cadmium has been researched along with lignin in 58 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 12 (20.69) | 29.6817 |
2010's | 25 (43.10) | 24.3611 |
2020's | 21 (36.21) | 2.80 |
Authors | Studies |
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Baldrian, P; Gabriel, J; in Der Wiesche, C; Nerud, F; Zadrazil, F | 1 |
Godbold, DL; Gross, K; Langenfeld-Heyser, R; Polle, A; Schützendübel, A; Schwanz, P; Teichmann, T | 1 |
Baldrian, P; Gabriel, J | 1 |
Demirbas, A | 1 |
Englezos, P; Li, XS | 1 |
Rowell, RM; Shin, EW | 1 |
Mu, H; Shan, X; Wang, S; Zhang, S | 1 |
Mohan, D; Pittman, CU; Steele, PH | 1 |
Antunes, PA; Aroca, RF; Constantino, CJ; Curvelo, AA; da Silva, BA; Pasquini, D; Riul, AJ | 1 |
Klejdus, B; Kovácik, J | 1 |
Aarts, MG; Blankestijn, H; Ghandilyan, A; Moerland, PD; Schat, H; Tsiatsiani, S; van de Mortel, JE; van der Ent, S; Ver Loren van Themaat, E | 1 |
Harmita, H; Karthikeyan, KG; Pan, X | 1 |
Anirudhan, TS; Divya, L; Rijith, S | 1 |
Hedbavny, J; Klejdus, B; Kováčik, J; Zoń, J | 1 |
Ahsan, N; Komatsu, S; Nakamura, T | 1 |
Deckert, J; Pawlak-Sprada, S; Stobiecki, M | 1 |
Arasimowicz-Jelonek, M; Deckert, J; Pawlak-Sprada, S; Podgórska, M | 1 |
Elobeid, M; Feussner, I; Göbel, C; Polle, A | 1 |
Dos Santos, DA; Evtuguin, DV; Rudnitskaya, A | 1 |
Peng, XW; Sun, RC; Yang, D; Zhong, LX | 1 |
Ciadamidaro, L; Clucas, L; Madejón, P; Reiser, R; Robinson, B; Schulin, R; Simmler, M; Weber, P | 1 |
Cosio, C; Larras, F; Planchon, S; Poté, J; Regier, N; Renaut, J | 1 |
Antosiewicz, DM; Barabasz, A; Bulska, E; Kendziorek, M; Ruszczynska, A; Siemianowski, O; Williams, LE | 1 |
Bartczak, P; Bazhenov, VV; Jesionowski, T; Klapiszewski, Ł; Majchrzak, I; Moszyński, D; Siwińska-Stefańska, K; Szatkowski, T; Wysokowski, M | 1 |
Cheng, M; Huang, D; Xu, P; Zeng, G; Zhang, C; Zhao, M | 1 |
Chen, C; Rui, H; Shen, Z; Zhang, F; Zhang, X | 1 |
Cao, X; Lan, Y; Li, C; Li, K; Yang, C; Yang, J; Zhang, H; Zheng, W | 1 |
Chen, CL; Gong, XF; Liu, CY; Xu, S; Zeng, XX; Zou, HL | 1 |
Atrian, S; Calatayud, S; Capdevila, M; Gil-Moreno, S; Iturbe-Espinoza, P; Lin, W; Palacios, Ò | 1 |
Dong, Y; He, Y; Li, B; Lin, H; Luo, M; Wang, L | 1 |
Feng, X; Jiang, X; Yu, J; Zhou, F | 1 |
Cai, Q; Cheng, L; Cheng, S; Hu, M; Peng, L; Tu, Y; Wu, Y; Xia, T; Yu, H | 1 |
Kollárová, K; Lišková, D; Malovíková, A; Vatehová-Vivodová, Z | 1 |
Cui, J; Li, F; Li, Y; Liu, T | 1 |
Gondhalekar, SC; Shukla, SR | 1 |
Hao, H; Huang, H; Li, S; Tian, Y; Zhang, H; Zheng, L | 1 |
Cavallini, GS; Pedrosa, AL; Pedroza, MM | 1 |
Alam, A; Cheng, L; Gao, H; Kang, H; Madadi, M; Peng, L; Tang, SW; Wang, M; Wu, Y; Xia, T; Xu, C; Yu, L | 1 |
Fu, HL; Gong, FY; He, CT; Wang, XS; Yang, ZY; Zhang, Y | 1 |
Danezis, G; Georgiou, C; Koutrotsios, G; Zervakis, GI | 1 |
