Rudi Nurul Nadia, Muhamad Mimi Suliza, Te Chuan Lee, Alipal Janifal, Omar Suhair, Hamidon Nuramidah, Abdul Hamid Nor Hazren, Mohamed Sunar Norshuhaila, Ali Roslinda, Harun Hasnida
Department of Civil Engineering Technology, Faculty of Civil Engineering Technology, Universiti Tun Hussein Onn Malaysia, Pagoh Education Hub, 84600, Pagoh, Muar, Johor, Malaysia.
Advanced Technology Centre, Faculty of Engineering Technology, Universiti Tun Hussein Onn Malaysia, Pagoh Education Hub, 84600, Pagoh, Muar, Johor, Malaysia.
Heliyon. 2020 Oct 1;6(9):e05049. doi: 10.1016/j.heliyon.2020.e05049. eCollection 2020 Sep.
Manganese has recently been a topic of interest among researchers, particularly when 1,752 million tonnes of manganese are expected to be produced by the steel industry in 2020. Manganese discharges from industrial effluents have increased manganese contamination in water sources. Its concentrations of more than 0.2 mg/L in the water sources could have negative impacts on human health and the aquatic ecosystem. Thereby, the available water treatment processes face challenges in effectively removing manganese at low cost. In response to these challenges, adsorption has emerged as one of the most practical water treatment processes for manganese removal. In particular, agricultural waste adsorbents received a lot of attention owing to their low cost and high efficiency (99%) in the removal of manganese. Therefore, this paper reviews the removal of manganese by adsorption process using agricultural waste adsorbents. The factors affecting the adsorption process, the mechanisms, and the performances of the adsorbents are elucidated in detail.
锰最近成为了研究人员关注的话题,尤其是在预计2020年钢铁行业将生产17.52亿吨锰的情况下。工业废水排放的锰增加了水源中的锰污染。水源中锰的浓度超过0.2毫克/升可能会对人类健康和水生生态系统产生负面影响。因此,现有的水处理工艺在以低成本有效去除锰方面面临挑战。为应对这些挑战,吸附已成为最实用的去除锰的水处理工艺之一。特别是,农业废弃物吸附剂因其低成本和去除锰的高效率(99%)而备受关注。因此,本文综述了利用农业废弃物吸附剂通过吸附工艺去除锰的情况。详细阐述了影响吸附过程的因素、吸附机理以及吸附剂的性能。