Kumar Alok, Sidharth Sumati, Kandasubramanian Balasubramanian
Nano Surface Texturing Laboratory, Department of Metallurgical and Materials Engineering, Defence Institute of Advanced Technology (DU), Ministry of Defence, Girinagar, Pune, 411025, Maharashtra, India.
Technology Management, Defence Institute of Advanced Technology (DU), Ministry of Defence, Girinagar, Pune, 411025, Maharashtra, India.
Environ Sci Pollut Res Int. 2023 Mar;30(14):39474-39493. doi: 10.1007/s11356-023-25710-5. Epub 2023 Feb 13.
Biosorbent composites like chitin, alginate, moss, xanthene, and cotton can be derived from biotic species such as plants, algae, fungi, and bacteria which can be used for the exclusion of both organic and inorganic toxicants from sewage, industrial effluent, polluted soils, and many more. The use of composites in place of raw substrates like alginate and chitin increases the adsorption capacity as CSCPL beads increase the adsorption capacity for copper and nickel from 66.7 mg/g and 15.3 mg/g in the case of alginate microsphere to 719.38 mg/g and 466.07 mg/g respectively. Biosorbent fabricated from algae Chlorella vulgaris having surface area of 12.1 m/g and pore size of 13.7 nm owing to which it displayed a higher adsorption capacity for Pb 0.433 mmol/g indicating their potential as an efficient biosorbent material. This article contains detailed information related to heavy metals as well as biosorbent that includes different isotherms, kinetics, techniques to estimate heavy metal concentration, removal methods, and adverse health effects caused due to heavy metal pollution. Apart from the above recovery and reuse of biosorbent, correlation with the sustainable development goals has also been included.
几丁质、藻酸盐、苔藓、呫吨和棉花等生物吸附剂复合材料可源自植物、藻类、真菌和细菌等生物物种,可用于去除污水、工业废水、污染土壤等中的有机和无机毒物。使用复合材料代替藻酸盐和几丁质等原始底物可提高吸附能力,因为CSCPL珠将铜和镍的吸附能力从藻酸盐微球情况下的66.7mg/g和15.3mg/g分别提高到719.38mg/g和466.07mg/g。由普通小球藻制成的生物吸附剂,其表面积为12.1m/g,孔径为13.7nm,因此它对铅的吸附能力较高,为0.433mmol/g,表明其作为高效生物吸附材料的潜力。本文包含与重金属以及生物吸附剂相关的详细信息,包括不同的等温线、动力学、估计重金属浓度的技术、去除方法以及重金属污染造成的不良健康影响。除了上述生物吸附剂的回收和再利用外,还包括与可持续发展目标的相关性。