Performance evaluation of a slow-release packing material-embedded functional microorganisms for biofiltration

A composite packing material (CM-5) was prepared in this study, mainly consisting of compost with functional microorganisms, calcium carbonate (CaCO3), perlite, cement and plant fiber. To get stronger compressive strength, mass ratios of these components were optimized based on single factor experim...

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Détails bibliographiques
Publié dans:Environmental technology. - 1998. - 38(2017), 8 vom: 14. Apr., Seite 945-955
Auteur principal: Zhu, Rencheng (Auteur)
Autres auteurs: Li, Shunyi, Wu, Zhenjun, Dumont, Éric
Format: Article en ligne
Langue:English
Publié: 2017
Accès à la collection:Environmental technology
Sujets:Journal Article Composite packing material biofiltration functional microorganisms hydrogen sulfide slow-release Buffers Organic Chemicals Soil Volatile Organic Compounds plus... Perlite 0SG101ZGK9 Carbon 7440-44-0 Silicon Dioxide 7631-86-9 Aluminum Oxide LMI26O6933 Nitrogen N762921K75 Hydrogen Sulfide YY9FVM7NSN
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Résumé:A composite packing material (CM-5) was prepared in this study, mainly consisting of compost with functional microorganisms, calcium carbonate (CaCO3), perlite, cement and plant fiber. To get stronger compressive strength, mass ratios of these components were optimized based on single factor experiments, and finally adding amounts of perlite, cement, plant fiber, CaCO3, compost and binder at 18%, 18%, 7%, 13%, 17% and 27%, respectively. According to the optimum proportion, CM-5 was extruded in cylindrical shape (12 mm in diameter and 20 mm in length) with a bulk density of 470 kg m-3, a moisture retention capacity of 49% and the microbial counts of × 105 CFU g-1 of packing material. The cumulative release rates of total organic carbon (TOC) and total nitrogen (TN) from CM-5 were 3.1% and 6.5%, respectively, after 19 times extraction in distilled water. To evaluate the H2S removal capacity, CM-5 was compared with an organic (corncob) and an inorganic (ceramsite) packing material in three biofilters. The results showed that CM-5 had higher H2S removal capacity compared with corncob and ceramsite. CM-5 could avoid the large fluctuation of pH value and pressure drop during the operation. The maximum H2S removal capacity of CM-5 was 12.9 g m-3 h-1 and the removal efficiency could maintain over 95.4% when the inlet H2S loading rate was lower than 11.3 g m-3 h-1 without any addition of nutrients and pH buffer substances. Besides, only 2-3 days were needed for the recovery of biofiltration performance after about two weeks of idle period
Description:Date Completed 28.03.2017
Date Revised 16.11.2017
published: Print-Electronic
Citation Status MEDLINE
ISSN:1479-487X
DOI:10.1080/09593330.2016.1214624