SMART biochar technology—A shifting paradigm towards advanced materials and healthcare research
Tài liệu tham khảo
Abdel-Wahhab, 2015, Effectiveness of activated carbon and Egyptian montmorillonite in the protection against deoxynivalenol-induced cytotoxicity and genotoxicity in rats, Food Chem. Toxicol., 83, 174, 10.1016/j.fct.2015.06.015
Ahmad, 2014, Biochar as a sorbent for contaminant management in soil and water: A review, Chemosphere, 99, 19, 10.1016/j.chemosphere.2013.10.071
Anjum, 2014, Assessment of mutagenic potential of pyrolysis biochars by Ames Salmonella/mammalian-microsomal mutagenicity test, Ecotoxicol. Environ. Safety, 107, 306, 10.1016/j.ecoenv.2014.06.005
Azargohar, 2006, Biochar as a precursor of activated carbon, Appl. Biochem. Biotechnol., 131, 762, 10.1385/ABAB:131:1:762
Azkunaga, 2011, Toxicology surveillance system of the Spanish society of paediatric emergencies: first-year analysis, Eur. J. Emerg. Med., 18, 285, 10.1097/MEJ.0b013e3283462504
Beesley, 2010, Effects of biochar and greenwaste compost amendments on mobility, bioavailability and toxicity of inorganic and organic contaminants in a multi-element polluted soil, Environ. Pollut., 158, 2282, 10.1016/j.envpol.2010.02.003
Bielicka, 2013, Carbon materials as new nanovehicles in hot-melt drug deposition, J. Phys.-Condens. Matter, 25, 10.1088/0953-8984/25/35/355002
Bond, 2002, The role of activated charcoal and gastric emptying in gastrointestinal decontamination: A state-of-the-art review, Ann. Emerg. Med., 39, 273, 10.1067/mem.2002.122058
Busch, 2013, Genotoxic and phytotoxic risk assessment of fresh and treated hydrochar from hydrothermal carbonization compared to biochar from pyrolysis, Ecotoxicol. Environ. Safety, 97, 59, 10.1016/j.ecoenv.2013.07.003
Chan, 2007, Agronomic values of greenwaste biochar as a soil amendment, Aust. J. Soil Res., 45, 629, 10.1071/SR07109
Chen, 2012, Activated charcoal composite biomaterial promotes human embryonic stem cell differentiation toward neuronal lineage, J. Biomed. Mater. Res. Part A, 100, 2006, 10.1002/jbm.a.34201
de Gunzburg, 2015, Targeted adsorption of molecules in the colon with the novel adsorbent-based medicinal product, DAV132: A proof of concept study in healthy subjects, J. Clin. Pharmacol., 55, 10, 10.1002/jcph.359
Field, 2013, Distributed biochar and bioenergy coproduction: a regionally specific case study of environmental benefits and economic impacts, GCB Bioenergy, 5, 177, 10.1111/gcbb.12032
Frazier, 2015, Life cycle assessment of biochar versus metal catalysts used in syngas cleaning, Energies, 8, 621, 10.3390/en8010621
Gaunt, 2008, Energy balance and emissions associated with biochar sequestration and pyrolysis bioenergy production, Environ. Sci. Technol., 42, 4152, 10.1021/es071361i
Glaser, 2009, Biochar is carbon negative, Nat. Geosci., 2, 2, 10.1038/ngeo395
Gupta, 2015, Biochar activated by oxygen plasma for supercapators, J. Power Sources, 274, 1300, 10.1016/j.jpowsour.2014.10.169
IBI. 2014. 2013 State of the Bbiochar Industry: A Survey of Commercial Activity in the Biochar Field. International Biochar Initiative. p. 1–61. http://www.biochar-international.org/sites/default/files/State_of_the_Biochar_Industry_2013.pdf (accessed on 03.08.15).
