Academic literature on the topic 'Biochar and activated carbon'

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Journal articles on the topic "Biochar and activated carbon"

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Shanmugam, Saravanan Ramiah, Sushil Adhikari, Hyungseok Nam, and Vivek Patil. "Adsorption and Desorption Behavior of Herbicide Using Bio-Based Materials." Transactions of the ASABE 62, no. 6 (2019): 1435–45. http://dx.doi.org/10.13031/trans.13255.

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HighlightsGlyphosate sorption using bio-based adsorbents was investigated in this study.Biochars showed poor sorption of glyphosate in comparison to the activated carbons.Total pore volume of bio-based adsorbents played a key role in sorption of glyphosate.Abstract. This study examined the glyphosate sorption ability of different bio-based materials, including biochars and activated carbons synthesized from Douglas fir, kraft lignin, and mixed wood pellets. All the biochars showed poor sorption of glyphosate in comparison to the activated carbons derived from biochars and the commercial powder
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Abioye, A. M., and Farid Nasir Ani. "The Characteristics of Oil Palm Shell Biochar and Activated Carbon Produced via Microwave Heating." Applied Mechanics and Materials 695 (November 2014): 12–15. http://dx.doi.org/10.4028/www.scientific.net/amm.695.12.

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Biochar was produced from oil palm shell via microwave-induced pyrolysis. The biochar was subsequently activated via microwave assisted CO2 activation. A simple single layer arrangement of the microwave absorber (coconut shell based activated carbon) and oil palm shell in the reactor was adopted during pyrolysis. In recent times, the treatment of oil palm biomass using microwave heating technology has been on the increase. Value added products such as bio-oil, gas, biochar and activated carbon are being produced while at the same time serving as waste management control. Biochar is seen as a p
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Sang, Min, Miansong Huang, Wei Zhang, Wu Che, and Huichao Sun. "A pilot bioretention system with commercial activated carbon and river sediment-derived biochar for enhanced nutrient removal from stormwater." Water Science and Technology 80, no. 4 (2019): 707–16. http://dx.doi.org/10.2166/wst.2019.310.

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Abstract Bioretention is an effective technology for urban stormwater management, but the nutrient removal in conventional bioretention systems is highly variable. Thus, a pilot bioretention column experiment was performed to evaluate the nutrient control of systems with commercial activated carbon and river sediment-derived biochar. Significant chemical oxygen demand (COD) and total phosphorus (TP) leaching were found with the addition of activated carbon and biochar, but total nitrogen (TN) leaching was significantly improved when activated carbon was used as the medium. During a semi-synthe
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Adhikari, Sushil, and Sourov K. Sajib. "Effect of Pyrolysis Method on Physical Properties of Activated Biochar and its Application as Cathode Material for Lithium-Sulfur Battery." Transactions of the ASABE 63, no. 2 (2020): 485–93. http://dx.doi.org/10.13031/trans.13793.

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HighlightsActivated biochar was derived from canola meal and Douglas fir.Canola meal biochar with 66.2% sulfur exhibited capacity of 1222 mAh g-1.Fast pyrolysis resulted in higher surface area and better Li-S battery performance.Abstract. The influence of preparation method on the specific surface area, total pore volume, and pore size distribution of activated biochar derived from canola meal and Douglas fir was investigated for its use as cathode material for a lithium-sulfur (Li-S) battery. The specific surface area and total pore volume of fast pyrolysis derived activated biochars from Dou
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Catizzone, Enrico, Corradino Sposato, Assunta Romanelli, et al. "Purification of Wastewater from Biomass-Derived Syngas Scrubber Using Biochar and Activated Carbons." International Journal of Environmental Research and Public Health 18, no. 8 (2021): 4247. http://dx.doi.org/10.3390/ijerph18084247.

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Phenol is a major component in the scrubber wastewater used for syngas purification in biomass-based gasification plants. Adsorption is a common strategy for wastewater purification, and carbon materials, such as activated carbons and biochar, may be used for its remediation. In this work, we compare the adsorption behavior towards phenol of two biochar samples, produced by pyrolysis and gasification of lignocellulose biomass, with two commercial activated carbons. Obtained data were also used to assess the effect of textural properties (i.e., surface area) on phenol removal. Continuous tests
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Iyiola, Iqmat, Deepak Pudasainee, Monir Khan, and Rajender Gupta. "Production of Biochar from Biomass." Alberta Academic Review 2, no. 2 (2019): 43–44. http://dx.doi.org/10.29173/aar50.

