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The Influence of Stereochemistry of the Active Compounds on Fluoride Adsorption Efficiency of the Plant Biomass

机译:活性化合物的立体化学对植物生物质对氟的吸附效率的影响

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Several studies have reported various defluoridation capabilities of plant biomasses. The resultant variations in fluoride removal capacities are associated with the presence of different types of active functional groups in the respective biomasses. This study reports of the fluoride removal efficiencies of sisal leaf biomass in comparison. Comparison with other plant biomasses were made and hence the fluoride removal efficiencies of maize leaf (ML), goose grass (GG), banana false stem (BFS), Aloe vera (AV), untreated sisal fibre (USF) and sisal pith (SP) with similar active functional groups but different stereochemistry and solubility of the active compounds are reported. A portion of 0.5 g of each biomass was mixed with a 10 mg/l fluoride solution in a 10 ml portions under the same experimental conditions. The maximum fluoride removal capacity of sisal fibre biomass was found to be 26.6 %. By comparison, the fluoride removal efficiencies of ML, GG, BFS, AV, USF and SP were found to be, 4.1, 4.6, 7.1, 26.6, 29.4 and 47.3 % respectively. This suggests that, stereochemistry and solubility of the active compounds have a significant role to play in water defluoridation by plant biomasses, and thus, knowledge of the stereochemistry and solubility of the active compounds in plant biomass is very important to fully unlock biomass’ defluoridation potentials.
机译:一些研究报告了植物生物质的各种脱氟能力。氟化物去除能力的最终变化与相应生物质中不同类型的活性官能团的存在有关。这项研究比较了剑麻叶片生物量的除氟效率。与其他植物生物量进行了比较,因此玉米叶(ML),鹅草(GG),香蕉假茎(BFS),芦荟(AV),未处理的剑麻纤维(USF)和剑麻髓(SP)的除氟效率)具有相似的活性官能团,但活性化合物的立体化学和溶解度不同。在相同的实验条件下,将0.5 g的每种生物质与10 mg / l的氟化物溶液按10 ml的比例混合。剑麻纤维生物质的最大除氟能力为26.6%。相比之下,ML,GG,BFS,AV,USF和SP的除氟效率分别为4.1%,4.6%,7.1%,26.6%,29.4%和47.3%。这表明,活性化合物的立体化学和溶解度在植物生物量的水脱氟中起着重要作用,因此,了解活性化合物在植物生物量中的立体化学和溶解度对于充分释放生物量的脱氟潜力非常重要。 。

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