Heterotrophic nitrification and biomineralization potential of Pseudomonas sp. HXF1 for the simultaneous removal of ammonia nitrogen and fluoride from groundwater.
暂无分享,去创建一个
Amjad Ali | Zizhen Wu | Zhao Wang | Xiaofeng Hu | Junfeng Su
[1] F. Liu,et al. Non-thermal plasma combined with zeolites to remove ammonia nitrogen from wastewater. , 2021, Journal of hazardous materials.
[2] Amjad Ali,et al. Isolation of biosynthetic crystals by microbially induced calcium carbonate precipitation and their utilization for fluoride removal from groundwater. , 2020, Journal of hazardous materials.
[3] Amjad Ali,et al. Denitrification performance and mechanism of a novel isolated Acinetobacter sp. FYF8 in oligotrophic ecosystem. , 2020, Bioresource technology.
[4] Hui Wang,et al. Simultaneous heterotrophic nitrification and aerobic denitrification by a novel isolated Pseudomonas mendocina X49. , 2020, Bioresource technology.
[5] Mengjun Chen,et al. A new electrochemical method for simultaneous removal of Mn2+and NH4+-N in wastewater with Cu plate as cathode. , 2020, Ecotoxicology and environmental safety.
[6] M. J. Nandan,et al. Groundwater chemistry integrating the pollution index of groundwater and evaluation of potential human health risk: A case study from hard rock terrain of south India. , 2020, Ecotoxicology and environmental safety.
[7] Guangming Zhang,et al. Study on adsorption of ammonia nitrogen by iron-loaded activated carbon from low temperature wastewater. , 2020, Chemosphere.
[8] S. Li,et al. Analysis of microbial community structure and degradation of ammonia nitrogen in groundwater in cold regions , 2020, Environmental Science and Pollution Research.
[9] Hongxia Qiao,et al. Synthesis of manganese oxides for adsorptive removal of ammonia nitrogen from aqueous solutions , 2020 .
[10] Yiping Guo,et al. Contaminant occurrence and migration between high- and low-permeability zones in groundwater systems: A review. , 2020, The Science of the total environment.
[11] Tinglin Huang,et al. Removal of tetracycline by denitrifying Mn(II)-oxidizing bacterium Pseudomonas sp. H117 and biomaterials (BMO and MBMO): Efficiency and mechanisms. , 2020, Bioresource technology.
[12] Zhaobing Guo,et al. Fluoride removal efficiencies and mechanism of schwertmannite from KMnO4/MnO2-Fe(II) processes. , 2020, Journal of hazardous materials.
[13] T. Zhu,et al. Ammonium removal characteristics of heterotrophic nitrifying bacterium Pseudomonas stutzeri GEP-01 with potential for treatment of ammonium-rich wastewater , 2020, Bioprocess and Biosystems Engineering.
[14] M. Shahin,et al. Microbially induced calcite precipitation for production of “bio-bricks” treated at partial saturation condition , 2020, Construction and Building Materials.
[15] Jianlong Wang,et al. Heterotrophic nitrification and aerobic denitrification by a novel Acinetobacter sp. ND7 isolated from municipal activated sludge. , 2020, Bioresource technology.
[16] Tinglin Huang,et al. The performance and mechanism of simultaneous removal of fluoride, calcium, and nitrate by calcium precipitating strain Acinetobacter sp. H12. , 2020, Ecotoxicology and environmental safety.
[17] N. Zouari,et al. Microbially induced calcite precipitation in calcareous soils by endogenous Bacillus cereus, at high pH and harsh weather. , 2019, Journal of environmental management.
[18] Qingping Wu,et al. Nitrogen removal characteristics of a versatile heterotrophic nitrifying-aerobic denitrifying bacterium, Pseudomonas bauzanensis DN13-1, isolated from deep-sea sediment. , 2019, Bioresource technology.
[19] J. J. Santana,et al. Design and optimization of an electrocoagulation reactor for fluoride remediation in underground water sources for human consumption , 2019, Journal of Water Process Engineering.
[20] Tinglin Huang,et al. Enhancement of the denitrification in low C/N condition and its mechanism by a novel isolated Comamonas sp. YSF15. , 2019, Environmental Pollution.
[21] Lei Yang,et al. Simultaneous removal of nitrogen and phosphorous by heterotrophic nitrification-aerobic denitrification of a metal resistant bacterium Pseudomonas putida strain NP5. , 2019, Bioresource technology.
[22] Yan-jun Du,et al. Microbial induced carbonate precipitation for immobilizing Pb contaminants: Toxic effects on bacterial activity and immobilization efficiency. , 2019, The Science of the total environment.