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Biochar is a kind of charcoal that’s produced from biomass using pyrolysis technology. As climate change continues to be a growing concern, biochar has been sought for its environmental applications. It is both cost effective and environmentally sound in terms of being a soil additive and renewable fuel. When used as a soil amendment, biochar has been shown to improve water holding capacity and absorb more nutrients. Biochar also sequesters carbon dioxide when applied to soil, and can also be used as a replacement for activated carbon that is prepared from coal. The objectives of this research
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Nasir, Mohammad Ibrahim Nasir, Md Zakir Hossain Hossain, and P. A. Charpentier Charprntier. "Synthesis and Characterization of Date Palm Fiber-Based Bio-Char and Activated Carbon and its Utilization for Environmental Remediation." Journal of Petroleum Research and Studies 8, no. 2 (2021): 209–22. http://dx.doi.org/10.52716/jprs.v8i2.245.

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Natural agricultural products have the potential to be a substitute for synthetic polymers absorbentsin environmental remediation and spill cleanup and recovery. One of these natural by-productswhich is available in many regions of the world is Date Palm Fibers (DPF). DPF (also known assurface fibers) is a natural sorbent that exhibits good sorption characteristics. In an attempt tovalorize this abundant, low cost byproduct, we have investigated the micro porosity of this rawmaterial by carrying out two procedures. First, hydrothermal pyrolysis using a scalable reactor withonly water as solven
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R., Azargohar, and Dalai A. K. "Biochar As a Precursor of Activated Carbon." Applied Biochemistry and Biotechnology 131, no. 1-3 (2006): 762–73. http://dx.doi.org/10.1385/abab:131:1:762.

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Azargohar, R., and A. K. Dalai. "Biochar as a precursor of activated carbon." Applied Biochemistry and Biotechnology 131, no. 1-3 (1996): 762–73. http://dx.doi.org/10.1007/bf02685957.

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Ohra-aho, Taina, Christian Lindfors, Juha Lehtonen, Tarja Tamminen, and Virpi Siipola. "Activated Carbons from Fast Pyrolysis Biochar as Novel Catalysts for the Post-Treatment of Pyrolysis Vapors, Studied by Analytical Pyrolysis." C 6, no. 4 (2020): 65. http://dx.doi.org/10.3390/c6040065.

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Biochars are attractive materials for carbon catalysts since their carbon content and surface area are relatively high and minerals present in biochar can act as active sites for catalytic reactions. In this study, biochars from the fast pyrolysis of birch, pine, and unbarked willow were activated and acid washed. These materials were tested as catalysts for a post-treatment of pine wood pyrolysis vapors, aiming at stabilizing the vapors before their condensation. All the unmodified biochars had high content of minerals, those being highest in willow due to the bark. After the activation treat
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Dissertations / Theses on the topic "Biochar and activated carbon"

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Bapat, Harshavardhan D. "Biochar, a novel low ash matrix for the chemchar gasification /." free to MU campus, to others for purchase, 1999. http://wwwlib.umi.com/cr/mo/fullcit?p9946241.

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Carlini, Carlotta. "Biochar as a filter material: feasibility studies and business development." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2019. http://amslaurea.unibo.it/19221/.

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The goal of the thesis is to evaluate the performance of the biochar produced by a novel pyrolysis-with-post-reforming technique (TCR), as a filtering material for wastewater, and to make a comparison with other filter materials currently on the market. Caviro winery was chosen as a case study, providing two samples of wastewater produced in their plants. Vineyard pruning was used as the feedstock for the production of biochar. Two different types of biochar were produced, which differ in the temperature at which the post-reformer was set during production (500°C and 700°C). For the two bioch
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Bushnaf, Khaled Mohamed Mossa. "The effects of biochar or activated carbon amendments on the fate of volatile petroleum hydrocarbons in an aerobic sandy soil." Thesis, University of Newcastle upon Tyne, 2013. http://hdl.handle.net/10443/2276.

