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Efficient Air Desulfurization Catalysts Derived from Pig Manure Liquefaction Char

机译:猪粪液化炭衍生的高效空气脱硫催化剂

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Biochar from the liquefaction of pig manure was used as a precursor of H 2 S desulfurization adsorbents. In its inorganic matter, it contains marked quantities of calcium, magnesium and iron, which are known as hydrogen sulfide oxidation catalysts. The char was used either as-received or mixed with 10% nanographite. The latter was added to increase both the content of the carbon phase and conductivity. ZnCl 2 in two different ratios of char to an activation agent (1:1 and 1:2) was used to create the porosity in the carbon phase. The content of the later was between 18?¢????45%. The activated samples adsorbed 144 mg/g H 2 S. Sulfur was the predominant product of reactive adsorption. Its deposition in the pore system and blockage of the most active pores ceased the materials?¢???? activity. The presence of the catalytic phase was necessary but not sufficient to guarantee good performance. The developed porosity, which can store oxidation products in the resulting composite, is essential for the good performance of the desulfurization process. The surface of the composite with nanographite showed the highest catalytic activity, similar to that of the commercial Midas ???? carbon catalyst. The results obtained indicate that a high quality reactive adsorbent/catalyst for H 2 S removal can be obtained from pig manure liquefaction wastes.
机译:来自猪粪液化的生物炭被用作H 2 S脱硫吸附剂的前体。在其无机物质中,它包含大量的钙,镁和铁,这些物质被称为硫化氢氧化催化剂。炭以原样使用或与10%纳米石墨混合使用。添加后者以增加碳相的含量和电导率。炭与活化剂的两种不同比例(1:1和1:2)的ZnCl 2用于在碳相中产生孔隙。后者的含量在18%〜45%之间。活化的样品吸附了144 mg / g H 2S。硫是反应性吸附的主要产物。它在孔系统中的沉积和最活跃的孔的堵塞使材料停止了作用。活动。催化相的存在是必要的,但不足以保证良好的性能。所形成的孔隙率可以在所得复合物中存储氧化产物,这对于脱硫过程的良好性能至关重要。具有纳米石墨的复合材料的表面显示出最高的催化活性,类似于商业的Midas。碳催化剂。所得结果表明,可以从猪粪液化废物中获得高质量的用于H 2 S去除的反应性吸附剂/催化剂。

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