Chen, C; Chen, H; Huang, Y; Li, W; Li, Y; Liu, Y; Wang, J; Zhang, C; Zhang, Y; Zhang, Z | 1 |
Acevedo-Mackey, D; Acharjee, N; Akhtar, K; Al-Buriahi, MS; Amandi, A; An, Y; Anjum, NA; Asgari, Q; Badiei, B; Baez Vasquez, AY; Bagley, GD; Bahreini, MS; Bajelan, S; Baluja, MQ; Barbieri, MA; Batalha, MA; Bettiol, H; Bhattarai, U; Biset, JC; Bjerg, M; Björnsson, BT; Boag, AM; Borthwick, MS; Boukhris, I; Bragança, MLBM; Breves, JP; Britz-McKibbin, P; Broaddus, RR; Burnell, JE; Camargo, CA; Campo, M; Carlsen, KL; Catchpole, B; Cavalli, L; Chai, C; Chanakya, HN; Chang, AYH; Chantada, A; Chen, W; Chen, X; Chen, Y; Cheng, ZL; Chenoweth, DA; Chhetri, S; Coelho, CCNDS; Coker, ES; Cole, MA; Coniglio, A; Connor, TR; Corbishley, A; D'Arienzo, M; da Silva, AAM; Dai, Y; de Oliveira, BR; Dignac, MF; Dong, A; Dottino, JA; Duo, J; Einarsdottir, IE; Ekanayake, EMDNK; El Fels, L; El Hayany, B; El Shahawy, O; Elliott, RJR; Fabrizi, E; Farkas, K; Fellman, B; Fenoglio, D; Ferrario, M; Flögel, F; Fujiogi, M; Gamage, BD; Ganson, KT; Gao, X; Gärtner, S; Gautam, A; Gautam, S; Gaze, WH; Gosse, JA; Graham, DW; Graham, PA; Guastella, G; Guerrero, S; Gul, M; Guo, B; Guo, X; Gupta, VK; Hafidi, M; Halland, A; Han, W; Hardisty, M; Hasegawa, K; Hess, ST; Heydari, R; Hillary, LS; Holm, R; Huang, L; Jaleh, B; Jayasundara, JASB; Ji, X; Jiang, L; Jones, DL; Kac, G; Kebaili, I; Kelley, JB; Kelum, SHP; Kennedy, LJ; Khan, NA; Khazalpour, S; Khuntia, HK; Kinney, MS; Kommedal, Ø; Koomhin, P; Krawczyk, N; Kæstel, T; Lakmal, MAC; Li, H; Li, K; Li, R; Li, S; Li, W; Li, X; Li, Y; Liang, L; Lin, Y; Lippo, E; Liu, B; Liu, F; Liu, J; Liu, X; Liu, Y; Lodha, D; Loose, DS; López-Meza, P; Lu, F; Lu, KH; Lu, Y; Luo, Y; Ma, B; Malham, SK; Masood, A; Matan, N; McCormick, SD; McDonald, JE; McKenzie, LJ; Melendez, BD; Mikaeili, F; Mir, IR; Mirjalili, MH; Moreno, KP; Moura, IB; Müller, S; Nagata, JM; Nasri, A; Nasrollahzadeh, M; Navarro-Jiménez, E; Nie, E; Nielsen, CU; Nielsen, S; Nøhr, MK; Obeng, B; Odetayo, AA; Ortiz-Barrios, M; Ozgen, C; Pan, X; Parisi, ML; Paskavitz, AL; Patel, AK; Pedersen, M; Pontarollo, N; Potts, CM; Price, C; Pu, Y; Quénéa, K; Rahimi Khonakdari, M; Rather, BA; Raut, P; Regish, AM; Reible, DD; Rezadoost, H; Rizzati, M; Roviello, GN; Roviello, V; Rumpel, C; Sang, J; Sangroula, S; Saraiva, MDCP; Sarker, A; Sayyed, MI; Segoshi, A; Sehar, Z; Shao, X; Shaw, D; Shaw, L; Shekhawat, NS; Shim, JK; Shokouhimehr, M; Short, A; Soliman, PT; Songsamoe, S; Springer-Miller, RH; Stenstad, T; Strobl, E; Sun, R; Syme, H; Thai, L; Tian, G; Tofighi, B; Tonguc, B; Tuyiringire, D; Ulaganathan, N; Ulvestad, E; Varacca, A; Vergalli, S; Verma, DK; Villmones, HC; Wang, D; Wang, H; Wang, J; Wang, L; Wang, M; Wang, S; Wang, Y; Wang, Z; Weedon-Fekjær, H; Weller, SR; West, BE; Wilcox, MH; Wu, W; Wufuer, R; Xia, S; Xiang, H; Xu, H; Yan, L; Yang, RK; Yang, Y; Yates, MS; Ye, Q; Yin, H; Yin, Y; Yuan, Y; Yucesan, M; Yue, W; Zeng, W; Zhang, C; Zhang, D; Zhang, H; Zhang, L; Zhang, Q; Zhang, Y; Zhou, B; Zhou, Y; Zhu, Y; Zhu, Z | 1 |