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The impact of biochar or activated carbon (AC) amendments on the biodegradation of a mixture of 12 volatile petroleum hydrocarbons ( VP Hs) in an aerobic sandy soil was investigated in batch microcosms and column experiments. The impacts of biochar amendments on nutrient availability and biogenic gases activity were also studied by batch microcosms. The maximum nutrient amount adsorbed by biochar (9 max) was very high. Therefore, biochar amendments decreased the readily available nitrogen with increasing biochar application rate and contact period. Biogenic gas activities in biochar amended so
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Sani, Badruddeen Saulawa. "Modelling of pollutant adsorption by activated carbon and biochar with and without magnetite impregnation for the treatment of refinery and other wastewaters." Thesis, University of Newcastle upon Tyne, 2017. http://hdl.handle.net/10443/3595.

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This study evaluated the application of magnetised powdered activated carbons and biochars, in the removal of typical pollutants encountered in refinery and other wastewaters. Phenol, pharmaceuticals and heavy metals were chosen as representatives of priority pollutants, organic micropollutants and metals. In the sorption of the organics, there existed a strong correlation (Pearson correlation R up to 0.9990) between isotherm models’ capacity parameters and sorbents’ capacity influencing properties. In the case of the metals, the sorbents’ capacities are not dependent upon surface area and mic
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Mangse, George. "Investigating the effects of biochar and activated carbon amendment on the microbial community response in a volatile petroleum hydrocarbon-contaminated gravelly sand." Thesis, University of Newcastle upon Tyne, 2016. http://hdl.handle.net/10443/3147.

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Laboratory batch and long-term column experiments were conducted to investigate the effects of wood-chip biochar and coal-derived activated carbon amendment on the microbiology of a volatile petroleum hydrocarbon (VPH) - contaminated gravelly sand. First, a stable isotope-labelled mono aromatic compound – toluene was used as a model VPH to gain insights into the mineralization of VPHs by soil microorganisms in the presence and absence of biochar or activated carbon. The biodegradation of a mixture of 12 VPHs was subsequently monitored in batch microcosms over a duration of 6-19 days by measuri
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Kocinger, Oskar. "Studium sorpčních vlastností biouhlí." Master's thesis, Vysoké učení technické v Brně. Fakulta chemická, 2020. http://www.nusl.cz/ntk/nusl-433224.

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This diploma thesis deals with sorption properties of biochar produced from wood biomass treated with concentrated hydrochloric acid and activated carbon with respect to the triazine pesticide propazine. Although pesticides are widely used in both agriculture and the private sector worldwide, they pose a significant risk to ecosystems and human health. Propazine belongs to the group of chlorinated triazine herbicides, which pose a risk mainly as endocrine disruptors. The sorption of organic pollutants using pyrogenic carbonaceous materials promises an efficient and economically affordable solu
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Giberti, Sara. "Surface Area enhancement of biochar and forestry biomass through activation by means of chemical impregnation with ZnCl2 and H3PO4." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2021.

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This dissertation is dedicated to the research of methods for the production of activated carbon by means of chemical impregnation from renewable resources such as waste biochar and forestry biomass. The goal of the research is to find a method that generates high performances activated carbon which can be scaled up and added to the supply chain of an already existing gasification concept located in Innsbruck, Austria. Biochar has been impregnated with ZnCl2 in ratios of 1:1 and 5:1 and activated in a mixed bed reactor in presence of H2O steam in a temperatures range of 500 and 700 °C for 3
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Lammirato, Carlo [Verfasser], Matthias Akademischer Betreuer] Kästner та Ingrid [Akademischer Betreuer] [Kögel-Knabner. "Hydrolysis of cellobiose by β-glucosidase from Aspergillus niger in the presence of soil solid phases : minerals, biochar, and activated carbon / Carlo Lammirato. Gutachter: Ingrid Kögel-Knabner. Betreuer: Matthias Kästner". München : Universitätsbibliothek der TU München, 2011. http://d-nb.info/1020057122/34.

