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Results 1 to 25 of 105

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Beneficiation of coal fly ashes by oxygen chemisorptionSENNECA, Osvalda; SALATINO, Piero; SORRENTI, Rocco et al.Experimental thermal and fluid science. 2012, Vol 43, pp 76-81, issn 0894-1777, 6 p.Conference Paper

Prediction of Temperature of Critical Viscosity for Coal Ash SlagWENJIA SONG; YANHE DONG; YONGQIANG WU et al.AIChE journal. 2011, Vol 57, Num 10, pp 2921-2925, issn 0001-1541, 5 p.Article

Analysis of Coal Ash for Trace Elements and their Geo-environmental ImplicationsSINGH, Harwant; PRABIR KUMAR KOLAY.Water, air and soil pollution. 2009, Vol 198, Num 1-4, pp 87-94, issn 0049-6979, 8 p.Article

Viscosity of ash particles in combustion systems for prediction of particle stickingSENIOR, C. L; SRINIVASACHAR, S.Energy & fuels. 1995, Vol 9, Num 2, pp 277-283, issn 0887-0624Article

Predicting coal ash fusion temperature based on its chemical composition using ACO-BP neural networkLIU, Y. P; WU, M. G; QIAN, J. X et al.Thermochimica acta. 2007, Vol 454, Num 1, pp 64-68, issn 0040-6031, 5 p.Article

Suppression of phosphate release from coastal sediments using granulated coal ashYAMAMOTO, T; HARADA, K; KIM, K. H et al.Estuarine, coastal and shelf science (Print). 2013, Vol 116, pp 41-49, issn 0272-7714, 9 p.Article

An experimental investigation into the characteristics and deposition mechanism of high-viscosity coal ashCHAO LUAN; CHANGFU YOU; DONGKE ZHANG et al.Fuel (Guildford). 2014, Vol 119, pp 14-20, issn 0016-2361, 7 p.Article

Ash limitation of physical coal beneficiation for medium-high ash coal—A geochemistry perspectiveWENFENG WANG; WEIDUO HAO; SIMON XU et al.Fuel (Guildford). 2014, Vol 135, pp 83-90, issn 0016-2361, 8 p.Article

Interaction between iron-based oxygen carrier and four coal ashes during chemical looping combustionJINHUA BAO; ZHENSHAN LI; NINGSHENG CAI et al.Applied energy. 2014, Vol 115, pp 549-558, issn 0306-2619, 10 p.Article

In Situ Characterization of Ash Thermal Conductivity for Three Coal Types Formed Under Oxidizing and Reducing Conditions in a Laboratory FurnaceCUNDICK, D; MAYNES, D; MOORE, T et al.Journal of thermal science and engineering applications (Print). 2012, Vol 4, Num 4, issn 1948-5085, 041002.1-041002.11Article

Arsenic concentration in porewater of an alkaline coal ash disposal site: Roles of siderite precipitation/dissolution and soil coverKIM, Kangjoo; PARK, Sung-Min; KIM, Jinsam et al.Chemosphere (Oxford). 2009, Vol 77, Num 2, pp 222-227, issn 0045-6535, 6 p.Article

The leaching behavior of cadmium, Arsenic, Zinc, and chlorine in coal and its ash from coal-fired power plant : Measurement of contaminant leachabilityFENGHUA ZHAO; SUPING PENG; BAOSHAN ZHENG et al.Environmental engineering science. 2006, Vol 23, Num 1, pp 68-76, issn 1092-8758, 9 p.Article

Effects of compost, coal ash, and straw amendments on restoring the quality of eroded Palouse soilCOX, Duncan; BEZDICEK, David; FAUCI, Mary et al.Biology and fertility of soils. 2001, Vol 33, Num 5, pp 365-372, issn 0178-2762Article

Subsurface Sequestration of CO2 in the U.S: Is it Money Best Spent?PATZEK, Tad W.Natural resources research (New York, N.Y.). 2010, Vol 19, Num 1, pp 1-9, issn 1520-7439, 9 p.Article

Ecotoxicological implications of aquatic disposal of coal combustion residues in the United States: A reviewROWE, Christopher L; HOPKINS, William A; CONGDON, Justin D et al.Environmental monitoring and assessment. 2002, Vol 80, Num 3, pp 207-276, issn 0167-6369, 70 p.Article

Influence of coal ash and slag dumping on dump waste waters of the kostolac power plants (Serbia)POPOVIC, Aleksandar; DJINOVIC, Jasna.Energy sources. 2006, Vol 28, Num 13-16, pp 1189-1201, issn 0090-8312, 13 p.Article

Use of bivalve metrics to quantify influences of coal-related activities in the Clinch River watershed, VirginiaHULL, M. S; CHERRY, D. S; NEVES, R. J et al.Hydrobiologia (The Hague). 2006, Vol 556, pp 341-355, issn 0018-8158, 15 p.Article

Dissolved and total copper in a coal ash effluent and receiving stream: Assessment of in situ biological effectsREASH, Robin J.Environmental monitoring and assessment. 2004, Vol 96, Num 1-3, pp 203-220, issn 0167-6369, 18 p.Article

Dry, high-temperature De-SO2 and De-H2S via treated calcium-based materialsAL-SHAWABKEH, A; MATSUDA, H; HASATANI, M et al.Energy conversion and management. 1997, Vol 38, Num 10-13, pp 1389-1397, issn 0196-8904Conference Paper

Study of coal ash deposition in an entrained flow reactor : Assessment of traditional and alternative slagging indicesBARROSO, J; BALLESTER, J; PINA, A et al.Fuel processing technology. 2007, Vol 88, Num 9, pp 865-876, issn 0378-3820, 12 p.Article

Direct determination of parts-per-billion levels of germanium in botanical samples and coal fly ash by graphite furnace atomic absorption spectrometryDE-QIANG, Z; ZHE-MING, N; HAN-WEN, S et al.Fresenius' journal of analytical chemistry. 1997, Vol 358, Num 5, pp 641-645, issn 0937-0633Article

Sonochemical decomposition of hydrazine in water: Effects of coal ash and pH on the decomposition and adsorption behaviorNAKUI, Hiroyuki; OKITSU, Kenji; MAEDA, Yasuaki et al.Chemosphere (Oxford). 2009, Vol 76, Num 5, pp 716-720, issn 0045-6535, 5 p.Article

Effect of coal ash on hydrazine degradation under stirring and ultrasonic irradiation conditionsNAKUI, H; OKITSU, K; MAEDA, Y et al.Ultrasonics sonochemistry. 2008, Vol 15, Num 4, pp 472-477, issn 1350-4177, 6 p.Article

Characterising the sintering behaviour of pulverised fuel ash using heating stage microscopyADELL, V; CHEESEMAN, C. R; FERRARIS, M et al.Materials characterization. 2007, Vol 58, Num 10, pp 980-988, issn 1044-5803, 9 p.Article

Detecting the heavy metal tolerance level in ectomycorrhizal fungi in vitroRAY, Prasun; TIWARI, Richa; GANGI REDDY, U et al.World journal of microbiology & biotechnology. 2005, Vol 21, Num 3, pp 309-315, issn 0959-3993, 7 p.Article

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