厌氧消化处理乳制品废弃物,产生沼气作为绿色能源

Jean H. El Achkar, Rita Ziade, N. Louka, R. Maroun, Zeina Hobaika
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引用次数: 1

摘要

乳业乳血清的处理和管理已成为一个全球性的问题。事实上,所产生的废水具有高有机负荷(乳糖、蛋白质、维生素、矿物质等),是环境污染的主要来源。在可持续的绿色方法中,厌氧消化被认为是处理乳血清或奶酪乳清的有前途的解决方案。首先,我们进行了生化表征,显示甜味和酸性奶酪乳清的乳糖组成分别为52和46 g/kg,平均COD约为70 g/kg。甜乳血清的生物降解率高达97%,相当于0.34 $\mathrm{N}\mathrm{m}^{3}\mathrm{C}\mathrm{H}_{4}\cdot \mathrm{k}\mathrm{g}\ mathrm{C}\mathrm{O}\mathrm{D}^{-1}$。然而,酸性乳血清的生物降解率较低,为17%。这突出了在能量回收方面使用甜味的重要性。为了优化工艺,我们还尝试通过对接种物进行超声预处理来评估甲烷产量的增加,从而进入探索较少的轨道。在输入能量为90 kJ/kg的超声条件下,产率最高。
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Treatment of dairy waste by anaerobic digestion to produce methane as green energy
Treatment and management of lactoserum from dairy industry has become a global issue. In fact, generated effluents have high organic loads (lactose, protein, vitamin, minerals etc.) constituting a major source of environmental pollution. In a sustainable green approach, anaerobic digestion is considered a promising solution for the treatment of lactoserum or cheese whey. At first, we conducted a biochemical characterization showing a lactose composition of 52 and 46 g/kg, for sweet and acidic cheese whey, respectively, with an average COD of about 70 g/kg. The biodegradability of sweet lactoserum showed an extremely high value of 97% equivalent to 0.34 $\mathrm{N}\mathrm{m}^{3}\mathrm{C}\mathrm{H}_{4}\cdot \mathrm{k}\mathrm{g}\ \mathrm{C}\mathrm{O}\mathrm{D}^{-1}$. However, low biodegradability was noted for acidic lactoserum with a value of17%. This highlights the importance of the use of the sweet one in terms of energy recovery. For the optimization of the process, we also tried an incursion towards little explored tracks by evaluating the intensification of methane production, applying ultrasounds pretreatment on inoculum. The best yield was obtained after sonication with an energy input of 90 kJ/kg.
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