Dai, Z; He, L; Liu, X; Tang, C; Xu, J | 1 |
Chen, H; Li, Y; Lin, X; Liu, Y; Mo, Q; Shang, D; Wang, J; Yang, X; Zhang, Y | 1 |
Chen, Z; Huang, F; Liu, Q; Luo, J; Tang, J; Wang, P; Xiao, R | 1 |
An, Q; Deng, K; Kang, L; Li, D; Li, JQ; Ma, J; Pan, C; Wu, Y; Zhang, J; Zhou, C | 1 |
Cabral Silva Pimentel, HD; Cavallini, GS; Karla Dos Santos Pereira, A; Paggiaro, J; Pereira, DH; Santos, TJ | 1 |
Guo, J; Hamid, Y; Haris, M; Li, Y; Saleem, A; Su, F; Wang, L; Wang, M; Yashir, N | 1 |
Guo, Z; Hu, Y; Xie, H; Xu, Z | 1 |
Dai, Z; He, L; Hong, Z; Lin, J; Liu, X; Tang, C; Xu, J; Yu, Y | 1 |
Chen, Z; Lin, Q; Liu, Q; Luo, J; Tang, J | 1 |
Cheng, P; Cui, W; Hou, X; Shen, W; Wang, J; Xu, S; Zhao, G; Zhao, H | 1 |
Chen, J; Han, X; Li, J; Li, S; Lu, Z; Wang, Y; Yu, M; Zhuo, R | 1 |
Chang, W; Gao, Y; Guo, C; Liu, W; Liu, Z; Qu, B; Sun, L; Tai, P; Xue, C | 1 |
Cui, T; Dong, W; Ma, H; Niu, K; Wang, Y; Zhang, R | 1 |
Feng, R; Li, Z; Liu, H; Liu, Z; Rensing, C; Shen, J; Wang, L; Wu, K; Wu, Z; Yang, G; You, L | 1 |
Chen, X; Chen, Y; Dong, Q; Huang, R; Li, B; Li, H; Li, Q; Luo, Y; Peng, L; Sahito, ZA; Tang, X; Tao, Q; Wang, C; Wu, Y; Xu, Q | 1 |
Chen, J; He, Y; Li, B; Liang, X; Wang, L; Zhan, F | 1 |
1 review(s) available for cadmium and lignin
57 other study(ies) available for cadmium and lignin
Article | Year |
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Influence of cadmium and mercury on activities of ligninolytic enzymes and degradation of polycyclic aromatic hydrocarbons by Pleurotus ostreatus in soil.
Topics: Biodegradation, Environmental; Cadmium; Culture Media; Lignin; Mercury; Pleurotus; Polycyclic Aromatic Hydrocarbons; Soil Microbiology; Soil Pollutants | 2000 |
Cadmium-induced changes in antioxidative systems, hydrogen peroxide content, and differentiation in Scots pine roots.
Topics: Antioxidants; Apoptosis; Ascorbate Peroxidases; Cadmium; Cell Differentiation; Glutathione Reductase; Hydrogen Peroxide; Hydroponics; Immunohistochemistry; Lignin; Lipids; Membrane Lipids; Oxidative Stress; Peroxidases; Phenols; Pinus; Plant Roots; Superoxide Dismutase | 2001 |
Lignocellulose degradation by Pleurotus ostreatus in the presence of cadmium.
Topics: Biodegradation, Environmental; Cadmium; Cellulase; Cellulose; Glycoside Hydrolases; Laccase; Lignin; Oxidoreductases; Peroxidase; Pleurotus | 2003 |
Adsorption of lead and cadmium ions in aqueous solutions onto modified lignin from alkali glycerol delignication.
