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Acrylamide release resulting from sunlight irradiation of aqueous polyacrylamide/iron mixtures

机译:聚丙烯酰胺/铁水溶液在阳光照射下释放的丙烯酰胺

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Linear anionic polyacrylamide (PAM) has been used in irrigation practices as a flocculating agent to minimize water losses through seepage in earthen canals. The stability of PAM is of concern because of the possibility of acrylamide (AMD) monomer release during environmental weathering. Aqueous solutions of commercial PAM mixed with ferric sulfate, subjected to simulated and natural sunlight irradiation, showed polymer chain scission and release of the AMD monomer. At acideutral pH; the amount of AMD released was directly related to the concentration of ferric ion and the irradiation time. At alkaline pH (similar to 8), PAM/Fe3+ mixtures were stable under irradiation. PAM chain scission involved the hydroxyl radical, but specific AMD release appeared to require PAM-bound iron. Low iron concentrations and alkaline pH of irrigation water would limit AMD release. Residual monomer in PAM can contribute AMD to irrigation water, but concentrations would remain below the U.S. EPA drinking water standard of 0.5 ppb.
机译:线性阴离子聚丙烯酰胺(PAM)已在灌溉实践中用作絮凝剂,以最大程度地减少由于土渠中的渗漏而造成的水分流失。由于在环境风化过程中丙烯酰胺(AMD)单体可能释放,因此PAM的稳定性值得关注。商用PAM与硫酸铁混合的水溶液经过模拟和自然日光照射,表现出聚合物断链和AMD单体释放。在酸/中性pH下; AMD释放的量与三价铁离子浓度和照射时间直接相关。在碱性pH值(类似于8)下,PAM / Fe3 +混合物在辐射下稳定。 PAM断链涉及羟基自由基,但特定的AMD释放似乎需要结合PAM的铁。低铁浓度和灌溉用水的碱性pH会限制AMD的释放。 PAM中的残留单体可导致AMD产生灌溉用水,但其浓度仍将低于美国EPA饮用水标准0.5 ppb。

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