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Boosting circular economy and closing the loop in agriculture: Case study of a small-scale pyrolysis-biochar based system integrated in an olive farm in symbiosis with an olive mill

机译:促进循环经济并封闭农业循环:基于小型热解-生物炭系统的案例研究,该系统集成在与橄榄磨共生的橄榄农场中

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Carbon sequestration and soil quality improvement coupled with bio-energy generation are important issues to be addressed in agriculture by valorising crop residues and by-products. The aim of this work is to study a pyrolysis-biochar system applied to an olive farm in symbiosis with a 2-phase olive mill. The set-up of a closedloop productive system is proposed. The results have shown that the valorization of 70.0t of solid and semi-solid wastes issued from both 10 ha olive grove and milling process can be converted via pyrolysis into 13, 11, 12t of liquid fuel, biochar and gas fuel, respectively. The liquid and gas fuels can fulfill the olive milling energy needs and produce an electricity surplus of ~13.00 MW he1 resulting in an extra income (4000?) if sold to the grid. In the case of solar drying of the raw material,~30,00 MW hei could provide 8900? per year. A SWOT analysis shows that pyro lysis of agriresidues targeting biochar can fulfill the aim of closing the loop in agriculture and circular economy objectives.
机译:碳固存和土壤质量的改善以及生物能源的产生,是农业中要重视的农作物残留物和副产品的重要问题。这项工作的目的是研究一种热解-生物炭系统,该系统应用于两相橄榄磨共生的橄榄农场。提出了闭环生产系统的建立。结果表明,从10公顷橄榄树和碾磨过程中产生的70.0吨固体废物和半固体废物的均价可以通过热解分别转化为13、11、12吨液体燃料,生物炭和气体燃料。液体和气体燃料可以满足橄榄碾磨的能源需求,并产生约13.00 MW he1的电力过剩,如果出售给电网,则可以增加收入(4000?)。如果将原材料进行太阳能干燥,那么约30,00 MW hei可提供8900?每年。 SWOT分析表明,针对生物炭的农残的热解可以实现封闭农业和循环经济目标的目的。

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