Topics: Adsorption; Alkalies; Cadmium; Fagus; Glycerol; Industrial Waste; Lead; Lignin; Models, Chemical; Populus; Solutions; Water | 2004 |
Application of the NICA-Donnan approach to calculate equilibrium between proton and metal ions with lignocellulosic materials.
Topics: Adsorption; Binding, Competitive; Cadmium; Cellulose; Copper; Ferric Compounds; Lead; Lignin; Manganese; Metals; Models, Chemical; Protons; Wood | 2005 |
Cadmium ion sorption onto lignocellulosic biosorbent modified by sulfonation: the origin of sorption capacity improvement.
Topics: Acrolein; Adsorption; Cadmium; Juniperus; Kinetics; Lignin; Sulfites; Water Pollutants, Chemical; Water Purification | 2005 |
Phyto-availability and speciation change of heavy metals in soils amended with lignin as micro-fertilizer.
Topics: Biomass; Cadmium; Chromium; Copper; Fertilizers; Hydrogen-Ion Concentration; Lead; Lignin; Metals, Heavy; Nickel; Plant Shoots; Soil; Time Factors; Triticum; Zinc | 2005 |
Single, binary and multi-component adsorption of copper and cadmium from aqueous solutions on Kraft lignin--a biosorbent.
Topics: Adsorption; Cadmium; Copper; Diffusion; Kinetics; Lignin; Solutions; Thermodynamics; Water Pollutants, Chemical; Water Purification | 2006 |
Nanostructured films employed as sensing units in an "electronic tongue" system.
Topics: Biosensing Techniques; Cadmium; Chlorine; Copper; Electric Impedance; Electrochemistry; Electrodes; Electronics; Fluorine; Gold; Ions; Lead; Lignin; Membranes, Artificial; Models, Chemical; Nanostructures; Perylene; Polymers; Pyrroles; Solutions; Spectrophotometry, Ultraviolet; Spectroscopy, Fourier Transform Infrared; Water | 2007 |
Dynamics of phenolic acids and lignin accumulation in metal-treated Matricaria chamomilla roots.
Topics: Biomass; Cadmium; Copper; Hydroxybenzoates; Lignin; Matricaria; Oxidative Stress; Phenylalanine Ammonia-Lyase; Plant Proteins; Plant Roots; Water | 2008 |
Expression differences for genes involved in lignin, glutathione and sulphate metabolism in response to cadmium in Arabidopsis thaliana and the related Zn/Cd-hyperaccumulator Thlaspi caerulescens.
Topics: Arabidopsis; Cadmium; Gene Expression Profiling; Gene Expression Regulation, Plant; Genes, Plant; Glutathione; Iron; Lignin; Nickel; Plant Proteins; Reverse Transcriptase Polymerase Chain Reaction; Sulfates; Thlaspi; Transcription, Genetic; Zinc | 2008 |
Copper and cadmium sorption onto kraft and organosolv lignins.
Topics: Adsorption; Cadmium; Copper; Hydrogen-Ion Concentration; Kinetics; Lignin; Particle Size; Static Electricity; Surface Properties; Temperature | 2009 |
Adsorption characteristics of cadmium(II) onto functionalized poly(hydroxyethylmethacrylate)-grafted coconut coir pith.
Topics: Adsorption; Cadmium; Cations, Divalent; Cocos; Hydrogen-Ion Concentration; India; Kinetics; Lignin; Methacrylates; Solvents; Spectroscopy, Fourier Transform Infrared; Water Pollutants, Chemical; Water Purification | 2010 |
Significance of phenols in cadmium and nickel uptake.
Topics: Amino Acids; Cadmium; Flavonoids; Indans; Lignin; Matricaria; Nickel; Organophosphonates; Phenols; Phenylalanine Ammonia-Lyase; Plant Leaves; Plant Proteins; Plant Roots | 2011 |
Differential responses of microsomal proteins and metabolites in two contrasting cadmium (Cd)-accumulating soybean cultivars under Cd stress.
Topics: Cadmium; Chelating Agents; Glycine max; Lignin; Microsomes; Plant Components, Aerial; Plant Proteins; Plant Roots; Proteomics; Stress, Physiological; Xylem | 2012 |
Activation of phenylpropanoid pathway in legume plants exposed to heavy metals. Part II. Profiling of isoflavonoids and their glycoconjugates induced in roots of lupine (Lupinus luteus) seedlings treated with cadmium and lead.
