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Rapid removal of bound water from dredged sediments using novel hybrid coagulants

机译:利用新型杂交凝结剂快速去除来自疏浚沉积物的结合水

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Dredging operations produce sediment masses that require chemical conditioning and dewatering before disposing of dredged sediments. Conventional chemical conditioners have difficulty removing the bound water parceled in extracellular polymeric substances (EPS), and the removal of bound water determines the dewatering ratio and the rate of sedimentation. In this study, the conventional conditioners FeCl3, Al-2(SO4)(3), and cationic polyacrylamide (CPAM) and a new covalently-bound hybrid coagulant (CBHyC) were investigated for dewatering sediments in laboratory conditions that simulated real-world conditions. The water content of dewatered cakes was 61.4-68.3% for sediment conditioned with FeCl3, Al-2(SO4)(3), and CPAM, while the water content was 52.6% with CBHyC. CBHyC achieved a setting rate that was 66-359% faster than conventional conditioners, decreased specific resistance to filtration (SRF) by 72-86% compared with conventional conditioners. CBHyC achieved the best sediment dewaterability due to its structure, which consists of hydrophobic group of a long carbon chain and hydrophilic groups of Fe-O-Si complexes and quaternary ammonium. This structure increases electrical neutralization ability and bridging effects, allowing formation of large dense flocs in sediments. Moreover, CBHyC also functioned as a surfactant, dissolving EPS (approximately 59.7%), especially proteins (approximately 59.9%) and humic substances (approximately 25.4%), from the sediment into water. The result was approximately 37.1% bound water parceled in EPS was transformed into free water. Lastly, the sediment conditioned with CBHyC exhibited a discontinuous and porous structure; thus, the water was more likely to flow quickly outward from interior locations. These results demonstrate the potential application of CBHyC for high efficiency and rapid dewatering of dredged sediments.
机译:在处理疏浚沉积物之前,疏浚作业产生需要化学调理和脱水的沉积物。常规的化学式调节剂难以除去细胞外聚合物物质(EPS)中的结合水,并且去除结合的水决定了脱水比和沉降速率。在该研究中,研究了常规调理剂FECL3,Al-2(SO 4)(3)和阳离子聚丙烯酰胺(CPAM)和新的共价结合的杂化凝血剂(CBHYC),用于在模拟现实世界条件的实验室条件下脱水沉积物。脱水蛋糕的含水量为61.4-68.3%,沉积物与FECL3,Al-2(SO 4)(3)和CPAM调节,含水量为52.6%,CBHYC为52.6%。 CBHYC达到比常规护发素快66-359%的设定率,与常规护发素相比,将过滤(SRF)的耐热性耐热降低,降低72-86%。 CBHYC由于其结构而实现了最佳的沉积物脱水性,其由疏水基团和Fe-O-Si络合物和季铵盐的亲水基团组成。该结构增加了电中和能力和桥接效果,允许在沉积物中形成大密度絮凝物。此外,CBHYC还用作表面活性剂,溶解EPS(约59.7%),特别是蛋白质(约59.9%)和腐殖质物质(约25.4%),从沉淀物中到水中。结果约37.1%的EPS中将水状物转化为游离水。最后,用CBHYC调节的沉积物表现出不连续和多孔的结构;因此,水更可能从内部位置快速向外流动。这些结果表明CBHYC潜在应用于疏浚沉积物的高效率和快速脱水。

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