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Volumn 60, Issue 9, 2009, Pages 2455-2462
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Integrated nutrient removal design for very low phosphorus levels
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Author keywords
Design; Limit of technology; Phosphorus
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Indexed keywords
BIOREACTORS;
DESIGN;
DIGESTIVE SYSTEM;
EFFLUENTS;
METAL RECOVERY;
NUTRIENTS;
PHOSPHORUS;
PRIVATIZATION;
BIOLOGICAL PHOSPHORUS REMOVAL;
CHEMICALLY ENHANCED PRIMARY TREATMENT;
DESIGN LIMITS;
DESIGN/BUILD;
DEWATERING LIQUORS;
INTEGRATED APPROACH;
LIMIT OF TECHNOLOGY;
MEMBRANE BIOREACTOR;
METAL SALT;
NUTRIENT REMOVAL;
NUTRIENT REQUIREMENT;
PRIVATE COMPANIES;
PROCESS SELECTION;
TOTAL PHOSPHORUS;
WASHINGTON;
WATER RECOVERY;
BIOLOGICAL WATER TREATMENT;
PHOSPHORUS;
RIVER WATER;
OXYGEN;
BIOREACTOR;
DIGESTION;
EXPERIMENTAL STUDY;
MEMBRANE;
OXIC CONDITIONS;
PHOSPHORUS;
WATER TREATMENT;
AEROBIC METABOLISM;
BIOREACTOR;
CONFERENCE PAPER;
TECHNOLOGY;
WATER ANALYSIS;
WATER POLLUTANT;
WATER POLLUTION;
ARTICLE;
BIOENERGY;
CHEMISTRY;
ENVIRONMENTAL MONITORING;
RIVER;
SEWAGE;
UNITED STATES;
BIOELECTRIC ENERGY SOURCES;
ENVIRONMENTAL MONITORING;
OXYGEN;
PHOSPHORUS;
RIVERS;
SEWAGE;
WASHINGTON;
WATER POLLUTANTS, CHEMICAL;
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EID: 74049100524
PISSN: 02731223
EISSN: None
Source Type: Book Series
DOI: 10.2166/wst.2009.618 Document Type: Article |
Times cited : (6)
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References (7)
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