Topics: Cadmium; Glucosides; Isoflavones; Lead; Lignin; Lupinus; Metabolic Networks and Pathways; Plant Roots; Seedlings; Stress, Physiological | 2011 |
Activation of phenylpropanoid pathway in legume plants exposed to heavy metals. Part I. Effects of cadmium and lead on phenylalanine ammonia-lyase gene expression, enzyme activity and lignin content.
Topics: Cadmium; Enzyme Assays; Gene Expression Regulation, Plant; Glycine max; Lead; Lignin; Lupinus; Metabolic Networks and Pathways; Phenylalanine Ammonia-Lyase; Plant Proteins; Seedlings; Transcription, Genetic | 2011 |
Cadmium interferes with auxin physiology and lignification in poplar.
Topics: Cadmium; Indoleacetic Acids; Lignin; Oxidative Stress; Plant Leaves; Plant Roots; Plant Stems; Populus | 2012 |
Modified kraft lignin for bioremediation applications.
Topics: Atrazine; Biodegradation, Environmental; Cadmium; Eucalyptus; Lignin; Mercury; Molecular Weight; Oxidation-Reduction; Tungsten Compounds | 2012 |
Adsorption of heavy metals by a porous bioadsorbent from lignocellulosic biomass reconstructed in an ionic liquid.
Topics: Adsorption; Cadmium; Environmental Restoration and Remediation; Ionic Liquids; Kinetics; Lignin; Microscopy, Electron, Scanning; Palladium; Porosity; Water Pollutants, Chemical | 2012 |
Lignite reduces the solubility and plant uptake of cadmium in pasturelands.
Topics: Cadmium; Fertilizers; Lignin; Plants; Solubility | 2013 |
Physiological and proteomic changes suggest an important role of cell walls in the high tolerance to metals of Elodea nuttallii.
Topics: Antioxidants; Biodegradation, Environmental; Buthionine Sulfoximine; Cadmium; Cadmium Chloride; Cell Wall; Electrophoresis, Gel, Two-Dimensional; Gels; Hydrocharitaceae; Kinetics; Lignin; Mercuric Chloride; Mercury; Metals; Peroxidase; Photosynthesis; Phytochelatins; Plant Proteins; Plant Roots; Plant Shoots; Proteomics; Soil Pollutants; Superoxide Dismutase | 2013 |
HMA4 expression in tobacco reduces Cd accumulation due to the induction of the apoplastic barrier.
Topics: Adenosine Triphosphatases; Arabidopsis; Arabidopsis Proteins; Biological Transport; Cadmium; Cell Wall; Down-Regulation; Gene Expression; Gene Expression Regulation, Plant; Hydrogen Peroxide; Iron; Lignin; Nicotiana; Phenotype; Plant Proteins; Plant Roots; Plant Shoots; Plants, Genetically Modified; Transgenes; Zinc | 2014 |
Modification of chitin with kraft lignin and development of new biosorbents for removal of cadmium(II) and nickel(II) ions.
Topics: Adsorption; Cadmium; Chitin; Hydrogen Bonding; Ions; Lignin; Nickel; Water Pollutants, Chemical; Water Purification | 2014 |
Growth, metabolism of Phanerochaete chrysosporium and route of lignin degradation in response to cadmium stress in solid-state fermentation.
Topics: Biomass; Cadmium; Fermentation; Hydrogen Peroxide; Lignin; Oryza; Peroxidases; Phanerochaete; Stress, Physiological | 2015 |
Cd-induced oxidative stress and lignification in the roots of two Vicia sativa L. varieties with different Cd tolerances.
Topics: Cadmium; Drug Tolerance; Hydrogen Peroxide; Laccase; Lignin; Oxidative Stress; Peroxidase; Plant Roots; Plant Shoots; Superoxides; Vicia sativa | 2016 |
Characterization of early transcriptional responses to cadmium in the root and leaf of Cd-resistant Salix matsudana Koidz.
Topics: Brassinosteroids; Cadmium; Environmental Pollutants; Gene Expression Regulation, Plant; Lignin; Plant Leaves; Plant Roots; Salix | 2015 |
Recycling agriculture wastes of ramie stalk as bioadsorbents for Cd(2+) removal: a kinetic and thermodynamic study.
