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在半连续中试工厂中进行橙皮的厌氧消化:在农业生态系统中进行柑橘废物管理的环保方法。

Anaerobic digestion of orange peel in a semi-continuous pilot plant: An environmentally sound way of citrus waste management in agro-ecosystems.

机构信息

Mediterranea University of Reggio Calabria, Department "Agraria", Località Feo di Vito, I-89122 Reggio Calabria, Italy.

Mediterranea University of Reggio Calabria, Department "Agraria", Località Feo di Vito, I-89122 Reggio Calabria, Italy.

出版信息

Sci Total Environ. 2018 Jul 15;630:401-408. doi: 10.1016/j.scitotenv.2018.02.168. Epub 2018 Feb 24.

Abstract

The management of residues of citrus processing involves economic and environmental problems. In particular, the uncontrolled disposal of citrus processing waste near production sites can have heavy impacts on air, soil, surface water bodies and groundwater. Anaerobic digestion has been proposed as a viable alternative for citrus waste valorisation, if some problems, linked to the biochemical processes, are overcome. Although many experimental tests have studied the inhibitory effects of the high essential oil content of orange peel on biomethanisation processes, fewer experiences have been carried out in continuous or semi-continuous pilot digesters, more similar to the full-scale biogas plants, using real orange peel. This study has evaluated the methane production through anaerobic digestion of industrial orange peel using a pilot plant (84L) with semi-continuous feeding at increasing Organic Loading Rates (OLR) and essential oil (EO) supply rates (EOsr) until the complete process inhibition. Under mesophilic conditions, the highest daily specific methane yield was achieved at OLR of 1.0gL d and EOsr of 47.6mgLd. Partial inhibition of the anaerobic digestion was detected at OLR and EOsr of 1.98gLd and 88.1mgL d, respectively and the process irreversibly stopped when OLR and EOsr reached 2.5g L d and 111.2mgL d, respectively. Under thermophilic conditions, the cumulative methane production (0.12Lg) was about 25% of that under mesophilic conditions (0.46Lg). The thermophilic digestion was completely inhibited at lower OLR (1.98gL d) and EOsr (88.1mgL d) compared to mesophilic conditions. This study confirmed the suitability of anaerobic digestion of orange peel for biomethane production (provided that the right management of the process is set), in view of an environmentally sound way of agricultural residues management in agro-ecosystems.

摘要

柑橘加工残留物的管理涉及经济和环境问题。特别是,在生产现场附近不受控制地处理柑橘加工废物会对空气、土壤、地表水和地下水造成严重影响。如果克服与生化过程相关的一些问题,厌氧消化已被提议作为柑橘废物增值的可行替代方案。尽管许多实验测试已经研究了高含油率的橙皮对生物甲烷化过程的抑制作用,但在连续或半连续中试消化器中进行的经验较少,这些消化器更类似于使用真实橙皮的全规模沼气厂。本研究通过使用带有半连续进料的中试工厂(84L),在增加有机负荷率(OLR)和精油(EO)供应率(EOsr)的情况下评估了工业橙皮的厌氧消化过程中的甲烷产量,直到完全抑制该过程。在中温条件下,在 OLR 为 1.0gL d 和 EOsr 为 47.6mgLd 的条件下,获得了最高的日特定甲烷产率。在 OLR 和 EOsr 分别为 1.98gLd 和 88.1mgL d 时,检测到厌氧消化的部分抑制,当 OLR 和 EOsr 分别达到 2.5g L d 和 111.2mgL d 时,该过程不可逆地停止。在高温条件下,累积甲烷产量(0.12Lg)约为中温条件下(0.46Lg)的 25%。与中温条件相比,较低的 OLR(1.98gL d)和 EOsr(88.1mgL d)使高温消化完全抑制。本研究证实了在环境友好的农业生态系统中,对农业残留物进行管理的情况下,橙皮的厌氧消化适合用于生物甲烷生产(只要对该过程进行正确的管理)。

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