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Methane Production from Alginate-Extracted and Non-Extracted Waste of Laminaria japonica: Anaerobic Mono- and Synergetic Co-Digestion Effects on Yield

机译:来自藻酸盐的甲烷生产 - 提取和未提取的Laminaria japonica:厌氧单 - 和协同的共消化作用对产量

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摘要

This study investigated the potentiality of methane production from alginate-extracted (AEWLJ) and non-extracted (NAEWLJ) waste of Laminaria japonica through batch anaerobic fermentation in mono- and co-digestion with rice straw (RS) at different mixing ratios. Optimal C/N ratio was demonstrated, and system stability was monitored in terms of the total ammonia nitrogen, total volatile fatty acids, and pH throughout the digestion period. The results show that the combination of AEWLJ/RS at 67% mixing ratio generated the highest biogas yield of 247 NmL/gVS, which was 36% higher than the AEWLJ alone. The synergetic effect was clearly observed leading to an increase in the total methane yield up to 78% and 88%, respectively, for arrays of AEWLJ/RS and NAEWLJ/RS. The kinetic model showed a high coefficient of determination (R2 ≥ 0.9803) when the modified Gompertz model was applied to predict methane production. These outcomes support the possibility of an integrated biorefinery approach to attain value-added products in order to achieve circular economies.
机译:本研究研究了通过用稻草(RS)的分批厌氧发酵,在不同混合比中通过分批厌氧发酵来研究甲烷产生从藻酸盐提取的(AEWLJ)和非提取的(Naewlj)浪费的潜力。证明了最佳C / N比,并根据整个氨氮,总挥发性脂肪酸和在整个消化期内的pH中监测系统稳定性。结果表明,AEWLJ / Rs的组合为67%的混合比产生了247个NML / GV的最高沼气产量,比单独的AEWLJ高36%。清楚地观察到协同效应导致总甲烷产量的增加,分别为AEWLJ / RS和Naewlj / Rs的阵列分别增加78%和88%。当应用改性的Gompertz模型以预测甲烷生产时,动力学模型显示出高度的测定系数(R2≥0.9803)。这些结果支持综合生物遗产方法以获得增值产品的可能性,以实现循环经济。

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