Topics: Adsorption; Agriculture; Boehmeria; Cadmium; Cellulose; Kinetics; Lignin; Recycling; Thermodynamics; Water Pollutants, Chemical | 2016 |
The Fungus Tremella mesenterica Encodes the Longest Metallothionein Currently Known: Gene, Protein and Metal Binding Characterization.
Topics: Amino Acid Sequence; Basidiomycota; Cadmium; Circular Dichroism; Copper; Lignin; Metabolic Networks and Pathways; Metallothionein; Protein Binding; Spectrometry, Mass, Electrospray Ionization; Zinc | 2016 |
A novel modification of lignin on corncob-based biochar to enhance removal of cadmium from water.
Topics: Adsorption; Cadmium; Charcoal; Lignin; Water | 2018 |
High performance of 3D porous graphene/lignin/sodium alginate composite for adsorption of Cd(II) and Pb(II).
Topics: Adsorption; Alginates; Cadmium; Graphite; Green Chemistry Technology; Lead; Lignin; Nanocomposites; Polymerization; Porosity; Waste Disposal, Fluid; Water Pollutants, Chemical | 2018 |
Miscanthus accessions distinctively accumulate cadmium for largely enhanced biomass enzymatic saccharification by increasing hemicellulose and pectin and reducing cellulose CrI and DP.
Topics: Biomass; Cadmium; Cellulose; Hydrolysis; Lignin; Pectins; Polysaccharides | 2018 |
Maize shoot cell walls under cadmium stress.
Topics: Cadmium; Cell Wall; Lignin; Photosynthesis; Plant Roots; Plant Shoots; Polysaccharides; Zea mays | 2018 |
Selenium reduces cadmium uptake into rice suspension cells by regulating the expression of lignin synthesis and cadmium-related genes.
Topics: Biological Transport; Cadmium; Lignin; Oryza; Selenium; Soil Pollutants | 2018 |
Enhanced adsorption performance of oxidised coconut coir for removal of Cd(II) ions by multi-column arrangement in series.
Topics: Adsorption; Cadmium; Cocos; Hydrogen-Ion Concentration; Ions; Kinetics; Lignin; Models, Chemical; Oxidation-Reduction; Water Pollutants, Chemical | 2019 |
Effect of Zn Addition on the Cd-Containing Anaerobic Fermentation Process: Biodegradation and Microbial Communities.
Topics: Anaerobiosis; Biodegradation, Environmental; Biofuels; Biomass; Cadmium; Fermentation; Lignin; Microbiota; Refuse Disposal; Zinc | 2019 |
Post-treatment of paint industry effluents by filtration using Andropogon biochar (Andropogon gayanus Kunth cv. Planaltina).
Topics: Adsorption; Andropogon; Biomass; Cadmium; Charcoal; Chromium; Filtration; Lignin; Paint; Poaceae; Waste Disposal, Fluid | 2019 |
A mechanism for efficient cadmium phytoremediation and high bioethanol production by combined mild chemical pretreatments with desirable rapeseed stalks.
Topics: Biodegradation, Environmental; Biomass; Brassica napus; Brassica rapa; Cadmium; Hydrolysis; Lignin | 2020 |
Lignin side chain region participates in Cd detoxification related to the cultivar-dependent Cd accumulation in Brassica chinensis L.
Topics: Bioaccumulation; Brassica; Cadmium; Cell Wall; Gene Expression Regulation, Plant; Lignin; Plant Roots; Plant Shoots; Soil Pollutants | 2020 |
Elemental Content in
Topics: Agaricales; Cadmium; Copper; Diet; Hydrogen-Ion Concentration; Lignin; Magnesium; Mass Spectrometry; Metals; Phosphorus; Pleurotus; Potassium; Principal Component Analysis; Risk Factors; Sodium; Soil; Trace Elements; Zinc | 2020 |
Nano-FeS incorporated into stable lignin hydrogel: A novel strategy for cadmium removal from soil.
Topics: Cadmium; Ferrous Compounds; Hydrogels; Lignin; Soil; Soil Pollutants | 2020 |
Effect of alkaline lignin on immobilization of cadmium and lead in soils and the associated mechanisms.
Topics: Cadmium; Lead; Lignin; Soil; Soil Pollutants | 2021 |
Removal of cadmium and tetracycline by lignin hydrogels loaded with nano-FeS: Nanoparticle size control and content calculation.