[23] R. Saeedi,et al. Age-sex specific disability-adjusted life years (DALYs) attributable to elevated levels of fluoride in drinking water: A national and subnational study in Iran, 2017. , 2019, Water research.
[24] Hu Chen,et al. Ammonium removal characteristics of an acid-resistant bacterium Acinetobacter sp. JR1 from pharmaceutical wastewater capable of heterotrophic nitrification-aerobic denitrification. , 2019, Bioresource technology.
[25] Tinglin Huang,et al. Multifunctional modified polyvinyl alcohol: A powerful biomaterial for enhancing bioreactor performance in nitrate, Mn(II) and Cd(II) removal. , 2019, Water research.
[26] Tinglin Huang,et al. Investigation of fluorapatite crystallization in a fluidized bed reactor for the removal of fluoride from groundwater , 2018, Journal of Chemical Technology & Biotechnology.
[27] J. P. Maity,et al. Removal of fluoride from water through bacterial-surfactin mediated novel hydroxyapatite nanoparticle and its efficiency assessment: Adsorption isotherm, adsorption kinetic and adsorption Thermodynamics , 2018 .
[28] G. Halder,et al. Microbial remediation of fluoride-contaminated water via a novel bacterium Providencia vermicola (KX926492). , 2017, Journal of environmental management.
[29] Tinglin Huang,et al. Catalytic oxidation removal of ammonium from groundwater by manganese oxides filter: Performance and mechanisms , 2017 .
[30] Mei Wang,et al. Removal of fluoride from aqueous solution by Mg-Al-Zr triple-metal composite , 2017 .
[31] SuJun feng,et al. Kinetic Analysis of Heterotrophic Nitrification–Aerobic Denitrification by an Oligotrophic Acinetobacter Sp. SYF26 , 2017 .
[32] F. Ma,et al. Comparison of the NH4+-N removal ability by Klebsiella sp. FC61 in a bacterial suspension system and a bacterial immobilization system , 2017 .
[33] J. So,et al. Formations of calcium carbonate minerals by bacteria and its multiple applications , 2016, SpringerPlus.
[34] Zhenlun Li,et al. Heterotrophic nitrification and aerobic denitrification by Pseudomonas tolaasii Y-11 without nitrite accumulation during nitrogen conversion. , 2016, Bioresource technology.
[35] M. Mourabet,et al. Removal of fluoride from aqueous solution by adsorption on hydroxyapatite (HAp) using response surface methodology , 2015 .
[36] Tinglin Huang,et al. Nitrogen-removal efficiency of a novel aerobic denitrifying bacterium, Pseudomonas stutzeri strain ZF31, isolated from a drinking-water reservoir. , 2015, Bioresource technology.
[37] Yongkang Lv,et al. Nitrogen removal characteristics of heterotrophic nitrification-aerobic denitrification by Alcaligenes faecalis C16 , 2015 .
[38] E. Wang,et al. Removal of nitrogen by heterotrophic nitrification-aerobic denitrification of a phosphate accumulating bacterium Pseudomonas stutzeri YG-24. , 2015, Bioresource technology.
[39] R. Naidu,et al. Defluoridation of drinking water using adsorption processes. , 2013, Journal of hazardous materials.
[40] N. Sakthivel,et al. Simultaneous phosphate solubilization potential and antifungal activity of new fluorescent pseudomonad strains, Pseudomonasaeruginosa, P. plecoglossicida and P. mosselii , 2009 .
[41] J. Arias,et al. Polysaccharides and proteoglycans in calcium carbonate-based biomineralization. , 2008, Chemical reviews.
[42] J. Prosser,et al. Phylogeny of nitrite reductase (nirK) and nitric oxide reductase (norB) genes from Nitrosospira species isolated from soil. , 2007, FEMS microbiology letters.
[43] Zhiqiang Shen,et al. Development and application of a novel and effective screening method for aerobic denitrifying bacteria. , 2006, FEMS microbiology letters.
[44] Sara Hallin,et al. Reassessing PCR primers targeting nirS, nirK and nosZ genes for community surveys of denitrifying bacteria with DGGE. , 2004, FEMS microbiology ecology.
[45] L. Weatherley,et al. Ammonia removal from wastewater by ion exchange in the presence of organic contaminants. , 2003, Water research.
[46] Jizhong Zhou,et al. Nitrite Reductase Genes (nirK andnirS) as Functional Markers To Investigate Diversity of Denitrifying Bacteria in Pacific Northwest Marine Sediment Communities , 2000, Applied and Environmental Microbiology.
[47] J. Stanley,et al. Molecular subtyping scheme for Salmonella panama , 1995, Journal of clinical microbiology.