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Chemical composition, nutrient-balancing and biological treatment of hand washing greywater

Authors :
Ziemba, Christopher
Larivé, Odile
Reynaert, Eva
Morgenroth, Eberhard
Source :
Water Research, 144
Publication Year :
2018
Publisher :
ETH Zurich, 2018.

Abstract

On-site biological hand washing water treatment can improve global access to safe hand washing water, but requires a thorough understanding of the chemical composition of the water to be treated, and an effective treatment strategy. This study first presents a detailed characterization of the individual inputs to hand washing water. We demonstrate (i) that soap is likely the most significant input in hand washing water, representing ∼90% of mass loading, and (ii) that inputs to hand washing water have low concentrations of biologically-essential macro- and micro-nutrients (nitrogen, phosphorus, potassium, copper, zinc, molybdenum and cobalt) with respect to carbon, which may impair biological carbon removal. This study next formulates a recipe that recreates a representative composition of hand washing water and develops a procedure to identify and supplement nutrients in which this recipe is estimated to be deficient. Batch testing of the nutrient-supplemented hand washing water with an inoculum of planktonic bacteria demonstrated improved assimilable organic carbon removal (99% vs. 86% removal) and produced lower final dissolved organic carbon concentrations (1.7 mgC/L vs. 3.5 mgC/L) compared to realistic (nutrient-deficient) washing water. Supplementing nutrients did promote cell growth (50x higher final total cell count). Full-scale testing in a biologically activated membrane bioreactor (BAMBi) system treating 75 L/day of nutrient-supplemented hand washing water showed that long-term operation (100 days) can deliver effective carbon removal (95%) without detrimental fouling or other disruptions caused by cell growth. This work demonstrates that biological treatment in a BAMBi system, operated with appropriate nutrient-balancing offers an effective solution for decentralized treatment of light greywater.<br />Water Research, 144<br />ISSN:0043-1354<br />ISSN:1879-2448

Details

Language :
English
ISSN :
00431354 and 18792448
Database :
OpenAIRE
Journal :
Water Research, 144
Accession number :
edsair.doi.dedup.....d38b538097e7c59d4ba9b20765511c69
Full Text :
https://doi.org/10.3929/ethz-b-000286446