Preparation and characterization of MgO hybrid biochar and its mechanism for high efficient recovery of phosphorus from aqueous media
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Yuan Luo | Zengqiang Zhang | Junting Pan | Ronghua Li | Amjad Ali | Hongbin Liu | Yuxi Gao | Hailong Wang | Xianxian Li | Yaru Peng | P. Zhao | Junxi Liu | Yueru Fang | Y. Fang | Yueru Fang | Yuxi Gao
[1] Zengqiang Zhang,et al. Hydroxyapatite tailored hierarchical porous biochar composite immobilized Cd(II) and Pb(II) and mitigated their hazardous effects in contaminated water and soil. , 2022, Journal of hazardous materials.
[2] C. Gourdon,et al. Torrefaction of cellulose, hemicelluloses and lignin extracted from woody and agricultural biomass in TGA-GC/MS: Linking production profiles of volatile species to biomass type and macromolecular composition , 2022, Industrial Crops and Products.
[3] Quan Wang,et al. Magnetic biochar composite decorated with amino-containing biopolymer for phosphorus recovery from swine wastewater , 2022, Colloids and Surfaces A: Physicochemical and Engineering Aspects.
[4] T. Itoh,et al. Synthesizing biochar-based fertilizer with sustained phosphorus and potassium release: Co-pyrolysis of nutrient-rich chicken manure and Ca-bentonite. , 2022, The Science of the total environment.
[5] Yiping Du,et al. Preparation of magnetic chitosan corn straw biochar and its application in adsorption of amaranth dye in aqueous solution. , 2022, International journal of biological macromolecules.
[6] R. Smith,et al. High-capacity structured MgO-Co adsorbent for removal of phosphorus from aqueous solutions , 2021 .
[7] R. Vahala,et al. Tailoring metal-impregnated biochars for selective removal of natural organic matter and dissolved phosphorus from the aqueous phase , 2021, Microporous and Mesoporous Materials.
[8] H. Ngo,et al. Zirconium hydroxide nanoparticle encapsulated magnetic biochar composite derived from rice residue: Application for As(III) and As(V) polluted water purification. , 2021, Journal of hazardous materials.
[9] Danchen Zhu,et al. Temperature-dependent magnesium citrate modified formation of MgO nanoparticles biochar composites with efficient phosphate removal. , 2021, Chemosphere.
[10] Fanlong Kong,et al. Recovery of phosphorus from eutrophic water using nano zero-valent iron-modified biochar and its utilization. , 2021, Chemosphere.
[11] Ling Zhao,et al. Further reuse of phosphorus-laden biochar for lead sorption from aqueous solution: Isotherm, kinetics, and mechanism. , 2021, The Science of the total environment.
[12] Zhengyi Hu,et al. Effects of biochar application and irrigation rate on the soil phosphorus leaching risk of fluvisol profiles in open vegetable fields. , 2021, The Science of the total environment.
[13] Zhang Lin,et al. Adsorption recovery of phosphate from waste streams by Ca/Mg-biochar synthesis from marble waste, calcium-rich sepiolite and bagasse , 2021 .
[14] Rundong Li,et al. Influence of microwave-assisted pyrolysis parameters and additives on phosphorus speciation and transformation in phosphorus-enriched biochar derived from municipal sewage sludge , 2021, Journal of Cleaner Production.
[15] F. Howari,et al. Nano-zerovalent manganese/biochar composite for the adsorptive and oxidative removal of Congo-red dye from aqueous solutions. , 2021, Journal of hazardous materials.
[16] B. Sharma,et al. Capture and recover dissolved phosphorous from aqueous solutions by a designer biochar: Mechanism and performance insights. , 2021, Chemosphere.
[17] Zhao Jiang,et al. Enhanced phosphate scavenging with effective recovery by magnetic porous biochar supported La(OH)3: Kinetics, isotherms, mechanisms and applications for water and real wastewater. , 2021, Bioresource technology.
[18] Wen-guo Wang,et al. Effects of livestock and poultry breeding pollution on health risks: Evidence from a hog breeding case in rural China , 2021 .
[19] Xiaoyu Zhang,et al. Facile fabrication of Mg-Fe-biochar adsorbent derived from spent mushroom waste for phosphate removal , 2020 .
[20] Chaorong Liu,et al. Enhanced nitrogen and phosphorus adsorption performance and stabilization by novel panda manure biochar modified by CMC stabilized nZVZ composite in aqueous solution: Mechanisms and application potential , 2020 .
[21] Hao Wang,et al. Enhanced adsorption of Pb(II) by nitrogen and phosphorus co-doped biochar derived from Camellia oleifera shells. , 2020, Environmental research.
