Effect of lactose as a co-substrate in the biodegradation of an anionic surfactant “LAS” by anaerobic digestion

IF 3.4 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biocatalysis and agricultural biotechnology Pub Date : 2024-06-19 DOI:10.1016/j.bcab.2024.103282
Jesús Terreros-Mecalco , Gisela Velazquez-Garduño , Enrique Daniel Archundia Velarde , Pedro Enrique Hernández Ruiz
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Abstract

Sodium alkylbenzenesulfonate (LAS) is the most widely used anionic surfactant in the manufacture of commercial detergents due to its excellent detergent properties and low cost. However, they are highly polluting products due to their chemical composition, causing a serious problem of pollution and eutrophication in natural bodies of water, if the amount dumped and the frequency with which they are dumped is taken into account. In addition, damage to health and ecosystems by remaining in the environment for a long time, is a relevant issue of immediate attention. This article presents the results found when using lactose as a co-substrate on the simultaneous biodegradation of the LAS surfactant in an arrangement of UASB-type anaerobic reactors in two stages; with a hydraulic retention time of 0.25 days in the acidogenic reactor in which two surfactant concentration rates were evaluated: 200 ± 0.49 mg/L with an organic load of 5.92 ± 0.5 KgCOD/m3.d (experiments II, III and V) and 300 ± 0.05 mg/L with organic loading. of 6.8 ± 0.11 KgCOD/m3.d (experiment VI) and of one day, in the methanogenic reactor. The results showed that the acidogenic reactor was able to eliminate COD by 42.24% and biodegrade LAS by 86.65% (experiment V). At 300 mg/L (experiment VI), these values are reduced to 36.6 and 55% respectively. For its part, the methanogenic reactor fed with the effluent of the acidogenic reactor (experiment V) with a lower concentration of COD, LAS and organic load, showed a COD removal and LAS biodegradation efficiency of 83.17 and 13.85% respectively.

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乳糖作为辅助底物对厌氧消化阴离子表面活性剂 "LAS "生物降解的影响
烷基苯磺酸钠(LAS)因其优异的洗涤性能和低廉的成本,是生产商用洗涤剂中使用最广泛的阴离子表面活性剂。然而,由于其化学成分,它们是高污染产品,如果考虑到其倾倒量和倾倒频率,则会对自然水体造成严重的污染和富营养化问题。此外,长期残留在环境中会对健康和生态系统造成损害,这也是需要立即关注的相关问题。本文介绍了使用乳糖作为辅助底物,在 UASB 型厌氧反应器中分两个阶段对 LAS 表面活性剂进行同步生物降解的结果;在酸性反应器中,水力停留时间为 0.25 天,其中对两种表面活性剂浓度进行了评估:200 ± 0.49 mg/L,有机负荷为 5.92 ± 0.5 KgCOD/m3.d(实验 II、III 和 V);300 ± 0.05 mg/L,有机负荷为 6.8 ± 0.11 KgCOD/m3.d(实验 VI)。结果表明,产酸反应器能够消除 42.24% 的 COD,生物降解 86.65% 的 LAS(实验 V)。当浓度为 300 毫克/升时(实验 VI),这些数值分别降至 36.6%和 55%。甲烷生成反应器的 COD 去除率和 LAS 生物降解率分别为 83.17% 和 13.85%。
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来源期刊
Biocatalysis and agricultural biotechnology
Biocatalysis and agricultural biotechnology Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
7.70
自引率
2.50%
发文量
308
审稿时长
48 days
期刊介绍: Biocatalysis and Agricultural Biotechnology is the official journal of the International Society of Biocatalysis and Agricultural Biotechnology (ISBAB). The journal publishes high quality articles especially in the science and technology of biocatalysis, bioprocesses, agricultural biotechnology, biomedical biotechnology, and, if appropriate, from other related areas of biotechnology. The journal will publish peer-reviewed basic and applied research papers, authoritative reviews, and feature articles. The scope of the journal encompasses the research, industrial, and commercial aspects of biotechnology, including the areas of: biocatalysis; bioprocesses; food and agriculture; genetic engineering; molecular biology; healthcare and pharmaceuticals; biofuels; genomics; nanotechnology; environment and biodiversity; and bioremediation.
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