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SUSTAINABLE CULTIVATION OF OLIVE TREES BY REUSING OLIVE MILL WASTES AFTER EFFECTIVE CO-COMPOSTING TREATMENT PROCESSES

机译:在有效的联合堆肥处理过程之后,通过重复利用橄榄泥废物来可持续培育橄榄树

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摘要

All olives’ treatment processes (olives, olive oil, olive wooden residue) produce liquid and solid wastes, which are considered toxic. The treatment of these wastes by using conventional technologies (aerobic/anaerobic biological treatment, incineration, gasification ect) proved to be neither technically nor cost effective. This fact treats the olive oil production by complete cease due to the serious environmental problems caused. The proposed technology includes the detoxification of wastewater by Fenton oxidation reactions and following their utilization by biological treatment methods. The latter is achieved by the implementation of anaerobic digestion process on the oxidized wastewater and the consequent methane production and by co-composting the oxidized or/and anaerobic digested wastewater with solid wastes (olive mill wooden residue, leaves, branches ect.), leading to the production of a high quality soil conditioner. The biogas produced could be utilized for in situ thermal and electrical energy production. The two biological processes used (anaerobic digestion and composting) are ideal combined, since the anaerobic digested wastewaters are totally used in composting process, while the excess thermal energy produced by biogas utilization can accelerate the aerobic biological processes resulting in a high quality biological fertilizer. The proposed technology is effective and simple to be implemented. Wastewaters derive either from two or three phase olive mill could be treated. This technology can be implemented either in one olive mill scale or in central wastewater treatment plants. The proposed technology can not only effectively face the serious environmental problems caused by olive mill wastewater disposal, but it poses new perspectives in olive trees cultivation and olive oil and its by-products market.
机译:所有橄榄的处理过程(橄榄,橄榄油,橄榄木残留物)都会产生液体和固体废物,这些废物被认为是有毒的。使用常规技术(好氧/厌氧生物处理,焚烧,气化等)处理这些废物被证明在技术上和成本上均无济于事。由于造成严重的环境问题,这一事实彻底停止了橄榄油的生产。拟议的技术包括通过芬顿氧化反应对废水进行解毒,以及通过生物处理方法对其进行利用。后者是通过对氧化后的废水实施厌氧消化过程和随后的甲烷生产,以及将氧化或/和厌氧消化后的废水与固体废物(橄榄木残渣,树叶,树枝等)共混在一起来实现的。生产高质量的土壤改良剂。产生的沼气可用于原位热能和电能生产。厌氧消化和堆肥这两个生物过程是理想的结合,因为厌氧消化的废水完全用于堆肥过程,而沼气利用产生的多余热能可以加速需氧生物过程,从而产生高质量的生物肥料。所提出的技术是有效的并且易于实施。来自两相或三相橄榄磨的废水可以进行处理。可以在一个橄榄工厂规模或中央废水处理厂中实施该技术。所提出的技术不仅可以有效地解决因橄榄厂废水处理而造成的严重环境问题,而且为橄榄树种植,橄榄油及其副产品市场带来了新的前景。

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