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Bioremediation of Polymeric Wastes: Polyethylene and Rubber
By D. Raghavan
In recent years, the environmental issues related to the landfill shortage received considerable importance. Many polymeric solid wastes have high resistivity to chemical and biological degradation, a
Jan 1, 1993
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Biosorption Characteristics of Pb(II) From Aqueous Solution Onto Poplar Cotton
By Ting Luo, Hongmin Zhu, Kai Huang, Shuanglong Du, Tao Gui, Yifan Xiu
"Poplar cotton, a cellulosic material, was found to adsorb metals ions effectively. In the present study, the biosorption characteristics of Pb(II) onto poplar cotton, were evaluated as a function of
Jan 1, 2012
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Biosorption Kinetics of Metal Removal from Uranium Mill Tuiling Effluents
By M. L. Apel
A conceptual approach to the bioremediation of uranium mill tailings (UMT) is presented., This approach focuses on, biosorption to remediate the. effluent solution and bioleaching remediate the. solid
Jan 1, 1991
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Biosorption of Cadmium from Aqueous Solutions by Waste Microzyme
By Yunnen Chen
The test and use of natural materials as biosorbents for the removal of heavy metals from industrial wastewater is under constant development. In the present study, the biosorption capacity of waste m
Jan 1, 2009
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Biosorption Of Heavy Metal Ions From Wastewater Bystreptomyces Viridosporus
By R. K. Amankwah
The ability of Streptomyces viridosporus in sorbing heavy metals from wastewater has been investigated. It was found out that the biomass of the soil microorganism could be used in sorbing Pb2+, Cu2+,
Jan 1, 2003
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Biosorption Of Heavy Metals And Uranium From Dilute Solutions
By I. A. H. Schneiderl
Eichhornia crassipes approaches being a scourge in many parts of the world, .choking waterways and hindering transport upon them. At the same time it is known to readily abstract heavy metal ions from
Jan 1, 1995
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Biosorption of Metal Contaminants from Addie Mine Waters
By T. H. Jeffers
The U.S. Bureau of Mines' Salt Lake City Research Center. has developed porous polymeric beads containing immobilized non-living biological materials for extracting metal contaminants? from waste
Jan 1, 1991
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Biosorption Removal of Aluminum Species from Wastewaters Streams
By Javier Enrique Basurco Cayllahua
In this work, a gram-positive bacteria was used as biosorbent to elucidate the aluminum load capacity under different conditions related to metallurgical and chemical plants. The sorption data followe
Jan 1, 2009
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Biostimulators from the Waste of Tanning Industry
By Klara Kodrikova, Vera Kasparkova, Michaela Uhlirova, Karel Kolomaznik
"Potentially hazardous wastes from leather industry (blue shavings) are processed into various biostimulators within two steps. The first step takes place at high pH (11-12) and hydrolyzation is imple
Jan 1, 2008
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Biotechnology Applied to Raw Materials Processing
By S. K. Kawatra, T. C. Eisele
"Recent advances in microbiology have made the application of biotechnology to metallurgical processes possible. Hydrometallurgy stands to gain the cost from the use of microorganisms, as they are use
Jan 1, 1988
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Biotechnology For Sustainable Hydrometallurgy
By Johannes Boonstra
High rate bacterial catalyzed processes can serve to improve hydrometallurgical operations. These solutions are not only economical but also environmental sustainable. With references around the globe
Jan 1, 2003
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Biotechnology In The Mining And Metallurgical Industries: Cost Savings Through Selective Precipitation Of Metal Sulfides
By H. Dijkman
The PAQUES Bio Systems' core technology, marketed under the name THIOPAQ®, consists of various high-rate biological processes for metal-sulfur-water systems, complemented with common solid/liquid
Jan 1, 1999
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Blast Furnace Burdens Preparation from Metallurgical Dusts and Sludges with Composite Binder
By Zhucheng Huang, Yuanbo Zhang, Kecheng Zhang, Guanghui Li, Tao Jiang
"With rapid development of Iron and Steel industry, plenty of metallurgical dusts and sludges are generated, which have not been effectively utilized because of their poor hydrophilicity and bad balla
Jan 1, 2011
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Blast Furnace Ironmaking: Process Alternatives and Carbon Intensity
By Jorge Gibson, P. Chris Pistorius, Megha Jampani
"The main reason for the significant carbon intensity of integrated steelmaking (approximately 1.8 tons of CO2 per ton of steel) is the use of carbon-based reductants in blast furnace ironmaking. Seve
Jan 1, 2014
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Bleed-off Treatment of HK's Secondary Copper Electrorefinery
By Reinhard F. Dobner
After a short introduction about the HK's secondary smelter process and explanations concerning the anodes produced the regulation and buffering of bleed will be described and the principles of t
Jan 1, 1997
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Blister Flash Smelting - Efficient And Flexible Low-Cost Continuous Copper Process
By Jukka Tuominen
The history of making blister copper in an Outokumpu Flash Smelting Furnace dates back to the late 1960?s, when Outokumpu first piloted the Outokumpu Direct Blister (ODB) process. The first commercial
Jan 1, 2005
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Boliden Rönnskär Smelter: Challenges and Opportunities for Modern Smelting
By Theo Lehner
"The Boliden Rönnskär Smelter operates in the European Context of tight EH&S limits, with ever increasing regulations and tribulations. The near future promises to bring new burdens in the form of C02
Jan 1, 2012
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Boliden's Specialised Technology For Smelter Gas Handling And Effluent Treatment
By Björn Lindquist
Boliden has developed a number of specialised technologies for smelter gas handling and effluent treatment. These technologies will be described. Special attention will be given to the high-pressure v
Jan 1, 2002
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Bonded Permanent Magnets -An Overview
By Mitchell L. Spencer, Viswanathan Panchanathan
"Bonded magnets are important category in permanent magnets. They are made by one of the following processes: compression bonding, injection molding, extrusion, calendering. An overview of the various
Jan 1, 2013
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Bonding/Binding Properties Of A Lead Contaminated Soil
By Godwin J. Igwe
For soil remediation technology to be effective, a thorough understanding of the interactions between a targeted contaminant and the soil matrix is crucial. Proper selection of remediation technology,
Jan 1, 1994