Utilizing an Oxyhydrogen Reactor to Produce Hydrogen Gas as a New Source of Energy from Textile Effluent

Rusdianasari, Isdaryanto Iskandar, Prita Dewi Basuki
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Abstract

Textile wastewater can disrupt the environmental equilibrium. One type of textile waste processing is the production of hydrogen gas as a new and sustainable energy source. The water electrolysis method may be used to convert textile waste into hydrogen gas. In this study, hydrogen gas was produced from textile waste in two stages: electroplating waste treatment with an electrocoagulator and then processing textile waste into hydrogen gas using an oxyhydrogen reactor. Various catalysts, including NaOH, KOH, NaCl, and NaHCO3, were used in the process of converting textile waste into hydrogen gas, with a concentration of 0.5 M and an electrolysis period of 5 minutes. The addition of a catalyst is intended to identify the optimal concentration in the conversion of textile waste to hydrogen gas. The optimal KOH catalyst concentration for obtaining hydrogen gas was determined through study and analysis.
利用氢氧反应器从纺织废水中生产氢气作为新能源
纺织废水会破坏环境平衡。纺织废料处理的一种方式是生产氢气作为一种新的可持续能源。水电解法可用于将纺织废料转化为氢气。本研究以纺织废弃物为原料,分电絮凝剂处理电镀废弃物和氢氧反应器将纺织废弃物加工成氢气两个阶段进行制氢。采用NaOH、KOH、NaCl、NaHCO3等多种催化剂将纺织废渣转化为氢气,氢气浓度为0.5 M,电解时间为5分钟。添加催化剂的目的是确定纺织废料转化为氢气的最佳浓度。通过研究分析,确定了KOH催化剂制取氢气的最佳浓度。
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