Key factors in the adsorption of natural organic matter to metal (hydr)oxides: Fractionation and conformational change
文献类型: 外文期刊
作者: Xu Y.;Hiemstra T.;Tan W.;Bai Y.;Weng L.
作者机构:
关键词: (hydr)oxide minerals;Fractionated adsorption;Heterogeneity;Humic acid;Polydispersity;Supramolecules
期刊名称: Chemosphere
ISSN: 0045-6535
年卷期: 2022 年 308.0 卷
页码:
收录情况: SCIE(2022版) ; EI(2022版)
摘要: Adsorption of natural organic matter (NOM) to mineral surfaces is an important process determining the environmental fate and biogeochemical cycling of many elements. Natural organic matter consists of a heterogeneous mixture of soft and flexible organic molecules. Upon adsorption, size fractionation may occur, as well as changes in molecular conformation. Although very important, these phenomena have been omitted in existing adsorption models. Filling this gap, a novel framework for NOM adsorption to metal (hydr)oxides is presented. Humic acid (HA) was used as an analog for studying experimentally the NOM adsorption to goethite and its size fractionation as a function of pH, ionic strength, and surface loading. Size fractionation was evaluated for adsorption isotherms collected at pH 4 and 6, showing HA molecules of low molar mass were preferentially adsorbed. This phenomenon was incorporated into the new model. Consistent description of the HA adsorption data over the entire range of pH (3–11), ionic strength (2–100 mM), and surface loading (0.1–3 mg m−2) indicated that the spatial distribution of HA molecules adsorbed in the interface is a trade-off between maximizing the interaction of the HA ligands with the oxide surface and minimizing the electrostatic repulsion between HA particles as a result of interfacial crowding. Our advanced consistent framework is able to quantify changes in molar mass and molecular conformation, thereby significantly contributing to an improved understanding of the competitive power of HA for interacting on oxides with other adsorbed small organic acids as well as environmentally important oxyanions, such as phosphate, arsenate, and others. © 2022 The Authors
分类号:
- 相关文献
作者其他论文 更多>>
-
Hypoxia-inducible lipid droplet-associated protein (HILPDA) and cystathionine β-synthase (CBS) co-contribute to protecting intestinal epithelial cells from Staphylococcus aureus via regulating lipid droplets formation
作者:Fu S.;Yu R.;Yang B.;Han X.;Xu Y.;Miao J.
关键词:Cystathionine β-synthase;HILPDA;Intestinal epithelial cells;MTTP;Staphylococcus aureus
-
Comparative effects of phosphorylation and acetylation on glycolysis and myofibrillar proteins degradation in postmortem muscle
作者:Ren C.;Chen L.;Bai Y.;Hou C.;Li X.;Schroyen M.;Zhang D.
关键词:Glycolysis;Meat;Protein acetylation;Protein degradation;Protein phosphorylation
-
Mercapto–palygorskite decreases the Cd uptake of wheat by changing Fe and Mn fraction in Cd contaminated alkaline soil
作者:Yong Y.;Yang T.;Wang Y.;Xu Y.;Huang Q.;Liang X.;Sun Y.;Wang L.
关键词:Alkaline soil;Cd pollution;Fe (Mn) oxides;Mercapto–palygorskite;Soil colloid;Wheat
-
Characterization of a novel thermostable α-L-arabinofuranosidase for improved synergistic effect with xylanase on lignocellulosic biomass hydrolysis without prior pretreatment
作者:Liu X.;Gao F.;Wang Y.;Zhang J.;Bai Y.;Zhang W.;Luo H.;Yao B.;Wang Y.;Tu T.
关键词:Glycoside hydrolase family 51;Lignocellulosic biomass;Pretreatment;Synergistic degradation;Thermostable enzymes;Xylanase;α-L-Arabinofuranosidase
-
The maize transcription factor CCT regulates drought tolerance by interacting with Fra a 1, E3 ligase WIPF2, and auxin response factor Aux/IAA8
作者:Zhang Z.;Qu J.;Lu M.;Zhao X.;Xu Y.;Wang L.;Liu Z.;Shi Y.;Liu C.;Li Y.;Wang C.;Xu M.;Nan Z.;Cao Q.;Pan J.;Liu W.;Li X.;Sun Q.;Wang W.
关键词:Auxin;auxin response gene;drought tolerance;plant growth;ubiquitination;ZmCCT
-
Development of magnetic molecularly imprinted polymers for selective extraction of Benzoxazolinone-type alkaloids from acanthus plants
作者:Lin H.;Li B.;Bai Y.;Wang S.;Zhou X.;Yuan L.;Zhang J.;She Y.;Zhou H.;Abd El-Aty A.M.
关键词:Acanthaceae ebracteatus;Acanthus ilicifolius linnaeus;Benzoxazole-type active components;Magnetic separation;Molecularly imprinted polymer;Ocean medicine
-
Efficient production of γ-aminobutyric acid using engineered Escherichia coli whole-cell catalyst
作者:Chang F.;Wang Y.;Zhang J.;Tu T.;Luo H.;Huang H.;Bai Y.;Qin X.;Wang Y.;Yao B.;Wang Y.;Wang X.
关键词:Cell permeability;Escherichia coli;PLP self-sufficient system;Whole-cell bioconversion;γ-Aminobutyric acid