Kumar Biplab, Das Bidisha, Garain Amit, Rai Summi, Begum Wasefa, Inamuddin Md, Mondal Monohar Hossain, Bhattarai Ajaya, Saha Bidyut
Department of Chemistry, The University of Burdwan Burdwan-713104 WB India
Chemical Sciences Laboratory, Government General Degree College Singur Hooghly-712409 WB India
RSC Adv. 2022 Aug 24;12(37):23973-23988. doi: 10.1039/d2ra02861a. eCollection 2022 Aug 22.
The rapidly increasing modern industrial world demands a huge uninterrupted energy supply, where high-quality coal (HQC) is one of the major sources of the required energy. In this regard, a gigantic amount of solid waste including ash and toxic chemicals, such as heavy metals, nitrate and sulphur, gases including NOx and SOx are emitted during the direct incineration process of low-rank coal. About 10 Gt of CO and about one-fifth of total greenhouse gases in the world are emitted each year due to coal combustion in power plants, making it the single largest cause of climate change. The UN proposed that OECD countries stop producing electricity from coal by 2030 and the rest of the world by 2040. Herein, we discuss the development of modern technologies that can convert low-quality coal (LQC) into high-quality coal (HQC) to minimize the impact of fossil fuel burn, climate change, premature death of animals and all other related environmental hazards. Amongst the many established technologies, flotation pre-treatment is the most common and effective method used worldwide due to its lower energy input than other methods. In this review, we attempt to present an up-to-date understanding of the applications and utilities of surfactants in coal floating. We also demonstrate the possible modernization of this surfactant chemistry and its prospects.
快速发展的现代工业世界需要巨大的不间断能源供应,其中优质煤是所需能源的主要来源之一。在这方面,低阶煤直接焚烧过程中会排放大量包括灰分和有毒化学物质(如重金属、硝酸盐和硫)在内的固体废物,以及包括氮氧化物和硫氧化物在内的气体。由于发电厂燃烧煤炭,每年排放约100亿吨一氧化碳,约占全球温室气体总量的五分之一,这使其成为气候变化的最大单一成因。联合国提议经合组织国家到2030年停止使用煤炭发电,世界其他国家到2040年停止。在此,我们讨论现代技术的发展,这些技术可将劣质煤转化为优质煤,以尽量减少化石燃料燃烧、气候变化、动物过早死亡及所有其他相关环境危害的影响。在众多已成熟的技术中,浮选预处理是全球使用最普遍且最有效的方法,因为其能源投入比其他方法更低。在本综述中,我们试图展现对表面活性剂在煤炭浮选中的应用和效用的最新理解。我们还展示了这种表面活性剂化学可能的现代化及其前景。