Combined effects of microorganisms and inorganic templates on the nucleation and precipitation of magnesium-calcium minerals: experimental evidences and theoretical calculations
暂无分享,去创建一个
J. Li | F. Liu | Zuozhen Han | Yanyang Zhao | Qingyin Xia | Yu Han | Xiaoli Gao
[1] H. Gharibi,et al. Engineering dual metal single-atom sites with the nitrogen-coordinated nonprecious catalyst for oxygen reduction reaction (ORR) in acidic electrolyte , 2022, Applied Surface Science.
[2] S. Luber,et al. Explicit solvent effects on (1 1 0) ruthenium oxide surface wettability: Structural, electronic and mechanical properties of rutile RuO2 by means of spin-polarized DFT-MD , 2021 .
[3] Keyu Liu,et al. Coupled effects of temperature and solution compositions on metasomatic dolomitization: Significance and implication for the formation mechanism of carbonate reservoir , 2021, Journal of Hydrology.
[4] Chao‐sheng Tang,et al. Bio-mediated method for improving surface erosion resistance of clayey soils , 2021 .
[5] Raja M. Nagisetty,et al. Investigating the potential for microbially induced carbonate precipitation to treat mine waste. , 2021, Journal of hazardous materials.
[6] Jingxiang Zhao,et al. Single Ir atom anchored in pyrrolic-N4 doped graphene as a promising bifunctional electrocatalyst for the ORR/OER: a computational study. , 2021, Journal of colloid and interface science.
[7] S. Haram,et al. Siderophore mediated mineralization of struvite: A novel greener route of sustainable phosphate management. , 2021, Water Research.
[8] M. Tucker,et al. Selective Adsorption of Amino Acids in Crystals of Monohydrocalcite Induced by the Facultative Anaerobic Enterobacter ludwigii SYB1 , 2021, Frontiers in Microbiology.
[9] Chengzhou Zhu,et al. PdBi Single‐Atom Alloy Aerogels for Efficient Ethanol Oxidation , 2021, Advanced Functional Materials.
[10] Lin-Kun Huang,et al. Contribution of selective bacterial extracellular polymeric substances to the polymorphism and morphologies of formed Ca/Mg carbonates , 2021 .
[11] G. Chass,et al. New insights into the role of solution additive anions in Mg2+ dehydration: implications for mineral carbonation , 2021, CrystEngComm.
[12] Jianyi Liu,et al. Effect of Ca2+, Mg2+, Ba2+ and Sr2+ cations on calcium carbonate scaling formation in oil-gas well: Based on density functional theory study and molecular dynamics simulation , 2021 .
[13] Xiancai Lu,et al. Analysis of the Talaromyces flavus exometabolome reveals the complex responses of the fungus to minerals , 2021 .
[14] Runliang Zhu,et al. Immobilization and migration of arsenic during the conversion of microbially induced calcium carbonate to hydroxylapatite. , 2021, Journal of hazardous materials.
[15] A. Borkowski,et al. Newly-discovered interactions between bacteriophages and the process of calcium carbonate precipitation , 2021 .
[16] Yanyan Zhang,et al. Biomineralization of hypersaline produced water using microbially induced calcite precipitation. , 2020, Water research.
[17] M. Ozdemir,et al. Surface free energy analysis of ITO/Au/ITO multilayer thin films on polycarbonate substrate by apparent contact angle measurements , 2020 .
[18] Chunyu Zhou,et al. Molecular dynamics simulation and DFT calculations on the oil-water mixture separation by single-walled carbon nanotubes , 2020 .
[19] Hongmei Wang,et al. Catalytic effect of microbially-derived carboxylic acids on the precipitation of Mg-calcite and disordered dolomite: Implications for sedimentary dolomite formation , 2020 .
[20] T. Kristóf,et al. The role of clay surfaces in the heterogeneous nucleation of calcite: Molecular dynamics simulations of cluster formation and attachment , 2020 .
[21] Yanhong Zhao,et al. Biomineralization of Carbonate Minerals Induced by The Moderate Halophile Staphylococcus Warneri YXY2 , 2020 .
[22] Chao‐sheng Tang,et al. Bio-remediation of desiccation cracking in clayey soils through microbially induced calcite precipitation (MICP) , 2020 .
[23] Q. Yao,et al. Insights into the formation mechanism of vaterite mediated by a deep-sea bacterium Shewanella piezotolerans WP3 , 2019, Geochimica et Cosmochimica Acta.
