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Optimization of coagulation with ferric chloride as a pretreatment for fouling reduction during nanofiltration of rendering plant secondary effluent (CROSBI ID 238450)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Racar, Marko ; Dolar, Davor ; Špehar, Ana ; Kraš, Ana ; Košutić, Krešimir Optimization of coagulation with ferric chloride as a pretreatment for fouling reduction during nanofiltration of rendering plant secondary effluent // Chemosphere, 181 (2017), 485-491. doi: 10.1016/j.chemosphere.2017.04.108

Podaci o odgovornosti

Racar, Marko ; Dolar, Davor ; Špehar, Ana ; Kraš, Ana ; Košutić, Krešimir

engleski

Optimization of coagulation with ferric chloride as a pretreatment for fouling reduction during nanofiltration of rendering plant secondary effluent

The treatment and reuse of rendering plant wastewater with membrane processes is a poorly investigated area that could result in substantial water savings. Membrane fouling is still the main obstacle when treating secondary effluents (SEs) with high content of effluent organic matter (EfOM). Thus, the optimization of coagulation with ferric(III) chloride (FeCl3) as a pretreatment for nanofiltration was performed to reduce membrane fouling and achieve higher permeate quality. Coagulation was modeled (total carbon, inorganic carbon, dissolved organic carbon (DOC), turbidity, conductivity, and resulting pH) and optimized with response surface methodology (RSM) to remove DOC and turbidity with a pH close to neutral. The effluent after coagulation at optimal conditions (5.58 pH and 26.38 mg L-1 of Fe3+) and sand filtration (SF) was subjected to nanofiltration (NF270, NF, and NF90 membranes). The fouling was compared to evaluate the efficiency of each pretreatment. Coagulation with FeCl3 reduced the flux decline of nanofiltration membranes 4.2 to 19.3 times while SF barely reduced the fouling. Coagulation increased the flux recovery and chemical cleanliness after the membrane washing. In addition to fouling reduction, higher permeate quality was achieved.

rendering plant secondary effluent, coagulation, nanofiltration, response surface methodology, fouling

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Podaci o izdanju

181

2017.

485-491

objavljeno

0045-6535

10.1016/j.chemosphere.2017.04.108

Povezanost rada

Kemija, Kemijsko inženjerstvo, Temeljne tehničke znanosti, Interdisciplinarne tehničke znanosti

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