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Kašparová, Jarmila. "Využití biouhlí jako sorpčního materiálu pro odstranění syntetických vonných látek z vod." Master's thesis, Vysoké učení technické v Brně. Fakulta chemická, 2020. http://www.nusl.cz/ntk/nusl-433203.

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Synthetic fragrances (musk) are artificially produced organic compounds. It is used as fragrance ingredient in personal care products. Substances from this group have the ability to withstand the cleaning process in wastewater treatment plants. The physico-chemical properties of musk compounds cause their accumulation in the living and non-living components of the ecosystem, where they behave as persistent pollutants. The adsorption process is considered to be one of the most widely used separation and purification processes. The adsorption processes of a solution of sixteen synthetic fragranc
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Aguilar, Gallardo Orlando Alexis. "Measurement and control of greenhouse gas emissions from beef cattle feedlots." Diss., Kansas State University, 2012. http://hdl.handle.net/2097/15167.

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Doctor of Philosophy<br>Department of Biological and Agricultural Engineering<br>Ronaldo Maghirang<br>Emission of greenhouse gases (GHGs), including nitrous oxide (N2O), methane (CH4), and carbon dioxide (CO2), from open beef cattle feedlots is becoming an environmental concern; however, scientific information on emissions and abatement measures for feedlots is limited. This research was conducted to quantify GHG emissions from feedlots and evaluate abatement measures for mitigating emissions. Specific objectives were to: (1) measure N2O emissions from the pens in a commercial cattle feedlot;
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Books on the topic "Biochar and activated carbon"

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1941-, Rodríguez-Reinoso F., ed. Activated carbon. Elsevier, 2006.

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Groeber, Margaret M. Granular activated carbon treatment. U.S. Environmental Protection Agency, Office of Emergency and Remedial Response, 1991.

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1923-, Donnet Jean-Baptiste, and Stoeckli Fritz 1942-, eds. Active carbon. M. Dekker, 1988.

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1948-, Świątkowski Andrzej, Choma Jerzy 1952-, and Kemp T. J. 1938-, eds. Active carbon. E. Horwood, 1991.

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N, Cheremisinoff Paul, ed. Carbon adsorption for pollution control. PTR Prentice Hall, 1993.

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Jahangir, Mohammad Abdul Quadir. Bioregeneration of granular activated carbon. University of Birmingham, 1994.

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Tomlinson, John Brian. Studies of activated carbon fibres. Brunel University, 1992.

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Kwiatkowski, James F. Activated carbon: Classifications, properties and applications. Nova Science Publishers, 2011.

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Clark, Robert Maurice. Granular activated carbon: Design, operation, and cost. Lewis Publishers, 1989.

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Holmes, Richard James. Chemical modification of activated carbon adsorbents. Brunel University, 1986.

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Book chapters on the topic "Biochar and activated carbon"

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Dalai, Ajay K., and Ramin Azargohar. "Production of Activated Carbon from Biochar Using Chemical and Physical Activation: Mechanism and Modeling." In ACS Symposium Series. American Chemical Society, 2007. http://dx.doi.org/10.1021/bk-2007-0954.ch029.

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Hornung, Andreas, and Elisabeth Schröder. "Production of Biochar and Activated Carbon via Intermediate Pyrolysis - Recent Studies for Non-Woody Biomass." In Transformation of Biomass. John Wiley & Sons, Ltd, 2014. http://dx.doi.org/10.1002/9781118693643.ch17.

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Bhattacharya, Indrani, J. S. S. Yadav, T. T. More, et al. "Biochar." In Carbon Capture and Storage. American Society of Civil Engineers, 2015. http://dx.doi.org/10.1061/9780784413678.ch15.

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Lorenz, Klaus, and Rattan Lal. "Biochar." In Carbon Sequestration in Agricultural Ecosystems. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-92318-5_8.

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Gooch, Jan W. "Activated Carbon." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_218.

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Mašek, OndŘej. "Biochar and Carbon Sequestration." In Fire Phenomena and the Earth System. John Wiley & Sons, 2013. http://dx.doi.org/10.1002/9781118529539.ch16.