Topics: Cadmium; Ferrous Compounds; Hydrogels; Lignin; Nanoparticles; Tetracycline | 2021 |
Cd and Pb immobilisation with iron oxide/lignin composite and the bacterial community response in soil.
Topics: Bacteria; Cadmium; Ferric Compounds; Lead; Lignin; Soil; Soil Pollutants | 2022 |
Nanoselenium transformation and inhibition of cadmium accumulation by regulating the lignin biosynthetic pathway and plant hormone signal transduction in pepper plants.
Topics: Biosynthetic Pathways; Cadmium; Capsicum; Lignin; Metal Nanoparticles; Plant Growth Regulators; Selenium; Signal Transduction; Stress, Physiological; Transcriptome | 2021 |
Computational study of the interaction of heavy metal ions, Cd(II), Hg(II), and Pb(II) on lignin matrices.
Topics: Adsorption; Cadmium; Ions; Kinetics; Lead; Lignin; Mercury; Metals, Heavy | 2022 |
Cd diminution through microbial mediated degraded lignocellulose maize straw: Batch adsorption and bioavailability trails.
Topics: Adsorption; Biological Availability; Cadmium; Lignin; Soil Pollutants; Zea mays | 2022 |
Effect of Cd on Pyrolysis Velocity and Deoxygenation Characteristics of Rice Straw: Analogized with Cd-Impregnated Representative Biomass Components.
Topics: Biomass; Cadmium; Cellulose; Charcoal; Lignin; Oryza; Oxygen; Pyrolysis | 2022 |
Alkaline lignin does not immobilize cadmium in soils but decreases cadmium accumulation in the edible part of lettuce (Lactuca sativa L.).
Topics: Cadmium; Lactuca; Lead; Lignin; Metals, Heavy; Soil; Soil Pollutants | 2022 |
Remediation of cadmium and lead contaminated soils using Fe-OM based materials.
Topics: Acid Rain; Cadmium; Environmental Restoration and Remediation; Ferric Compounds; Iron; Iron Compounds; Lead; Lignin; Metals, Heavy; Minerals; Oxides; Soil; Soil Pollutants | 2022 |
An unexpected discovery toward argon-rich water amelioration of cadmium toxicity in Medicago sativa L.
Topics: Adenosine Triphosphatases; Argon; Cadmium; Glutathione; Lignin; Medicago sativa; Pectins; Plant Roots; Seedlings; Soil; Soil Pollutants; Water | 2022 |
Molecular insights into lignin biosynthesis on cadmium tolerance: Morphology, transcriptome and proteome profiling in Salix matsudana.
Topics: Cadmium; Lignin; Plant Roots; Proteome; Salix; Soil; Soil Pollutants; Transcriptome | 2023 |
Grafting with an invasive Xanthium strumarium improves tolerance and phytoremediation of native congener X. sibiricum to cadmium/copper/nickel tailings.
Topics: Biodegradation, Environmental; Cadmium; Calcium-Binding Proteins; Cellulases; Copper; Glucosinolates; Ion Channels; Lignin; Metals, Heavy; Nickel; Nucleotides, Cyclic; Phenylalanine Ammonia-Lyase; Plants; Soil Pollutants; Transcription Factors; Xanthium | 2022 |
Auxin alleviates cadmium toxicity by increasing vacuolar compartmentalization and decreasing long-distance translocation of cadmium in Poa pratensis.
Topics: Cadmium; Indoleacetic Acids; Lignin; Plant Roots; Poa; Soil; Vacuoles | 2023 |
Selenite reduced uptake/translocation of cadmium via regulation of assembles and interactions of pectins, hemicelluloses, lignins, callose and Casparian strips in rice roots.
Topics: Cadmium; Cell Wall; Lignin; Oryza; Pectins; Plant Roots; Selenious Acid; Selenium; Soil Pollutants | 2023 |
Multiple insights into lignin-mediated cadmium detoxification in rice (Oryza sativa).
Topics: Antioxidants; Cadmium; Glutathione; Humans; Hydrogen Peroxide; Lignin; Oryza; Soil Pollutants | 2023 |
An arbuscular mycorrhizal fungus differentially regulates root traits and cadmium uptake in two maize varieties.
Topics: Abscisic Acid; Cadmium; Lignin; Minerals; Mycorrhizae; Plant Growth Regulators; Plant Roots; Soil; Soil Pollutants; Zea mays | 2023 |