Isolation and characterisation of bioflocculant-producing bacteria from aquaculture effluent and its performance in treating high turbid water
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H. Hasan | Azmi Ahmad | A. Othman | N. Ismail | S. R. Abdullah | I. Purwanti | S. Kurniawan | M. Imron
[1] Hassimi Abu Hasan,et al. A review of the production process of bacteria-based polymeric flocculants , 2021 .
[2] Azmi Ahmad,et al. Potential of valuable materials recovery from aquaculture wastewater: An introduction to resource reclamation , 2021 .
[3] N. M. Mubarak,et al. Novel cationic chitosan-like bioflocculant from Citrobacter youngae GTC 01314 for the treatment of kaolin suspension and activated sludge , 2021 .
[4] H. Hasan,et al. Challenges and Opportunities of Biocoagulant/Bioflocculant Application for Drinking Water and Wastewater Treatment and Its Potential for Sludge Recovery , 2020, International journal of environmental research and public health.
[5] Omar Hamed Jehawi,et al. Performance of pilot Hybrid Reed Bed constructed wetland with aeration system on nutrient removal for domestic wastewater treatment , 2020 .
[6] Patrick M. Carroll,et al. Evaluation of chemical polymers as coagulation aids to remove suspended solids from marine finfish recirculating aquaculture system discharge using a geotextile bag , 2020 .
[7] A. J. van der Beek,et al. Adapting Citizen Science to Improve Health in an Occupational Setting: Preliminary Results of a Qualitative Study , 2020, International journal of environmental research and public health.
[8] H. Hasan,et al. Dual function of Lemna minor and Azolla pinnata as phytoremediator for Palm Oil Mill Effluent and as feedstock. , 2020, Chemosphere.
[9] Anna-kaisa Ronkanen,et al. Solids management in freshwater-recirculating aquaculture systems: Effectivity of inorganic and organic coagulants and the impact of operating parameters. , 2020, The Science of the total environment.
[10] Xiangzhao Mao,et al. Application of secondary amine switchable hydrophilicity solvents for astaxanthin extraction from wet Haematococcus pluvialis , 2020, Algal Research.
[11] Siti Rozaimah Sheikh Abdullah,et al. Bioflocculant production using palm oil mill and sago mill effluent as a fermentation feedstock: Characterization and mechanism of flocculation. , 2020, Journal of environmental management.
[12] N. Ismail,et al. Future challenges in diesel biodegradation by bacteria isolates: A review , 2020 .
[13] Sèmiyou. A. Osseni,et al. Performance of Moringa oleifera seeds protein and Moringa oleifera seeds protein-polyaluminum chloride composite coagulant in removing organic matter and antibiotic resistant bacteria from hospital wastewater , 2020 .
[14] T. S. Maliehe,et al. Synthesis, characterization and application of polyacrylamide grafted bioflocculant , 2020 .
[15] M. G. Rasteiro,et al. Evaluation of Anionic and Cationic Pulp-Based Flocculants With Diverse Lignin Contents for Application in Effluent Treatment From the Textile Industry: Flocculation Monitoring , 2020, Frontiers in Chemistry.
[16] H. Gökçekus,et al. Comparative analysis of wastewater treatment technologies , 2020 .
[17] S. Kurniawan,et al. Seasonal variation of plastic debris accumulation in the estuary of Wonorejo River, Surabaya, Indonesia , 2019, Environmental Technology & Innovation.
[18] N. Ismail,et al. Aluminium removal and recovery from wastewater and soil using isolated indigenous bacteria. , 2019, Journal of environmental management.
[19] Jingyi Fei,et al. An improved method for bacterial immunofluorescence staining to eliminate antibody exclusion from the fixed nucleoid. , 2019, Biochemistry.
[20] Shiwei Wang,et al. Bioconversion of kitchen wastes into bioflocculant and its pilot-scale application in treating iron mineral processing wastewater. , 2019, Bioresource technology.
[21] M. Malek,et al. Red Lentil (Lens culinaris) Extract as a Novel Natural Coagulant for Turbidity Reduction: An Evaluation, Characterization and Performance Optimization Study , 2019, Water.
[22] S. Kurniawan,et al. The effect of tidal fluctuation on the accumulation of plastic debris in the Wonorejo River Estuary, Surabaya, Indonesia , 2019, Environmental Technology & Innovation.
[23] G. Munavalli,et al. Turbidity removal by conventional and ballasted coagulation with natural coagulants , 2019, Applied Water Science.
