Removal of Nickel from Industrial Wastewater by an Agro-based Composite Adsorbent

R. Bhagat, S. Khandeshwar
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Abstract

For many years, especially in emerging nations like India, the environment has been threatened by the increased output of industrial wastes and heavy metal toxicity. The usage of inexpensive adsorbents has recently attracted a lot of attention in studies on the removal of heavy metals like nickel from industrial wastewater. The use of agro-based adsorbent is an alternative to conventionally used activated charcoal. In this research, adsorption experiments were carried out using agro-based adsorbent prepared from rice husk, wheat husk, and soybean husk to reduce nickel from industrial wastewater. The adsorption process is simple, economical, and effective is the most preferred method used for the removal of toxic metals like nickel from industrial wastewater. Adsorbents prepared from these husks can be effectively used for adsorption due to low cost & high availability. Characterization of agricultural material by various tests like XRF, proximate analysis, bulk density, and iodine number was conducted on agro-based adsorbents to know the co-relation between removal efficiency and adsorption capacity. The effect of turbidity and pH parameters on Ni removal efficiency is also studied. Results indicated that wheat husk adsorbent appeared to be the most effective for the adsorption of Ni from wastewater as compared to soybean husk and rice husk adsorbent. Wheat husk, soybean husk, and rice husk have removal efficiency in the range of 62.50 to 73.33. Composite absorbents CA-2 with the proportion of 50% wheat husk, 33% soybean husk, and 17% rice husk have 82.50% efficiency, and CA-3 has 80.83% efficiency in removing Nickel. Wheat husk adsorbent, CA-2, and CA-3 are more effectively and sustainably used for the treatment of industrial wastewater to remove heavy metals.
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利用农基复合吸附剂去除工业废水中的镍
多年来,特别是在印度等新兴国家,环境一直受到工业废水产量增加和重金属毒性的威胁。最近,使用廉价吸附剂去除工业废水中镍等重金属的研究引起了广泛关注。使用农基吸附剂可以替代传统使用的活性炭。本研究使用稻壳、麦壳和大豆壳制备的农基吸附剂进行了吸附实验,以减少工业废水中的镍。吸附过程简单、经济、有效,是去除工业废水中镍等有毒金属的首选方法。用这些稻壳制备的吸附剂成本低、可用性高,可有效用于吸附。通过对农基吸附剂进行 XRF、近似分析、容积密度和碘值等各种测试,对农业材料进行了表征,以了解去除效率和吸附容量之间的相互关系。此外,还研究了浊度和 pH 值参数对镍去除效率的影响。结果表明,与大豆壳和稻壳吸附剂相比,小麦壳吸附剂对废水中 Ni 的吸附似乎最有效。小麦壳、大豆壳和稻壳的去除率在 62.50 到 73.33 之间。由 50%的小麦壳、33% 的大豆壳和 17%的稻壳组成的复合吸附剂 CA-2 的镍去除率为 82.50%,CA-3 的镍去除率为 80.83%。麦壳吸附剂、CA-2 和 CA-3 更有效、更可持续地用于处理工业废水以去除重金属。
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来源期刊
Nature Environment and Pollution Technology
Nature Environment and Pollution Technology Environmental Science-Environmental Science (all)
CiteScore
1.20
自引率
0.00%
发文量
159
审稿时长
36 weeks
期刊介绍: The journal was established initially by the name of Journal of Environment and Pollution in 1994, whose name was later changed to Nature Environment and Pollution Technology in the year 2002. It has now become an open access online journal from the year 2017 with ISSN: 2395-3454 (Online). The journal was established especially to promote the cause for environment and to cater the need for rapid dissemination of the vast scientific and technological data generated in this field. It is a part of many reputed international indexing and abstracting agencies. The Journal has evoked a highly encouraging response among the researchers, scientists and technocrats. It has a reputed International Editorial Board and publishes peer reviewed papers. The Journal has also been approved by UGC (India). The journal publishes both original research and review papers. The ideology and scope of the Journal includes the following. -Monitoring, control and management of air, water, soil and noise pollution -Solid waste management -Industrial hygiene and occupational health -Biomedical aspects of pollution -Toxicological studies -Radioactive pollution and radiation effects -Wastewater treatment and recycling etc. -Environmental modelling -Biodiversity and conservation -Dynamics and behaviour of chemicals in environment -Natural resources, wildlife, forests and wetlands etc. -Environmental laws and legal aspects -Environmental economics -Any other topic related to environment
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