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1.ArsenicContaminationofDrinkingWater
1.Introduction
1.Overview
2.SourcesofArsenic
3.HealthEffectsofArsenicIngestion
4.ImplicationofArsenicContaminationonDevelopingNations
5.DetectionofArsenicinDrinkingandGroundWaterSources
2.GlobalArsenicOccurences
1.ArsenicinAsia
2.ArsenicinNorthAmerica
3.ArsenicinSouthAmerica
4.ArsenicProblemsinBangladesh
5.ArsenicProblemsinChina
6.ArsenicProblemsinIndia
7.ArsenicProblemsintheUnitedStates
3.RegulatoryPerspective
1.CurrentArsenicStandardsDefinedbyKeyRegulatoryAgencies
4.TechnologyPerspective
1.AvailableTechnologyforArsenicTreatment
2.EmergingTreatmentMethods
5.CompetitiveLandscape
1.EnvironmentalTechnologyVerification(ETV)ApprovedVendors
2.DriversandRestraintsandChallenges
6.Conclusion
1.MarketOpportunities
This Frost & Sullivan research service titled Arsenic Contamination of Drinking Water - A Global Perspective provides an overview of the current global crisis, including an analysis of the regulatory compliance issues, an assessment of emerging technologies, and a discussion of prevailing market forces and opportunities. In this research service, Frost & Sullivan's expert analysts thoroughly examine available and emerging arsenic detection and removal technologies.
This analysis is available through our Environmental Growth Partnership Service program. With this program, clients receive industry-leading market research such as this, along with technical and econometric data and many interactive features including Analyst Inquiry Time and Client Councils.
The following technologies are covered in this research:
Available Technologies:
• Oxidation / reduction
• Precipitation
• Adsorption and ion exchange
• Solid / Liquid separation
• Physical exclusion
• Biological removal
Emerging Technologies:
• Carbon nanotube membranes
• Nanomesh
• Nanofibrous alumina filters
• Nanofiltration membranes and devices
• Nanoporous ceramic biomedia filtration
• Nanoscale titanium dioxide photocatalysts
• Nanoscale zero-valent iron
• Nanostructured iron oxide adsorbent
• Self-assembled monolayers on mesoporous supports (SAMMS)
• Titanium oxide nanoparticle adsorbent