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Quantifying life cycle inventories of agricultural field operations by considering different operational parameters

机译:通过考虑不同的操作参数来量化农田作业的生命周期清单

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PurposeThe ability to estimate fuel and lubricant consumption as well as depreciated weight of agricultural machinery used for field operations is very useful for energy and environmental analyses. In this study, life cycle inventory data of agricultural field operations were established by considering different parameters of such operations.MethodsAgricultural operations considered in this study include tillage, cultivation, planting, harvesting and post-harvest operations. For these operations, the fuel and lubricant consumption as well as depreciated weight of tractors, combine harvesters and agricultural implements was estimated by considering different operational parameters such as tractor power, field condition, depth of operation, soil condition, tractor type, operational capacity of machine, width of operation and speed. Technical standards were used to estimate different types of power required for most agricultural operations (drawbar power, rotary power and motion power). The standards were then used to evaluate the variability of the fuel and lubricant consumption as well as depreciated weight of the implements by varying the aforementioned parameters.Results and discussionThe results were compared to those that can be calculated with other approaches for life cycle inventory analysis of agricultural operations. Such comparison indicates that by using different parameters, representing the diverse local conditions of different field operations, a great variability of the results is obtained. For instance, diesel fuel consumption of tillage operations ranges from 12.6 to 76.0Lha(-1), with an average of 34.15Lha(-1) and standard deviation of 11.7Lha(-1). Such representativeness of the different conditions of each field operation cannot be modelled with other tools or via the use of standard LCI datasheets.ConclusionsThe final result of this study is a novel approach for the life cycle inventory analysis of agricultural operations, in terms of fuel and lubricant consumption and of depreciated weight of the machines, which are estimated by simply selecting the operational parameters which best represent the effect of local conditions.
机译:目的估计燃料和润滑剂消耗以及用于现场作业的农用机械折旧重量的能力对于能源和环境分析非常有用。本研究通过考虑农田作业的不同参数来建立农田作业的生命周期清单数据。方法本研究中考虑的农业作业包括耕种,耕种,种植,收获和收获后作业。对于这些操作,通过考虑不同的操作参数(例如拖拉机功率,田间条件,操作深度,土壤条件,拖拉机类型,拖拉机的操作能力)来估算拖拉机,联合收割机和农具的燃料和润滑剂消耗以及折旧的重量。机器,操作宽度和速度。技术标准被用来估算大多数农业作业所需的不同类型的动力(牵引力,旋转动力和运动动力)。然后使用标准通过更改上述参数来评估燃油和润滑油消耗量以及工具折旧重量的可变性。结果与讨论将结果与可以通过其他方法计算的生命周期库存分析进行比较农业作业。这样的比较表明,通过使用代表不同现场操作的不同局部条件的不同参数,可以获得很大的结果差异。例如,耕作操作的柴油消耗范围为12.6至76.0Lha(-1),平均为34.15Lha(-1),标准偏差为11.7Lha(-1)。不能使用其他工具或通过使用标准LCI数据表来模拟每种现场操作的不同条件的代表性。结论本研究的最终结果是一种新颖方法,可用于农业操作的生命周期清单分析,包括燃料和只需简单地选择最能代表当地条件影响的运行参数即可估算出机器的润滑油消耗和折旧的重量。

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