[24] N. Ismail,et al. Kinetics of aluminium removal by locally isolated Brochothrix thermosphacta and Vibrio alginolyticus. , 2019, Journal of environmental management.
[25] S. Kurniawan,et al. Potential of bacteria isolated from diesel-contaminated seawater in diesel biodegradation , 2019, Environmental Technology & Innovation.
[26] Y. Trihadiningrum,et al. Characterization of Alum Sludge from Surabaya Water Treatment Plant, Indonesia , 2019, Journal of Ecological Engineering.
[27] H. Hasan,et al. Biosurfactant produced by the hydrocarbon-degrading bacteria: Characterization, activity and applications in removing TPH from contaminated soil , 2019, Environmental Technology & Innovation.
[28] S. Kurniawan,et al. Characterization of mercury-reducing potential bacteria isolated from Keputih non-active sanitary landfill leachate, Surabaya, Indonesia under different saline conditions. , 2019, Journal of environmental management.
[29] A. Nędzarek,et al. Assessment of the use of precipitating agents and ceramic membranes for treatment of effluents with high concentrations of nitrogen and phosphorus from recirculating aquaculture systems , 2019, Aquaculture Research.
[30] A. Nandiyanto,et al. How to Read and Interpret FTIR Spectroscope of Organic Material , 2019, Indonesian Journal of Science and Technology.
[31] H. Hasan,et al. Potential of hexavalent chromium-resistant rhizosphere bacteria in promoting plant growth and hexavalent chromium reduction , 2019, Journal of Environmental Biology.
[32] João B. P. Soares,et al. Water Soluble Polymer Flocculants: Synthesis, Characterization, and Performance Assessment , 2018, Macromolecular Materials and Engineering.
[33] Faouzi Ben Rebah,et al. Microbial Flocculants as an Alternative to Synthetic Polymers for Wastewater Treatment: A Review , 2018, Symmetry.
[34] Ji Fang,et al. Application of Chitosan Composite Flocculant in Tap Water Treatment , 2018, Journal of chemistry.
[35] H. Bruning,et al. Natural flocculants from fresh and saline wastewater: Comparative properties and flocculation performances , 2018, Chemical Engineering Journal.
[36] A. Dadrasnia,et al. Production and Characterization of a Bioflocculant Produced by Bacillus salmalaya 139SI-7 and Its Applications in Wastewater Treatment , 2018, Molecules.
[37] G. Ho,et al. Review - Bacteria and their extracellular polymeric substances causing biofouling on seawater reverse osmosis desalination membranes. , 2018, Journal of environmental management.
[38] Sudhir Kumar,et al. MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms. , 2018, Molecular biology and evolution.
[39] I. Purwanti,et al. The Effect of pH and Aluminium to Bacteria Isolated from Aluminium Recycling Industry , 2018 .
[40] C. Pohl,et al. Bioflocculant production from Streptomyces platensis and its potential for river and waste water treatment , 2018, Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology].
[41] Yinbo He,et al. Flocculation of submicron particles in water-based drilling fluids by CMC-g-DMDAAC , 2018 .
[42] A. J. Hargreaves,et al. Impacts of coagulation-flocculation treatment on the size distribution and bioavailability of trace metals (Cu, Pb, Ni, Zn) in municipal wastewater. , 2018, Water research.
[43] A. Alarcón,et al. Diesel degradation by emulsifying bacteria isolated from soils polluted with weathered petroleum hydrocarbons , 2017 .
[44] L. Muruganandam,et al. Treatment of waste water by coagulation and flocculation using biomaterials , 2017 .
[45] A. Idris,et al. A novel biocoagulant agent from mushroom chitosan as water and wastewater therapy , 2017, Environmental Science and Pollution Research.
[46] E. van Heerden,et al. Flocculating performance of a bioflocculant produced by Arthrobacter humicola in sewage waste water treatment , 2017, BMC Biotechnology.
[47] Sheikh AbdullahSiti Rozaimah,et al. Accumulation of Fe-Al by Scirpus grossus grown in synthetic bauxite mining wastewater and identification of resistant rhizobacteria. , 2017 .
[48] M. Teixeira,et al. The use of Moringa oleifera as a natural coagulant in surface water treatment , 2017 .
[49] H. Hasan,et al. Biosurfactant production by the hydrocarbon-degrading bacteria (HDB) Serratia marcescens: Optimization using central composite design (CCD) , 2017 .
[50] Qingbiao Li,et al. Effect of surface physicochemical properties on the flocculation behavior of Bacillus licheniformis , 2017 .
