(119) Celosia argenteaCan Be Produced Using Saline Wastewaters

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Production and ion uptake of Celosia argentea irrigated with saline wastewaters

The reuse of saline wastewaters and groundwaters becomes a viable option for the irrigation of salt tolerant floral crops as competition for high quality water increases. A completely randomized design with three replications was used to assess the effects of two water ionic compositions and six salinity levels on the production and mineral accumulation of two cultivars of Celosia argentea var....

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Anode microbial communities produced by changing from microbial fuel cell to microbial electrolysis cell operation using two different wastewaters.

Conditions in microbial fuel cells (MFCs) differ from those in microbial electrolysis cells (MECs) due to the intrusion of oxygen through the cathode and the release of H(2) gas into solution. Based on 16S rRNA gene clone libraries, anode communities in reactors fed acetic acid decreased in species richness and diversity, and increased in numbers of Geobacter sulfurreducens, when reactors were ...

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Homemade Hypertonic Saline: Essential Treatment Can Be Available and Affordable.

BACKGROUND Nebulized hypertonic saline (HS) treatment is unavailable to large populations worldwide. OBJECTIVES To determine the bacterial contamination and electrolyte concentrations in homemade (HM-HS) vs. pharmacy made (PM-HS). METHODS We conducted three double-blind consecutive trials: 50 boiled-water homemade 3%-HS (B-HM-HS) bottles and 50 PM-HS. The bottles were cultured after 48 hour...

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Advanced Treatment of Meat Processing Wastewaters Using Microalgae

Introduction: Effluents of Meat processing are one of the untreated wastewaters containing high volumes of polluted components even after the primary and secondary treatments. The high cost of using the advanced treatment methods of the wastewaters has led the industry owners to release them in the nature without effective removal of nitrogen and phosphorus. In this study, an economic advanced ...

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Biological treatability processes of textile wastewaters using electrocoagulation and ozonation

This study presents biotreatment of textile wastewaters using electrocoagulation and ozone processes. Ozonation process gave better results than electrocoagulation process. For electrocoagulation, optimum working conditions were found as follows: pH, 6.5; electrode type, iron electrode; current density, 20 mA/cm2; and reaction time, 15 min. Under these circumstances, values determined for elect...

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ژورنال

عنوان ژورنال: HortScience

سال: 2005

ISSN: 0018-5345,2327-9834

DOI: 10.21273/hortsci.40.4.1084b