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From toilet to agricultureClosing Domestic Nutrient Cycles Using MicroalgaeImpact of hydraulic retention time on community assembly and function of photogranules for wastewater treatmentHigh resolution functional analysis and community structure of photogranulesFeasibility of closing nutrient cycles from black water by microalgae-based technologyRemoval processes of individual and a mixture of organic micropollutants in the presence of Scenedesmus obliquusNutrient and pathogen removal from anaerobically treated black water by microalgaeN <sub>2</sub> ‐fixation can sustain wastewater treatment performance of photogranules under nitrogen limiting conditionsRecycling black water nutrients by algae-based photobiodegradationEnhancing phosphorus removal of photogranules by incorporating polyphosphate accumulating organismsHumic Acid-Like and Fulvic Acid-Like Inhibition on the Hydrolysis of Cellulose and TributyrinMaking wavesEffect of ammonia on the anaerobic hydrolysis of cellulose and tributyrinEnhancement of co-production of nutritional protein and carotenoids in Dunaliella salina using a two-phase cultivation assisted by nitrogen level and light intensityAlgen in dienstGeen afval!data and code from: Understanding the differential impacts of two antidepressants on locomotion of freshwater snails (Lymnaea stagnalis)Impact of wastewater characteristics on the removal of organic micropollutants by Chlorella sorokinianaOn-site blackwater treatment fosters microbial groups and functions to efficiently and robustly recover carbon and nutrientsToward an Ecologically Optimized N:P Recovery from Wastewater by MicroalgaeUnderstanding the differential impacts of two antidepressants on locomotion of freshwater snails (Lymnaea stagnalis)Effects of thermo-chemical pre-treatment on anaerobic biodegradability and hydrolysis of lignocellulosic biomassMicropollutant removal in an algal treatment system fed with source separated wastewater streamsImpact of mixed microalgal and bacterial species on organic micropollutants removal in photobioreactors under natural light