[24] F. Min,et al. Mechanism research on surface hydration of kaolinite, insights from DFT and MD simulations , 2019, Applied Surface Science.
[25] V. Achal,et al. Combining the microbial calcite precipitation process with biochar in order to improve nickel remediation , 2019, Applied Geochemistry.
[26] Hongmei Wang,et al. Experimental evidence for abiotic formation of low-temperature proto-dolomite facilitated by clay minerals , 2019, Geochimica et Cosmochimica Acta.
[27] Yanhong Zhao,et al. Extracellular and Intracellular Biomineralization Induced by Bacillus licheniformis DB1-9 at Different Mg/Ca Molar Ratios , 2018, Minerals.
[28] Yong Han,et al. Influence of alternating electromagnetic field and ultrasonic on calcium carbonate crystallization in the presence of magnesium ions , 2018, Journal of Crystal Growth.
[29] E. Goharshadi,et al. Graphene oxide nanosheets synthesized by ultrasound: Experiment versus MD simulation , 2018, Applied Surface Science.
[30] Jianguo Yu,et al. Investigation of amorphous calcium carbonate’s formation under high concentration of magnesium: The prenucleation cluster pathway , 2018, Journal of Crystal Growth.
[31] M. Andersson,et al. The mechanisms of crystal growth inhibition by organic and inorganic inhibitors , 2018, Nature Communications.
[32] Hongmei Wang,et al. High salinity facilitates dolomite precipitation mediated by Haloferax volcanii DS52 , 2017 .
[33] J. Roberts,et al. Microbially catalyzed dolomite formation: From near-surface to burial , 2017 .
[34] Peiyuan Li,et al. Precipitation of Carbonate Minerals Induced by the Halophilic Chromohalobacter Israelensis under High Salt Concentrations: Implications for Natural Environments , 2017 .
[35] J. Rimer,et al. Nucleation of open framework materials: Navigating the voids , 2016 .
[36] A. Liu,et al. Resolving MISS conceptions and misconceptions: A geological approach to sedimentary surface textures generated by microbial and abiotic processes , 2016 .
[37] H. Teng,et al. Evolution of calcite growth morphology in the presence of magnesium: Implications for the dolomite problem , 2016 .
[38] M. Tlili,et al. Effects of temperature on precipitation kinetics and microstructure of calcium carbonate in the presence of magnesium and sulphate ions , 2014 .
[39] B. Dlugogorski,et al. Biologically enhanced degassing and precipitation of magnesium carbonates derived from bicarbonate solutions , 2014 .
[40] M. Cuthbert,et al. A field and modeling study of fractured rock permeability reduction using microbially induced calcite precipitation. , 2013, Environmental science & technology.
[41] Jun Cheng,et al. Understanding surface acidity of gibbsite with first principles molecular dynamics simulations , 2013 .
[42] D. DePaolo,et al. General model for calcite growth kinetics in the presence of impurity ions , 2013 .
[43] E. Roden,et al. Dissolved sulfide-catalyzed precipitation of disordered dolomite: Implications for the formation mechanism of sedimentary dolomite , 2012 .
[44] J. Gale,et al. Stable prenucleation mineral clusters are liquid-like ionic polymers , 2011, Nature communications.
[45] J. Bréhéret,et al. Microbial mat development and dolomite formation under pre-evaporitic conditions during the Atlantic in a temperate area: the Sarliève Lake (French Massif Central). , 2011 .
[46] L. Qi,et al. In Vitro Synthesis of High Mg Calcite under Ambient Conditions and Its Implication for Biomineralization Process , 2011 .
[47] O. Penrose,et al. Comparing the Efficiencies of Stochastic Isothermal Molecular Dynamics Methods , 2011 .
[48] Zhijian Wu,et al. Magnesium carbonate precipitation under the influence of polyacrylamide , 2010 .
[49] Helmut Cölfen,et al. Stable Prenucleation Calcium Carbonate Clusters , 2008, Science.
[50] M. Mazzotti,et al. Precipitation in the Mg-carbonate system—effects of temperature and CO2 pressure , 2008 .
[51] Charles W. Bock,et al. Calcium Ion Coordination: A Comparison with That of Beryllium, Magnesium, and Zinc , 1996 .
[52] W. Lipscomb,et al. The synchronous-transit method for determining reaction pathways and locating molecular transition states , 1977 .