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- W4291002509 endingPage "120865" @default.
- W4291002509 startingPage "120865" @default.
- W4291002509 abstract "The prevalence drawback of membrane technology applications is rapid flux declines due to fouling. Membrane fouling analysis is vital to explicitly understand fouling occurrences. Alternatively, silver nanoparticles (AgNPs) incorporated in PVDF membranes are utilized for Raman spectroscopy (SERS) as an unconventional approach of built-in surface that enhances substrate. The thermogravimetric analysis (TGA) has been employed to quantify foulant as an approach to evaluate the performance of AgNPs for fouling mitigation during surface water filtration. In this study, two types of AgNPs, namely AgNPs-1 and AgNPs-2, were respectively incorporated in the PVDF ultrafiltration (UF) membrane. The scanning electron microscopy (SEM), flux decay rate (FDR), and flux recovery ratio (FRR) analyses of clean and fouled membranes have implied membrane fouling phenomena. Small significant peaks representing biofoulant presence were obtained from normal Raman while total foulant weight indicated reductions of 82.69% and 75.86% with the presence of AgNPs-1 and AgNPs-2, respectively. Hence, the unconventional approach in fouling analysis for AgNPs in PVDF membrane has potentially been earmarked for surface enhancement in normal Raman analysis while foulant quantification provided a profound understanding of fouling occurrences on the membrane which contribute to the development of the fouling mitigation approach." @default.
- W4291002509 created "2022-08-13" @default.
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- W4291002509 date "2022-11-01" @default.
- W4291002509 modified "2023-09-30" @default.
- W4291002509 title "Alternative fouling analysis of PVDF UF membrane for surface water treatment: The credibility of silver nanoparticles" @default.
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- W4291002509 cites W1973781490 @default.
- W4291002509 cites W1976288832 @default.
- W4291002509 cites W1979656210 @default.
- W4291002509 cites W1988187284 @default.
- W4291002509 cites W1990729786 @default.
- W4291002509 cites W1992221545 @default.
- W4291002509 cites W1992339039 @default.
- W4291002509 cites W2006617939 @default.
- W4291002509 cites W2012292316 @default.
- W4291002509 cites W2020409401 @default.
- W4291002509 cites W2021085296 @default.
- W4291002509 cites W2024205636 @default.
- W4291002509 cites W2026879820 @default.
- W4291002509 cites W2030557548 @default.
- W4291002509 cites W2036270624 @default.
- W4291002509 cites W2037237023 @default.
- W4291002509 cites W2042480259 @default.
- W4291002509 cites W2044214547 @default.
- W4291002509 cites W2045388922 @default.
- W4291002509 cites W2049983497 @default.
- W4291002509 cites W2061073363 @default.
- W4291002509 cites W2061713285 @default.
- W4291002509 cites W2063407263 @default.
- W4291002509 cites W2065433331 @default.
- W4291002509 cites W2069934129 @default.
- W4291002509 cites W2073288709 @default.
- W4291002509 cites W2079209543 @default.
- W4291002509 cites W2080511631 @default.
- W4291002509 cites W2086971829 @default.
- W4291002509 cites W2087491059 @default.
- W4291002509 cites W2094476201 @default.
- W4291002509 cites W2112853776 @default.
- W4291002509 cites W2148428997 @default.
- W4291002509 cites W2153591330 @default.
- W4291002509 cites W2157911333 @default.
- W4291002509 cites W2165173086 @default.
- W4291002509 cites W2295097024 @default.
- W4291002509 cites W2313933366 @default.
- W4291002509 cites W2332494901 @default.
- W4291002509 cites W2425432119 @default.
- W4291002509 cites W2484787653 @default.
- W4291002509 cites W2484986806 @default.
- W4291002509 cites W2687808417 @default.
- W4291002509 cites W2785586337 @default.
- W4291002509 cites W2796366720 @default.
- W4291002509 cites W2799859840 @default.
- W4291002509 cites W2802740865 @default.
- W4291002509 cites W2804212843 @default.
- W4291002509 cites W2809294166 @default.
- W4291002509 cites W2883604703 @default.
- W4291002509 cites W2885063577 @default.
- W4291002509 cites W2903073040 @default.
- W4291002509 cites W2910805901 @default.
- W4291002509 cites W2934142069 @default.
- W4291002509 cites W2948545502 @default.
- W4291002509 cites W2996073830 @default.
- W4291002509 cites W2999643557 @default.
- W4291002509 cites W3001167738 @default.
- W4291002509 cites W3009835579 @default.
- W4291002509 cites W3033186165 @default.
- W4291002509 cites W3039198970 @default.
- W4291002509 cites W3043291279 @default.
- W4291002509 cites W3082022154 @default.
- W4291002509 cites W3086421905 @default.
- W4291002509 cites W3087598118 @default.
- W4291002509 cites W3088190394 @default.
- W4291002509 cites W3106482483 @default.
- W4291002509 cites W3108469883 @default.
- W4291002509 cites W3127665130 @default.
- W4291002509 cites W3155437137 @default.
- W4291002509 cites W3172877513 @default.
- W4291002509 cites W3173172333 @default.
- W4291002509 cites W3180674874 @default.
- W4291002509 cites W3198945051 @default.
- W4291002509 cites W4223893040 @default.
- W4291002509 doi "https://doi.org/10.1016/j.memsci.2022.120865" @default.
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