[22] Yongzhen Peng,et al. Adsorption removal and reuse of phosphate from wastewater using a novel adsorbent of lanthanum-modified platanus biochar , 2020 .
[23] M. Rizwan,et al. Synthesis, characterization and application of novel MnO and CuO impregnated biochar composites to sequester arsenic (As) from water: Modeling, thermodynamics and reusability. , 2020, Journal of hazardous materials.
[24] Wei Wang,et al. Phosphorus recovery by core-shell γ-Al2O3/Fe3O4 biochar composite from aqueous phosphate solutions. , 2020, The Science of the total environment.
[25] Bing Yu,et al. High-Efficiency Reclaiming Phosphate from an Aqueous Solution by Bentonite Modified Biochars: A Slow Release Fertilizer with a Precise Rate Regulation , 2020 .
[26] Daniel C W Tsang,et al. Use of Mg/Ca modified biochars to take up phosphorus from acid-extract of incinerated sewage sludge ash (ISSA) for fertilizer application , 2020 .
[27] Y. J. Lee,et al. A facile one-pot hydrothermal synthesis of hydroxyapatite/biochar nanocomposites: Adsorption behavior and mechanisms for the removal of copper(II) from aqueous media , 2019, Chemical Engineering Journal.
[28] Shirong Zhang,et al. MgO-modified biochar increases phosphate retention and rice yields in saline-alkaline soil , 2019, Journal of Cleaner Production.
[29] M. Awasthi,et al. Synergistic effects of biochar/microbial inoculation on the enhancement of pig manure composting , 2019, Biochar.
[30] M. Awasthi,et al. Recovery of phosphate and dissolved organic matter from aqueous solution using a novel CaO-MgO hybrid carbon composite and its feasibility in phosphorus recycling. , 2018, The Science of the total environment.
[31] M. Awasthi,et al. Converting spent battery anode waste into a porous biocomposite with high Pb(II) ion capture capacity from solution. , 2018 .
[32] Quan Wang,et al. An overview of carbothermal synthesis of metal–biochar composites for the removal of oxyanion contaminants from aqueous solution , 2018 .
[33] M. Jacob,et al. Isotherms, kinetics and mechanism analysis of phosphorus recovery from aqueous solution by calcium-rich biochar produced from biosolids via microwave pyrolysis , 2018 .
[34] B. Wang,et al. Entrapment of ball-milled biochar in Ca-alginate beads for the removal of aqueous Cd(II). , 2017, Journal of industrial and engineering chemistry.
[35] Yuncong C. Li,et al. Biochar for volatile organic compound (VOC) removal: Sorption performance and governing mechanisms. , 2017, Bioresource technology.
[36] Zengqiang Zhang,et al. Simultaneous capture removal of phosphate, ammonium and organic substances by MgO impregnated biochar and its potential use in swine wastewater treatment , 2017 .
[37] M. Awasthi,et al. Enhancing phosphate adsorption by Mg/Al layered double hydroxide functionalized biochar with different Mg/Al ratios. , 2016, The Science of the total environment.
[38] Zengqiang Zhang,et al. Removal of Pb(II) and Cd(II) ions from aqueous solution by thiosemicarbazide modified chitosan. , 2016, International journal of biological macromolecules.
[39] K. Ahn,et al. Fabrication of porosity-enhanced MgO/biochar for removal of phosphate from aqueous solution: Application of a novel combined electrochemical modification method. , 2016, Bioresource technology.
[40] B. Gao,et al. Removal of arsenic, methylene blue, and phosphate by biochar/AlOOH nanocomposite , 2013 .
[41] Yuncong C. Li,et al. Engineered carbon (biochar) prepared by direct pyrolysis of Mg-accumulated tomato tissues: characterization and phosphate removal potential. , 2013, Bioresource technology.
[42] M. Zhang,et al. Synthesis of porous MgO-biochar nanocomposites for removal of phosphate and nitrate from aqueous solutions , 2012 .
[43] Lizhong Zhu,et al. Thermodynamics of naphthalene sorption to organoclays: role of surfactant packing density. , 2008, Journal of colloid and interface science.
[44] S. Zec,et al. The influence of cationic impurities in silica on its crystallization and point of zero charge. , 2007, Journal of colloid and interface science.
[45] Wiwut Tanthapanichakoon,et al. Pyrolysis behaviors of rice straw, rice husk, and corncob by TG-MS technique , 2007 .
[46] Sirena C. Hargrove-Leak,et al. In situ FTIR study of the adsorption and reaction of 2′-hydroxyacetophenone and benzaldehyde on MgO , 2006 .