.
[32] M. Luccio,et al. Qualitative Study of Organic Compounds in Wastewaters of a Swine Slaughterhouse , 2006, Environmental monitoring and assessment.
[33] Debra R. Reinhart,et al. The Fate of Nitrogen in Bioreactor Landfills , 2005 .
[34] A. P. Vanerkar,et al. Conventional Approach for Abattoir Wastewater Treatment , 2005, Environmental technology.
[35] J. Sáez,et al. Nutrient removal and sludge production in the coagulation-flocculation process. , 2002, Water research.