Robalds Artis, Bikovens Oskars, Dēliņa Aija, Ponomarev Nikolai P, Purmalis Oskars, Elīna Tomsone Laura, Vanags Edgars
Institute of Food Safety, Animal Health and Environment "BIOR", Lejupes iela 3, Riga, LV-1076, Latvia.
Latvian State Institute of Wood Chemistry, Dzerbenes iela 27, Riga, LV-1006, Latvia.
Data Brief. 2024 Feb 20;53:110214. doi: 10.1016/j.dib.2024.110214. eCollection 2024 Apr.
Traditionally, biosorbents have been used to remove contaminants from polluted water, such as wastewater, landfill leachate, rainwater or drinking water. However, two alternative uses of biosorbents have been proposed relatively recently: the removal of heavy metals from fruit juices by biosorption and the use of saturated biosorbents as animal feed. Because these biosorbents are in contact with food or are used as animal feed, the concentration of contaminants in biosorbents must be known. In addition, the characterization of biosorbents is crucial because biosorbent properties affect both adsorption efficiency and the performance of full-scale biosorbent systems. This article presents data from Fourier transform infrared spectroscopy (FTIR) analysis, and the concentration of toxic metals (determined by ICP-MS) as well as pesticide residues was determined in ten biomass samples, namely, pea skins, straw, seaweed , wheat bran, rye bran, raspberry seeds, peat, buckwheat husks, highbush blueberry pulp, and blackcurrant pulp. Selected biomass samples were also characterized by scanning electron microscopy (SEM), nitrogen physisorption analysis, and pyrolysis-gas chromatography-mass spectrometry (Py-GC/ MS/FID) analysis.
传统上,生物吸附剂一直用于去除污水中的污染物,如废水、垃圾渗滤液、雨水或饮用水。然而,最近相对较新地提出了生物吸附剂的两种替代用途:通过生物吸附去除果汁中的重金属以及将饱和生物吸附剂用作动物饲料。由于这些生物吸附剂会与食物接触或用作动物饲料,因此必须了解生物吸附剂中污染物的浓度。此外,生物吸附剂的表征至关重要,因为生物吸附剂的特性会影响吸附效率和全尺寸生物吸附剂系统的性能。本文展示了傅里叶变换红外光谱(FTIR)分析的数据,并测定了十个生物质样品(即豌豆皮、秸秆、海藻、麦麸、黑麦麸、树莓籽、泥炭、荞麦壳、高丛蓝莓果肉和黑加仑果肉)中有毒金属的浓度(通过电感耦合等离子体质谱法测定)以及农药残留量。还通过扫描电子显微镜(SEM)、氮物理吸附分析和热解气相色谱 - 质谱联用(Py - GC/MS/FID)分析对选定的生物质样品进行了表征。