利用菠萝废酶提高水产养殖污泥的水解溶解度

M. Syahirah, R. Nazaitulshila
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引用次数: 7

摘要

水产养殖业排放的大量污泥污染物含量较高,可能导致严重的当地环境问题。厌氧消化是污泥处理技术之一,可能是降低咸水养殖污泥产量负荷的有效方法。然而,在厌氧消化过程中,由于不溶性生物聚合物转化为可溶性有机化合物而产生的中间积累,使得水解溶解度成为一个限制步骤。因此,在对水产养殖污泥进行厌氧处理前,需要进行预处理,以增加其对污染物参数的增溶作用。因此,本研究的重点是利用菠萝渣等超市消费前废弃物发酵生产生物催化酶,以提高水产养殖污泥的溶解度。菠萝废料的发酵是通过将糖蜜、菠萝渣和水的混合物以1:3:10的比例在一个密封的塑料容器中发酵三个月来产生的。除此之外,分析表明该酶具有脂肪酶、淀粉酶和蛋白酶活性。在不同pH值下对污泥进行增溶预处理,处理时间为120 h,通过测定化学需氧量(COD)和总氨氮(TAN)的增溶效果来评价污泥的增溶效果;COD和TAN的增溶率分别提高了80%和50%。这一发现表明菠萝酶具有溶解有机化合物的能力,在进一步的厌氧消化过程中具有改善水解的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Utilization of Pineapples Waste Enzyme for the Improvement of Hydrolysis Solubility in Aquaculture Sludge
High volumes of sludge discharge from the aquaculture industry have relatively high pollutant content that may lead to severe local environmental problems. Anaerobic digestion is one of the technologies for sludge treatment that might be an efficient method to reduce salty aquaculture sludge production load. However, hydrolysis solubility is becoming a limitation step during the anaerobic digestion process when the occurrence of intermediate accumulation resulted from the conversion of non-soluble biopolymers to soluble organic compounds. Thus, pretreatment is required to increase the solubilization of pollutant parameters from aquaculture sludge before it is further treated in the anaerobic treatment. Therefore, this study focuses on the production of biocatalytic enzyme from the fermentation of pre-consumer supermarket waste such as pineapple dregs to increase the solubility of aquaculture sludge. The fermentation of the pineapples waste was produced via a three-month fermentation of the mixture of molasses, pineapple dregs and water, with the ratio of 1:3:10 in a tight plastic container. Apart from that, analyses showed that the enzyme possessed lipase, amylase and protease activity. The sludge solubilization pretreatment was performed at different pH values, with treatment time for 120 hours and the solubilization was evaluated by determination of Chemical Oxygen Demand (COD) and Total Ammonia Nitrogen (TAN) solubilization; the solubilization of COD and TAN increased by 80% and 50%, respectively. This finding showed that the pineapple enzyme has the capability to solubilize organic compound, which has the potential to improve hydrolysis in further anaerobic digestion process.
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