No.416 Jianye Road, South Jinqiao Area, Pudong, Shanghai, China

Project

Project

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Bioremediation of heavy metalcontaminated effluent

Acclimatization Activated sludge Bioremediation Cd Cr Ni Co and Zn Thacker toxicity on COD removal using activated sludge was partially

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Removal of Zn ІІ and Lead ІІ ions from aqueous

ash 7 Zn adsorption 8 Rice husk ash 9 Removal of Cr vІ 10 Cu2 on Rice bran 11 Removal of Cu ІІ and Ni ІІ 12 This paper studies two sorption systems Lead and Zinc by Tectonagrandis bark powder The isotherm constants for the Langmuir Freundlich and pseudo kinetic models batch sorption studies have been determined II

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Sorption of Zn II Pb II and Co II using DeepDyve

Read quotSorption of Zn II Pb II and Co II using natural sorbents Equilibrium and kinetic studies Water Research quot on DeepDyve the largest online rental service

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20 Bioremediation Kinetic Models For Removal Of Zn And Co

20 bioremediation kinetic models for removal of zn Removal of Zinc from Water by Adsorpion on Removal of Zinc from Water by Adsorpion on Bentonite and Kaolin removal rate is almost total after only 20 minutes secondorder Kinetic Models for Zn Biodegradation Kinetics of Zn II Using Acclimated

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Soil Science Society of America Journal Abstract

Appliion of Isotherm and Kinetic Models for the Removal of Lead Ions from Aqueous Solutions Journal of Environmental Engineering 2013 139 3 Silicapolymer hybrid materials as methylene blue adsorbents Journal of Environmental Chemical Engineering 2017 5 1 Bioremediation and Sustainable Technologies for Cleaner Environment 2017

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Zinc Oxide Hydrogen Sulfide Removal Catalyst

Zinc Oxide Hydrogen Sulfide Removal Catalyst Preparation Activity Test and Kinetic Study CO 3 K 2 CO 3

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Effects of pH on Metals Precipitation and Sorption Field

heavy metal Pb Cd Zn and Cu from groundwater A reaction path adsorb metals during the bioremediation experiment model of sulfate reduction shows the redox potential Eh effects on The modeling results were compared with field observa

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r e m e d iat on dB i o B Journal of et al J ioremediat

J Bioremediation amp Biodegradation o u r n a l g o f d B i o Zn 1 284 mg L and Cd 1 32 mg L removal from order Kinetic model Maximum removal rate of near

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Ho YS McKay G 1998 Kinetic models for the sorption

Ho YS McKay G 1998 Kinetic models for the sorption of very effective in the removal of trace metals from Eduion Publishing Co Ltd All

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A Kinetic and Equilibrium Study of Zinc Removal by

A Kinetic and Equilibrium Study of Zinc Removal by the removal of copper II Zn II and Co Study of Zinc Removal by Brazilian Bentonite Clay

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BioMed Research International Hindawi Publishing Corporation

Abstract Biosorption process is a promising technology for the removal of heavy metals from industrial wastes and effluents using lowcost and effective biosorbents

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Strategies of Bioremediation for the Degradation of

Strategies of Bioremediation for the Degradation of to evaluate the efficiency of appliion of the two models developed for Fe Pb Cr Cu Zn

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New Technologies Zinc Removal Wastewater Treatment

New Technologies Zinc Removal Wastewater sorbent for Cu and Zn removal and its subsequent of sorption while the bed depthservice time model was

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Studies on bioremediation of Zn and acid waters using

Zn II specific removal increases along with initial metal concentration The net adsorption capacity was determined and the Freundlich Langmuir and Hill models were applied The stoichiometric relationship between H release and zinc uptake in slightly acidic conditions is 1 1 and the adsorption kinetics follows a pseudosecond order model

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Heavy Metal Removal with Phytoremediation IntechOpen

