{"title":"Biohydrogen Production from Palm Oil Mill Effluent Pretreated by Chemical Methods Using Thermoanaerobacterium-Rich Sludge","authors":"P. Prasertsan, S. O-thong","doi":"10.5829/IDOSI.IJEE.2013.04.04.01","DOIUrl":null,"url":null,"abstract":"The effect of alkaline and acid pretreatment on solubilization of solid organic matter in palm oil mill effluent (POME) and hydrogen production by Thermoanaerobacterium-rich sludge was studied. Organic matter solubilization of alkaline and acid pretreatments were increased up to 28 and 15.7% of initial soluble COD in POME, respectively. That corresponds to carbohydrate solubilization of 41 and 32% of initial soluble carbohydrate in POME, respectively. A maximum hydrogen production yield of 4.6 l H /l-POME was achieved 2 from POME pretreated with 1.5% w/v NaOH, which was 3-fold greater than raw POME and 1-fold greater than POME pretreated with 1.5% w/v HCl. Optimum conditions for biohydrogen production from alkaline pretreated POME using Thermoanaerobacterium-rich sludge was found at initial pH 5.5 and temperature of 60°C, which gives a maximum hydrogen production yield of 5.2 l H /l-POME and increased 51% as compared to raw POME. 2 The biogas was mainly composed of hydrogen and carbon dioxide with the percentage of hydrogen ranging from 55-60% of biogas and free of methane. During the conversion of alkaline pretreated POME into hydrogen, the acetic and butyric acids were main by-products in the metabolism. The results showed that alkaline pretreatment is an effective pretreatment methods for enhancing the hydrogen production yield from POME. The use of Thermoanaerobacterium-rich sludge is promising for future engineering practice of biohydrogen production from alkaline pretreated POME.","PeriodicalId":14591,"journal":{"name":"iranica journal of energy and environment","volume":"8 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2013-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"12","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"iranica journal of energy and environment","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.5829/IDOSI.IJEE.2013.04.04.01","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 12
Abstract
The effect of alkaline and acid pretreatment on solubilization of solid organic matter in palm oil mill effluent (POME) and hydrogen production by Thermoanaerobacterium-rich sludge was studied. Organic matter solubilization of alkaline and acid pretreatments were increased up to 28 and 15.7% of initial soluble COD in POME, respectively. That corresponds to carbohydrate solubilization of 41 and 32% of initial soluble carbohydrate in POME, respectively. A maximum hydrogen production yield of 4.6 l H /l-POME was achieved 2 from POME pretreated with 1.5% w/v NaOH, which was 3-fold greater than raw POME and 1-fold greater than POME pretreated with 1.5% w/v HCl. Optimum conditions for biohydrogen production from alkaline pretreated POME using Thermoanaerobacterium-rich sludge was found at initial pH 5.5 and temperature of 60°C, which gives a maximum hydrogen production yield of 5.2 l H /l-POME and increased 51% as compared to raw POME. 2 The biogas was mainly composed of hydrogen and carbon dioxide with the percentage of hydrogen ranging from 55-60% of biogas and free of methane. During the conversion of alkaline pretreated POME into hydrogen, the acetic and butyric acids were main by-products in the metabolism. The results showed that alkaline pretreatment is an effective pretreatment methods for enhancing the hydrogen production yield from POME. The use of Thermoanaerobacterium-rich sludge is promising for future engineering practice of biohydrogen production from alkaline pretreated POME.
研究了碱预处理和酸预处理对棕榈油厂废液中固体有机物的增溶作用及富热厌氧菌污泥产氢的影响。碱性和酸性预处理的有机物增溶率分别达到初始可溶性COD的28%和15.7%。这相当于POME中初始可溶性碳水化合物的41%和32%的碳水化合物的增溶。1.5% w/v NaOH预处理的POME产氢率最高可达4.6 l H /l-POME,是原料POME的3倍,是1.5% w/v HCl预处理的1倍。在初始pH为5.5、温度为60°C的条件下,富热厌氧菌污泥对碱性预处理POME进行生物制氢的最佳条件,最大产氢量为5.2 l H /l-POME,比原始POME提高51%。2 .沼气主要由氢气和二氧化碳组成,氢气占沼气的比例为55-60%,不含甲烷。在碱性预处理后的POME制氢过程中,乙酸和丁酸是代谢的主要副产物。结果表明,碱性预处理是提高POME产氢率的有效预处理方法。富热厌氧菌污泥的利用为碱预处理POME生物制氢的工程实践提供了良好的前景。