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The effect of pyrolysis temperature and feedstock on date palm waste derived biochar to remove single and multi-metals in aqueous solutions

机译:热解温和原料对枣棕榈废物衍生生物炭的影响去除水溶液中的单和多金属

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In this study, leaf and frond date palm waste as feedstock was used to derive biochars. The effects of pyrolysis temperatures on their physical and chemical properties, and their capacity to remove copper, iron, nickel and zinc from single and multi-metal solutions at various pH values were investigated. Analytical and spectroscopic techniques such as scanning electron microscopy, energy dispersive X-ray, Fourier transform infrared spectroscopy, X-ray diffraction, carbon, hydrogen, nitrogen, sulfur elemental analysis, Brunauer Emmett Teller analysis were conducted for characterization. The pore volume, surface area, pH, and total carbon content of date palm leaf and frond biochar increased while functional groups and hydrogen, nitrogen and oxygen content of biochar decreased with increasing pyrolysis temperature compared to feedstock. The removal efficiencies and sorption capacity for single and mixed metal ions were found between 98 and close to 100% and 2.4 and 3.0?mg?g??1 by leaf and frond biochar samples at pH?>?6, respectively. Biochar obtained from different feedstock at different pyrolysis temperature did not show any statistically significant improvements on the removal of single or mixed metals from aqueous solutions. The date palm leaf or frond biochar obtained at low pyrolysis temperature is as effective to remove metals as the ones obtained at high pyrolysis temperatures. Therefore, to consume less energy to produce biochar at lower temperature which exhibits same effective removal efficiency will be a win-win solution in terms of sustainability and economy. As a result, date palm waste biochar can be effectively used to remove metals in water and wastewater.
机译:在本研究中,叶子和叶枣棕榈垃圾作为原料用于衍生生物炸素。研究了热解温度对其物理和化学性质的影响,以及它们在各种pH值下从单和多金属溶液中除去铜,铁,镍和锌的能力。进行分析和光谱技术,如扫描电子显微镜,能量分散X射线,傅里叶变换红外光谱,X射线衍射,碳,氢气,氮,硫元素分析,Brunauer Emmett讲述分析进行了表征。与原料相比,孔隙体积,表面积,pH和散热叶和叶片生物炭的总碳含量增加,而生物炭的氮气和氧含量随着热解温而增加。在98之间发现单和混合金属离子的去除效率和吸附能力,并分别接近100%和2.4和3.0·mg?毫克,分别在pH?>Δ6处用叶片和叶状生物炭样品。在不同热解温下从不同原料中​​获得的生物炭没有显示出从水溶液中除去单一或混合金属的任何统计学显着的改进。在低热解温度下获得的日期棕榈叶或叶片生物凝块如在高热解温度下获得的金属一起去除金属。因此,为了消耗较少的能量,在较低温度下产生生物炭,这表现出相同的有效的去除效率将是在可持续性和经济方面的双赢解决方案。结果,可以有效地使用枣棕榈废物生物炭来除去水和废水中的金属。

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