[51] B. Lal,et al. Characterization of a Novel Polymeric Bioflocculant Produced from Bacterial Utilization of n-Hexadecane and Its Application in Removal of Heavy Metals , 2017, Front. Microbiol..
[52] Wajhul Qamar,et al. Optimization of conditions to extract high quality DNA for PCR analysis from whole blood using SDS-proteinase K method , 2016, Saudi journal of biological sciences.
[53] B. Jones,et al. Water quality, seasonality, and trajectory of an aquaculture-wastewater plume in the Red Sea , 2017 .
[54] Z. Abidin,et al. Moringa oleifera SEED DERIVATIVES AS POTENTIAL BIO-COAGULANT FOR MICROALGAE Chlorella Sp. HARVESTING , 2016 .
[55] P. Nelson. Chain Length and Thermal Sensitivity of the Infrared Spectra of a Homologous Series of Anhydrous Silver(I) n-Alkanoates , 2016 .
[56] A. Okoh,et al. Evaluation of flocculating performance of a thermostable bioflocculant produced by marine Bacillus sp. , 2016, Environmental technology.
[57] Pengfei Sun,et al. Revealing the characteristics of a novel bioflocculant and its flocculation performance in Microcystis aeruginosa removal , 2015, Scientific Reports.
[58] K. Ciuffi,et al. Correction: Influence of the hydrophilic/hydrophobic nature of polyetheramines on the interaction between amine–alcohol–silicate hybrids and anionic dyes for effective water cleaning , 2015 .
[59] P. Abreu,et al. Bacterial community of pond's water, sediment and in the guts of tilapia (Oreochromis niloticus) juveniles characterized by fluorescent in situ hybridization technique , 2015 .
[60] J. Buckle,et al. Chapter 7 – Infection , 2015 .
[61] Wei Tang,et al. Production, Characterization, and Flocculation Mechanism of Cation Independent, pH Tolerant, and Thermally Stable Bioflocculant from Enterobacter sp. ETH-2 , 2014, PloS one.
[62] R. Macedonia,et al. Methods for waste waters treatment in textile industry , 2014 .
[63] Fathurrahman Lananan,et al. Harvesting microalgae, Chlorella sp. by bio-flocculation of Moringa oleifera seed derivatives from aquaculture wastewater phytoremediation , 2014 .
[64] B. Jefferson,et al. Examination of the physical properties of Microcystis aeruginosa flocs produced on coagulation with metal salts. , 2014, Water research.
[65] B. Ramavandi. Treatment of water turbidity and bacteria by using a coagulant extracted from Plantago ovata , 2014 .
[66] R. Hogg. Bridging Flocculation by Polymers , 2013 .
[67] J. Sirviö,et al. Use of nanoparticular and soluble anionic celluloses in coagulation-flocculation treatment of kaolin suspension. , 2012, Water Research.
[68] Hakim Lounici,et al. Coagulation Flocculation Test of Keddara's Water Dam Using Chitosan and Sulfate Aluminium , 2012 .
[69] G. EmanZakaria. Production and characteristics of a heavy metals removing bioflocculant produced by Pseudomonas aeruginosa. , 2012 .
[70] A. Fakhruddin,et al. Reduction of Turbidity of Water Using Locally Available Natural Coagulants , 2011, ISRN microbiology.
[71] L. Ambarsari,et al. Characterization of Bioflocculant Producing-Bacteria Isolated from Tapioca Waste Water , 2011 .
[72] E. G. Ferradás,et al. Assessing the impact of petrol stations on their immediate surroundings. , 2010, Journal of environmental management.
[73] B. Jefferson,et al. The impact of differing cell and algogenic organic matter (AOM) characteristics on the coagulation and flotation of algae. , 2010, Water research.
[74] H. Salleh,et al. Production of Natural Coagulant from Moringa Oleifera Seed for Application in Treatment of Low Turbidity Water , 2010 .
[75] S. Horinouchi,et al. Cell-to-Cell Communications among Microorganisms , 2010 .
[76] Mark Johnson,et al. NCBI BLAST: a better web interface , 2008, Nucleic Acids Res..
[77] B. Bolto. Coagulation and flocculation with organic polyelectrolytes , 2006 .
[78] Qixing Zhou,et al. Toxic effects of Al‐based coagulants on Brassica chinensis and Raphanus sativus growing in acid and neutral conditions , 2005, Environmental toxicology.
[79] W. Klemm. Biological water and its role in the effects of alcohol. , 1998, Alcohol.
[80] R. Kurane,et al. Production of a bioflocculant by mixed culture. , 1994, Bioscience, biotechnology, and biochemistry.