Matches in SemOpenAlex for { <https://semopenalex.org/work/W2001194886> ?p ?o ?g. }
- W2001194886 endingPage "669" @default.
- W2001194886 startingPage "659" @default.
- W2001194886 abstract "Membrane processes have received in recent years considerable attention for the separation and concentration of inorganic and organic compounds from various wastewater streams. This work investigated the efficiency of a pilot-scale reverse osmosis (RO) process on the treatment of winery wastewater with an initial chemical oxygen demand (COD) of 5350 mg L−1. The removal of COD by the RO process reached 97% resulting in a permeate with residual COD level lower than 150 mg L−1. Furthermore, the total nitrogen removal reached 67%, total phosphorous 76.2%, total suspended solids 94%, total solids 96%, and conductivity 94%. These results demonstrated an excellent solid and soluble salts separation. Toxicity and phytotoxicity assays in the feed, concentrate and permeate samples were also performed, showing that the toxicity of the original effluent could be reduced or even eliminated through the RO process. Moreover, the volume recovery achieved in the recirculation mode was 65%, whereas in the single pass was 50%. Further treatment of the concentrate (COD 10290 mg L−1) by solar photo-Fenton oxidation achieved a COD reduction of 75%. In an effort to evaluate the capacity of the RO process to concentrate valuable polyphenols, five selected compounds were examined. The process proved to be quite efficient in almost completely concentrating them in the concentrate stream." @default.
- W2001194886 created "2016-06-24" @default.
- W2001194886 creator A5022055752 @default.
- W2001194886 creator A5027781062 @default.
- W2001194886 creator A5035463390 @default.
- W2001194886 creator A5036727892 @default.
- W2001194886 creator A5048379142 @default.
- W2001194886 creator A5050676003 @default.
- W2001194886 creator A5091660580 @default.
- W2001194886 date "2013-10-01" @default.
- W2001194886 modified "2023-10-14" @default.
- W2001194886 title "Winery wastewater purification by reverse osmosis and oxidation of the concentrate by solar photo-Fenton" @default.
- W2001194886 cites W1944747433 @default.
- W2001194886 cites W1964004589 @default.
- W2001194886 cites W1966629433 @default.
- W2001194886 cites W1967095324 @default.
- W2001194886 cites W1968462713 @default.
- W2001194886 cites W1968614751 @default.
- W2001194886 cites W1975006279 @default.
- W2001194886 cites W1978539044 @default.
- W2001194886 cites W1979293532 @default.
- W2001194886 cites W1980685633 @default.
- W2001194886 cites W1981005070 @default.
- W2001194886 cites W1982007875 @default.
- W2001194886 cites W1986255734 @default.
- W2001194886 cites W1996364955 @default.
- W2001194886 cites W1998444031 @default.
- W2001194886 cites W2002012990 @default.
- W2001194886 cites W2005315075 @default.
- W2001194886 cites W2009609677 @default.
- W2001194886 cites W2010331815 @default.
- W2001194886 cites W2012356669 @default.
- W2001194886 cites W2012750873 @default.
- W2001194886 cites W2012751471 @default.
- W2001194886 cites W2018777666 @default.
- W2001194886 cites W2019953339 @default.
- W2001194886 cites W2020379574 @default.
- W2001194886 cites W2021683339 @default.
- W2001194886 cites W2022249632 @default.
- W2001194886 cites W2029053860 @default.
- W2001194886 cites W2030946379 @default.
- W2001194886 cites W2031026119 @default.
- W2001194886 cites W2033700373 @default.
- W2001194886 cites W2037153295 @default.
- W2001194886 cites W2037502856 @default.
- W2001194886 cites W2038580108 @default.
- W2001194886 cites W2039527935 @default.
- W2001194886 cites W2045258381 @default.
- W2001194886 cites W2048075602 @default.
- W2001194886 cites W2052963612 @default.
- W2001194886 cites W2053687306 @default.
- W2001194886 cites W2054632533 @default.
- W2001194886 cites W2054992858 @default.
- W2001194886 cites W2056273235 @default.
- W2001194886 cites W2058134270 @default.
- W2001194886 cites W2060459588 @default.
- W2001194886 cites W2062701059 @default.
- W2001194886 cites W2065179155 @default.
- W2001194886 cites W2065983927 @default.
- W2001194886 cites W2066427682 @default.
- W2001194886 cites W2067263259 @default.
- W2001194886 cites W2072482537 @default.
- W2001194886 cites W2072558513 @default.
- W2001194886 cites W2075602841 @default.
- W2001194886 cites W2077973396 @default.
- W2001194886 cites W2080967265 @default.
- W2001194886 cites W2091130285 @default.
- W2001194886 cites W2092322142 @default.
- W2001194886 cites W2102978569 @default.
- W2001194886 cites W2107002374 @default.
- W2001194886 cites W2118584026 @default.
- W2001194886 cites W2129453439 @default.
- W2001194886 cites W2133022534 @default.
- W2001194886 cites W2144631082 @default.
- W2001194886 cites W2155030659 @default.
- W2001194886 cites W2163413467 @default.
- W2001194886 cites W2166563994 @default.
- W2001194886 cites W2275301716 @default.
- W2001194886 cites W47806432 @default.
- W2001194886 doi "https://doi.org/10.1016/j.seppur.2013.07.049" @default.
- W2001194886 hasPublicationYear "2013" @default.
- W2001194886 type Work @default.
- W2001194886 sameAs 2001194886 @default.
- W2001194886 citedByCount "50" @default.
- W2001194886 countsByYear W20011948862014 @default.
- W2001194886 countsByYear W20011948862015 @default.
- W2001194886 countsByYear W20011948862016 @default.
- W2001194886 countsByYear W20011948862017 @default.
- W2001194886 countsByYear W20011948862018 @default.
- W2001194886 countsByYear W20011948862019 @default.
- W2001194886 countsByYear W20011948862020 @default.
- W2001194886 countsByYear W20011948862021 @default.
- W2001194886 countsByYear W20011948862022 @default.
- W2001194886 countsByYear W20011948862023 @default.
- W2001194886 crossrefType "journal-article" @default.
- W2001194886 hasAuthorship W2001194886A5022055752 @default.
- W2001194886 hasAuthorship W2001194886A5027781062 @default.
- W2001194886 hasAuthorship W2001194886A5035463390 @default.