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Brown Coal Dewatering Using Poly (Acrylamide-Co-Potassium Acrylic) Based Super Absorbent Polymers

机译:使用基于聚(丙烯酰胺-钴酸钾)的高吸收性聚合物进行褐煤脱水

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With the rising cost of energy and fuel oils, clean coal technologies will continue to play an important role during the transition to a clean energy future. Victorian brown coals have high oxygen and moisture contents and hence low calorific value. This paper presents an alternative non evaporative drying technology for high moisture brown coals based on osmotic dewatering. This involves contacting and mixing brown coal with anionic super absorbent polymers (SAP) which are highly crossed linked synthetic co-polymers based on a cross-linked copolymer of acryl amide and potassium acrylate. The paper focuses on evaluating the water absorption potential of SAP in contact with 61% moisture Loy Yang brown coal, under varying SAP dosages for different contact times and conditions. The amount of water present in Loy Yang coal was reduced by approximately 57% during four hours of SAP contact. The extent of SAP brown coal drying is directly proportional to the SAP/coal weight ratio. It is observed that moisture content of fine brown coal can readily be reduced from about 59% to 38% in four hours at a 20% SAP/coal ratio.
机译:随着能源和燃料油成本的上涨,清洁煤技术将在向清洁能源未来过渡的过程中继续发挥重要作用。维多利亚时代的褐煤具有较高的氧气和水分含量,因此热值较低。本文提出了一种基于渗透脱水的高水分褐煤的非蒸发干燥技术。这涉及褐煤与阴离子超吸收性聚合物(SAP)接触和混合,所述阴离子超吸收性聚合物是基于丙烯酰胺和丙烯酸钾的交联共聚物的高度交联的合成共聚物。本文着重评估在不同接触时间和条件下,SAP剂量不同时,与61%水分的Loy Yang褐煤接触时SAP的吸水潜力。在SAP接触四个小时后,Loy Yang煤中的水量减少了约57%。 SAP褐煤干燥的程度与SAP /煤重量比成正比。可以看出,在20%SAP /煤比的情况下,四小时内细褐煤的水分含量很容易从约59%降至38%。

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