Heavy metal contamination in the agricultural soil is not only pollution but it also has dangerous effect on wild life and human life The solution of this pollution problem by using classical traditional physical and chemical methods is too expensive But phytoremediation method is using for removal of heavy metal from agricultural soils

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Kinetic Rate Equations Appliion on the Removal

800 Kinetic Rate Equations Appliion on the Removal of Copper II and Zinc II by Unmodified Lignocellulosic Fibrous Layer of Palm Tree Trunk

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Biosorption of heavy metals Cd Cu Ni Pb Zn by

A comparison of different sorption models revealed that the Langmuir sorption model fitted the experimental data best K H Gardner and A Maries Sorption and desorption of Cd Co Cu Ni and Zn from carbonated Portland cement Advances in Applied Ceramics A comparison of isotherm and kinetic models for binary solute adsorption

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Removal of Zn II and Cu II Ions from Industrial

Bioremediation of a Complex Industrial Effluent by Biosorbents Derived from Freshwater Macroalgae Two frequently used integrated linearized kinetic models Lagergren and HoMcKay 8 and 9 17 58 were used to analyse the experimental data Removal of Zn II and Cu II

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Bioremediation of Waters Contaminated with Heavy

Bioremediation of Waters Contaminated with Heavy Metals Using used Bangham s kinetic model to compare Mumtaz B Hanif MA Nadeem R Removal of Zn

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Recent Advances in Bioremediation of Heavy Metals

Recent Advances in Bioremediation of Heavy Oedogonium hatei Appliion of isotherm and kinetic models Concurrent sorption of Zn II Cu II and Co

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bioremediation kinetic models for removal of zn and co

Bioremediation is an innovative and promising technology available for removal of heavy metals and recovery of the the metabolic pathway and their kinetics mediate in hormone and redox signaling process in the context of toxic metal Cd Zn Hg Cu Au Ag Co

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Pseudokinetics and Intraparticle diffusion models for

The sorption process was also subjected to a two way ANOVA without repliion at 5 level of significance These results show that cob not only being a good adsorbent for Zn II Cd II and Pb II ions removal that kinetic and intraparticle models can be used as design parameters for fabriion of treatment plants

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bioremediation kinetic models for removal of zn and co

Bioremed Bioremediation Phytoremediation Bioremediation Phytoremediation largely for removal of concs in plant tops from 1 800 to 51 600 mg kg for Cd Cu Co

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Assessing the resistance and bioremediation ability of

This study advoes the use of Peranema sp as a potential candidate for the bioremediation of heavy and metal removal Co Cd Zn Cu BMC Microbiology

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A Kinetic and Equilibrium Study of Zinc Removal by

A Kinetic and Equilibrium Study of Zinc Removal by Brazilian Bentonite Clay order to achieve a better understanding of the mechanism of adsorption on modified materials According to Santos 10 clays containing adsorbed water in the voids between the particles and the surface of the particles in the form of hydroxyl groups This clay minerals

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Adsorption of Metallic Ions onto Chitosan Equilibrium and

Adsorption of Metallic Ions onto Chitosan Equilibrium and Kinetic Studies Martha Benavente of Chemical Engineering and Technology Division of Transport Phenomena Stockholm Sweden May 2008 Adsorption of Metallic Ions onto Chitosan Equilibrium and Kinetic Studies The analysis of kinetic models showed that the pseudosecondorder

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Removal of Heavy Metals from Mine Waters by Natural

In this study we investigated the removal of Fe Pb Cd and Zn from synthetic mine waters by a natural zeolite The emphasis was given to the zeolite s behavior toward a few ions in competition with each other Pb was removed efficiently from neutral as well as from acidic solutions whereas the uptake of Zn and Cd decreased with low pH and high iron concentrations

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Environmental Bioremediation by Biosorption and

A focus on past and present studies addressing the bioremediation of both inorganic and organic pollutants their bioavailability in the environment mechanisms and impacts of environmental factors on the removal efficiency by biosorption and bioaccumulation was considered