Jiang, 2013, Highly ordered macroporous woody biochar with ultra-high carbon content as supercapacitor electrodes, Electrochim. Acta., 113, 481, 10.1016/j.electacta.2013.09.121
Keiluweit, 2010, Dynamic molecular structure of plant biomass-derived black carbon (Biochar), Environ. Sci. Technol., 44, 1247, 10.1021/es9031419
Khan, 2014, Application of biochar to soil reduces cancer risk via rice consumption: A case study in Miaoqian village, Longyan, China, Environ. Int., 68, 154, 10.1016/j.envint.2014.03.017
Lehmann, 2007, A handful of carbon, Nature, 447, 143, 10.1038/447143a
Liu, 2012, Porous wood carbon monolith for high-performance supercapacitors, Electrochim. Acta., 60, 443, 10.1016/j.electacta.2011.11.100
Manya, 2012, Pyrolysis for biochar purposes: a review to establish current knowledge gaps and research needs, Environ. Sci. Technol., 46, 7939, 10.1021/es301029g
Mohan, 2014, Organic and inorganic contaminants removal from water with biochar, a renewable, low cost and sustainable adsorbent: A critical review, Bioresour. Technol., 160, 191, 10.1016/j.biortech.2014.01.120
Novak, 2014, Designing relevant biochars as soil amendments using lignocellulosic-based and manure-based feedstocks, J. Soils Sediments, 14, 330, 10.1007/s11368-013-0680-8
Novak, 2009, Characterization of designer biochar produced at different temperatures and their effects on a loamy sand, Ann. Environ. Sci., 3, 195
Novak, 2015, Biochars multifunctional role as a novel technology in the agricultural, environmental, and industrial sector, Chemosphere
Qian, 2015, Recent advances in utilization of biochar, Renew. Sustainable Energy Rev., 42, 1055, 10.1016/j.rser.2014.10.074
Roca, 2014, Assessment of quality indicators in pediatric poisoning in an emergency service, An. Pediatr., 80, 34
Shackley, 2013, Biochar, tool for climate change mitigation and soil management, 73
Sohi, 2012, Carbon storage with benefits, Science, 338, 1034, 10.1126/science.1225987
Spokas, 2009, Impacts of sixteen different biochars on soil greenhouse gas production, Ann. Environ. Sci., 3, 179
Suguihiro, 2013, An electroanalytical approach for evaluation of biochar adsorption characteristics and its application for lead and cadmium determination, Bioresour. Technol., 143, 40, 10.1016/j.biortech.2013.05.107
Thomazini, 2015, GHG impacts of biochar: Predictability for the same biochar, Agricult. Ecosys. Environ., 207, 183, 10.1016/j.agee.2015.04.012
Wall, 2009, Variability in the quality of overdose advice in Summary of Product Characteristics (SPC) documents: gut decontamination recommendations for CNS drugs, Br. J. Clin. Pharmacol., 67, 83, 10.1111/j.1365-2125.2008.03322.x
Wang, 2013, Supercapacitors based on carbons with tuned porosity derived from paper pulp mill sludge biowaste, Carbon, 57, 317, 10.1016/j.carbon.2013.01.079
Woolf, 2010, Sustainable biochar to mitigate global climate change, Nat. Commun., 1, 56, 10.1038/ncomms1053
Wu, 2013, Contrasting effects of wheat straw and its biochar on greenhouse gas emissions and enzyme activities in a Chernozemic soil, Biol. Fertil. Soils, 49, 555, 10.1007/s00374-012-0745-7
Yao, 2013, Engineered carbon (biochar) prepared by direct pyrolysis of Mg-accumulated tomato tissues: characterization and phosphate removal potential, Bioresour. Technol., 138, 8, 10.1016/j.biortech.2013.03.057
Zhang, 2013, Graphene-coated pyrogenic carbon as an anode material for lithium battery, Chem. Eng. J., 229, 399, 10.1016/j.cej.2013.06.025
Zhang, 2012, Synthesis, characterization, and environmental implications of graphene-coated biochar, Sci. Total Environ., 435–436, 567, 10.1016/j.scitotenv.2012.07.038
Zhang, 2014, Biochar soil amendment for sustainable agriculture with carbon and contaminant sequestration, Carbon Manag., 5, 255, 10.1080/17583004.2014.973684
Zheng, 2015, Mitigating heavy metal accumulation into rice (Oryza sativa L.) using biochar amendment—a field experiment in Hunan, China Environ. Sci. Pollut. Res., 22, 11097, 10.1007/s11356-015-4268-2