Parametric study of novel plant-based seed coagulant in modeled wastewater turbidity removal.

Progress of Theoretical Physics Pub Date : 2023-12-01 Epub Date: 2022-06-09 DOI:10.1007/s11356-022-21353-0
Amina Adedoja Owodunni, Suzylawati Ismail, Niyi Gideon Olaiya
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Abstract

Chemical coagulants like alum, ferric salts, and polyacrylamide derivatives are helpful in water treatment. However, the long-term detrimental effects of chemical coagulants on humans and the environment require alternative research for natural coagulants. This study used novel leguminous (green beans (GB), pigeon pea (PP)), fruit seeds (Tamarind indica (TI), and date palm (DS)) as coagulants to remove turbidity. The seeds were powdered, and the crude active coagulants were extracted with distilled water and a 1 M NaCl solution. The result showed that PP's distilled water extract had the highest turbidity removal of 81.12%, while DS had the least performance of 62.54%. The NaCl extract of PP had the highest removal (94.62%), followed by TI (76.08%). This study found the optimum doses for GB, TI, PP, and DS to be 50, 40, 10, and 70 mL/L, with their optimum pH at 3, 1, 3, and 1, respectively. The FTIR spectra confirmed the existence of -OH, -NH, COOH, C = O, C-C, and C-H peaks, indicating the presence of protein-specific functional groups supporting their potential use as coagulants. Therefore, PP would have been used based on turbidity performance; however, due to their nutritional value, TI and DS are suitable seeds for the coagulation-flocculation treatment of turbid water because they are waste materials.

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新型植物性种子混凝剂在模型废水除浊中的参数研究。
明矾、铁盐和聚丙烯酰胺衍生物等化学混凝剂有助于水处理。然而,化学混凝剂对人类和环境的长期有害影响要求对天然混凝剂进行替代研究。本研究使用新型豆科植物(青豆 (GB)、豌豆 (PP))和水果种子(罗望子 (TI) 和枣椰 (DS))作为混凝剂来去除浊度。将种子打成粉末,用蒸馏水和 1 M NaCl 溶液提取粗活性凝结剂。结果表明,PP 的蒸馏水提取物的除浊度最高,为 81.12%,而 DS 的除浊度最低,为 62.54%。PP 的氯化钠提取物去除率最高(94.62%),其次是 TI(76.08%)。研究发现,GB、TI、PP 和 DS 的最佳剂量分别为 50、40、10 和 70 mL/L,最佳 pH 值分别为 3、1、3 和 1。傅立叶变换红外光谱证实存在 -OH、-NH、COOH、C = O、C-C 和 C-H 峰,表明存在蛋白质特异性官能团,支持其作为凝结剂的潜在用途。因此,本应根据浊度性能使用聚丙烯;然而,由于其营养价值,TI 和 DS 是适用于混凝-絮凝处理浊水的种子,因为它们是废料。
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Progress of Theoretical Physics
Progress of Theoretical Physics 物理-物理:综合
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