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An optical method for characterizing carbon content in ceramic pot filters

机译:表征陶瓷罐式过滤器中碳含量的光学方法

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Ceramic pot filter (CPF) technology is a relatively common means of household water treatment in developing areas, and performance characteristics of CPFs have been characterized using production CPFs, experimental CPFs fabricated in research laboratories, and ceramic disks intended to be CPF surrogates. There is evidence that CPF manufacturers do not always fire their products according to best practices and the result is incomplete combustion of the pore forming material and the creation of a carbon core in the final CPFs. Researchers seldom acknowledge the existence of potential existence of carbon cores, and at least one CPF producer has postulated that the carbon may be beneficial in terms of final water quality because of the presence of activated carbon in consumer filters marketed in the Western world. An initial step in characterizing the presence and impact of carbon cores is the characterization of those cores. An optical method which may be more viable to producers relative to off-site laboratory analysis of carbon content has been developed and verified. The use of the optical method is demonstrated via preliminary disinfection and flowrate studies, and the results of these studies indicate that the method may be of use in studying production kiln operation.
机译:陶瓷盆式过滤器(CPF)技术是发展中地区家庭水处理的一种相对常见的手段,并且已使用生产CPF,研究实验室制造的实验性CPF以及旨在用作CPF替代品的陶瓷圆片来表征CPF的性能特征。有证据表明,CPF制造商并不总是根据最佳实践对产品进行烧制,其结果是造孔材料燃烧不完全,最终CPF中形成了碳核。研究人员很少承认存在碳核的潜在可能性,并且至少有一家CPF生产商推测,由于西方世界销售的消费者过滤器中存在活性炭,因此碳在最终水质方面可能是有益的。表征碳核的存在和影响的第一步是表征这些核。已经开发和验证了一种光学方法,该方法相对于碳含量的异地实验室分析对生产者而言更可行。通过初步的消毒和流量研究证明了该光学方法的使用,这些研究的结果表明该方法可用于研究生产窑炉的运行。

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