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Removal of heavy metals by biosorption Home

Removal of heavy metals by biosorption novel and green bioremediation technique for heavy metal adsorption kinetic model has its own limitations

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20 bioremediation kinetic models for removal of zn and co

Removal of heavy metals by biosorption Home Springer Removal of heavy metals by biosorption novel and green bioremediation technique for heavy metal pollutants from contaminated natural waters and adsorption kinetic model has its own limitations which are derived according to specific experimental and theoretical

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Remediation and desorption kinetics of pyrene from

Abstract Soils cocontaminated with polycyclic aromatic hydrocarbons PAHs and heavy metals are challenging for remediation In the present study desorption of pyrene in kaolinite cocontaminated by Ni Pb and Zn was examined by combinations of surfactants and chelating agents such as Triton X100 Tween 80 Ethylene diamine tetra acetic acid EDTA and citric acid

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BIOREMEDIATION OF SOIL BY REMOVING HEAVY METALS

BIOREMEDIATION OF SOIL BY REMOVING HEAVY METALS USING Saccharomyces cerevisiae Dilna Damodaran Research student Saccharomyces cerevisiae was used for the removal of heavy Zn Cd Mn Ni Cr and Co are major among them The industrial complexes of Mangalore are situated much closer to the urban areas and areas with rich flora and fauna

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Recent Advances in Bioremediation of Heavy Metals

Recent Advances in Bioremediation of Heavy Metals and angustissima were used for the removal of Co Cu and Zn in of isotherm and kinetic models

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Effectiveness of biostimulation through nutrient content

Bioremediation has shown its applicability for removal of polycyclic aromatic hydrocarbons PAHs from soil and sediments In the present study the effect of biostimulation on phenanthrene removal from contaminated soil via adding macro and or micronutrients and trace elements was investigated For these purposes three macro nutrients as N P and K eight micronutrients as Mg S Fe Cl

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Removal of heavy metal ions from aqueous

solutions with multiwalled carbon nanotubes Kinetic and thermodynamic studies M Abdel Salam Zn II from aqueous Both kinetic mathematical models

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2 Principles of Bioremediation In Situ Bioremediation

Bioremediation can be grouped into two broad types intrinsic and engineered Figure 22 illustrates the differences between the two Intrinsic bioremediation manages the innate capabilities of naturally occurring microbial communities to degrade environmental pollutants without taking any engineering steps to enhance the process

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Multicomponent isotherm for biosorption of Zn II CO II

A model describing the process of biosorption by a singlestage batch design was developed and verified based on the Temkin isotherm model Fundamentally the outlook from these observations of the experiments that the pretreated dried biomass is a suitable absorbent for the removal of significant amounts of the heavy metal from the effluents

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Agamuthu and Dadrasnia Bioremed Biodeg 214 S4

Agamuthu and Dadrasnia Bioremed Biodeg 214 S4 Dynamics Phytoremediation of Zn and Diesel Fuel in Cocontaminated Soil using order kinetic model as follows

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Microbial growth and substrate utilization kinetics

Several microbial growth and biodegradation kinetic models have African Journal of Biotechnology in bioremediation schemes Some of these models

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REMOVAL OF HEAVY METALS FROM INDUSTRIAL WATER

concentrations current density and treatment time on the removal efficiency of zinc copper nickel chromium cadmium and cobalt using iron anodes The Kinetic models for heavy metals removal were studied also 2 EXPERIMENTAL WORK Synthetic solutions were prepared from reagent grade chemical without any further purifiion

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Pseudokinetics and Intraparticle diffusion models for

Pseudokinetics and Intraparticle diffusion models for and Pb II ions removal that kinetic and intraparticle models can bioremediation of Co II

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Biodegradation of total petroleum hydrocarbons from

Experimental data was fitted second order kinetic model Journal of Environmental Health study on bioremediation of soil cocontaminated with

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