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Sjostrom, Sharon M. "Activated Carbon Injection." In Mercury Control. Wiley-VCH Verlag GmbH & Co. KGaA, 2014. http://dx.doi.org/10.1002/9783527658787.ch18.

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Aykut, Yakup, and Saad A. Khan. "Activated Carbon Nanofibers." In Carbon Nanomaterials Sourcebook. CRC Press, 2018. http://dx.doi.org/10.1201/9781315371337-12.

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Zhang, Zhian. "Activated Carbon Nanogels." In Carbon Nanomaterials Sourcebook. CRC Press, 2018. http://dx.doi.org/10.1201/9781315371337-8.

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Noroozi, Babak, and Moein Mehdipour. "Activated Carbon Nanoadsorbents." In Carbon Nanomaterials Sourcebook. CRC Press, 2018. http://dx.doi.org/10.1201/9781315371337-9.

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Conference papers on the topic "Biochar and activated carbon"

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Muñoz-Hernández, Andrés, Sina Dehghan, and Gerardo Diaz. "Physical (Steam) Activation of Post-Gasification Biochar Derived From Peach Pits." In ASME 2018 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/imece2018-88386.

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Activated carbon is one of the most effective materials for removing a wide range of contaminants from water, e.g., industrial and municipal wastewater. In this paper, physical (steam) activation of peach pit biochar obtained from a biomass gasification power plant is explored. Activation experiments were carried out at various temperatures, steam flow rates, and activation times. The initial biochar and activated biochar samples have been analyzed for porosity, chemical composition and surface morphology. From the porosity analyses it was determined that the raw biochar had a surface area in
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Sharma, Tejasvi, Yunye Shi, Guiyan Zang, and Albert Ratner. "Analysis and Comparison of Biochar From Pilot Scale Downdraft Gasifier." In ASME 2015 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/imece2015-52444.

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Gasification is incomplete combustion of solid fuel that results in the production of vapor, often referred to as syngas or producer gas, char, and tar. When this process is applied to biomass, the resulting char, referred to as biochar, is produced and has been shown to enhance soil fertility and crop growth. As part of a broader effort, this work examines how the gasification process impacts the biochar generated through downdraft gasification. In contrast to previous publications, which only focused on the syngas compositions, this research paper expands the analysis to the composition of t
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Dewi, Ratni, Harry Agusnar, Zul Alfian, and Tamrin. "Preparation and Characterization of Biochar from Palm Kernel Shells as an Activated Carbon Precursors with the Pyrolysis Method." In International Conference on Chemical Science and Technology Innovation. SCITEPRESS - Science and Technology Publications, 2019. http://dx.doi.org/10.5220/0008863101520155.

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Ribeiro, A., C. Vilarinho, J. Araújo, and J. Carvalho. "Integrated Process for Textile Cotton Waste (TCW) Valorization: Waste-to-Energy and Wastewater Decontamination." In ASME 2016 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/imece2016-66706.

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The increasing of world population, industrialization and global consuming, existing market products existed in the along with diversification of raw materials, are responsible for an exponential increase of wastes. This scenario represents loss of resources and ultimately causes air, soils and water pollution. Therefore, proper waste management is currently one of the major challenges faced by modern societies. Textile industries represents, in Portugal, almost 10% of total productive transforming sector and 19% of total employments in the sector composed by almost 7.000 companies. One of the
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"Global Potential for Carbon Sequestration via Biochar." In ASABE 1st Climate Change Symposium: Adaptation and Mitigation. American Society of Agricultural and Biological Engineers, 2015. http://dx.doi.org/10.13031/cc.20152139345.

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Junior, Elio Conradi, Affonso Celso Gonçalves Junior, Juliano Zimmermann, et al. "Renewable Eco-Friendly Activated Biochar from Tobacco: Chlorpyrifos Removal Studies." In The 7th World Congress on New Technologies. Avestia Publishing, 2021. http://dx.doi.org/10.11159/icepr21.111.

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BAE, SANG-DAE, and AKIYOSHI SAKODA. "ACTIVATED CARBON MEMBRANE WITH CARBON WHISKER." In Proceedings of the Third Pacific Basin Conference. WORLD SCIENTIFIC, 2003. http://dx.doi.org/10.1142/9789812704320_0017.

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Haffiz, Tuah Mohammad, Mohd Yassin Ahmad Izzuddin, Daruis Affidah, et al. "Biochar: A “green” carbon source for pressure sensors." In 2017 IEEE SENSORS. IEEE, 2017. http://dx.doi.org/10.1109/icsens.2017.8233940.

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Manocha, S., L. M. Manocha, Parth Joshi, Bhavesh Patel, Gaurav Dangi, and Narendra Verma. "Activated carbon from biomass." In CARBON MATERIALS 2012 (CCM12): Carbon Materials for Energy Harvesting, Environment, Nanoscience and Technology. AIP, 2013. http://dx.doi.org/10.1063/1.4810041.

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Zakari, Zubri, Surani Buniran, and Mohamad Izha Ishak. "Nanopores Activated Carbon Rice Husk." In 2010 International Conference on Enabling Science and Nanotechnology (ESciNano). IEEE, 2010. http://dx.doi.org/10.1109/escinano.2010.5701036.

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Reports on the topic "Biochar and activated carbon"

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Bergman, Richard, Hongmei Gu, Sevda Alanya-Rosenbaum, and Shaobo Liang. Comparative life-cycle assessment of biochar activated carbon and synthesis gas electricity with commercially available alternatives. U.S. Department of Agriculture, Forest Service, Forest Products Laboratory, 2019. http://dx.doi.org/10.2737/fpl-gtr-270.

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Ghosh, Upal, Jose Gomez-Eyles, Carmen Yupanqui, Huan Xia, and Barbara Beckingham. Activated Biochars with Iron for In-Situ Sequestration of Organics, Metals and Carbon. Defense Technical Information Center, 2012. http://dx.doi.org/10.21236/ada572774.

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Kennedy, Alan, Mark Ballentine, Andrew McQueen, Christopher Griggs, Arit Das, and Michael Bortner. Environmental applications of 3D printing polymer composites for dredging operations. Engineer Research and Development Center (U.S.), 2021. http://dx.doi.org/10.21079/11681/39341.

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This Dredging Operations Environmental Research (DOER) technical note disseminates novel methods to monitor and reduce contaminant mobility and bioavailability in water, sediments, and soils. These method advancements are enabled by additive manufacturing (i.e., three-dimensional [3D] printing) to deploy and retrieve materials that adsorb contaminants that are traditionally applied as unbound powders. Examples of sorbents added as amendments for remediation of contaminated sediments include activated carbon, biochar, biopolymers, zeolite, and sand caps. Figure 1 provides examples of sorbent an
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McLaughlin, H. Solvent-regenerated activated carbon. Office of Scientific and Technical Information (OSTI), 1988. http://dx.doi.org/10.2172/6294679.

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Kuriyama, K., and M. S. Dresselhaus. Photoconductivity of activated carbon fibers. Office of Scientific and Technical Information (OSTI), 1990. http://dx.doi.org/10.2172/6824682.

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Contescu, Cristian I., Frederick S. Baker, Costas Tsouris, and Joanna McFarlane. Activated Carbon Composites for Air Separation. Office of Scientific and Technical Information (OSTI), 2008. http://dx.doi.org/10.2172/969950.

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Baker, Frederick S., Cristian I. Contescu, Costas Tsouris, and Timothy D. Burchell. Activated Carbon Composites for Air Separation. Office of Scientific and Technical Information (OSTI), 2011. http://dx.doi.org/10.2172/1024217.

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Schwarz, J. A. Hydrogen storage on activated carbon. Final report. Office of Scientific and Technical Information (OSTI), 1994. http://dx.doi.org/10.2172/10108348.

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Edwin S. Olson and Daniel J. Stepan. ACTIVATED CARBON FROM LIGNITE FOR WATER TREATMENT. Office of Scientific and Technical Information (OSTI), 2000. http://dx.doi.org/10.2172/824974.

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di Vittorio, S. L., M. S. Dresselhaus, M. Endo, J.-P. Issi, and L. Piraux. The transport properties of activated carbon fibers. Office of Scientific and Technical Information (OSTI), 1990. http://dx.doi.org/10.2172/6882792.

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