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A Spatially Explicit Optimization Model for Agricultural Straw-Based Power Plant Site Selection: A Case Study in Hubei Province, China

机译:基于农业秸秆发电站选址的空间显式优化模型:以湖北省为例

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Using agricultural straw to generate electricity is an effective approach for relieving the pressure of procuring a reliable energy supply and reducing environmental pollution. Because the locations of the power plants have a significant impact on the supply of raw materials and the cost of transportation, it is important to choose reasonable locations for power plants. To solve the problem of straw-based power plant site selection (SPPSS), in this paper, a spatially explicit optimization model is proposed. Compared to the existing research, the present study makes the following major contributions: (1) The agricultural land quality evaluation dataset, combined with the cropping system and theoretical yield information, is used as the basic data to estimate agricultural straw yields, thereby increasing the accuracy of the straw yield and spatial distribution estimates. (2) Geographic information system (GIS) techniques are employed to improve an artificial immune system (AIS), which is an effective and flexible approach for solving optimization problems. The Chinese province of Hubei is selected as the experimental area to evaluate the effectiveness of the proposed model. The experimental results demonstrate that of the 34.89 million tons of agricultural straw produced in Hubei Province each year, 17.45 million tons can be used for electricity generation. The optimization schemes generated by the proposed model are feasible. Our results are expected to provide an important decision-making basis for straw-based power plant (SPP) development planning in Hubei Province.
机译:使用农作物秸秆发电是减轻获得可靠能源供应和减少环境污染的压力的有效方法。由于发电厂的位置对原材料的供应和运输成本有重大影响,因此选择合理的发电厂位置非常重要。为解决秸秆电厂选址问题,提出了空间显式优化模型。与现有研究相比,本研究做出了以下主要贡献:(1)农业土地质量评价数据集结合耕作制度和理论产量信息,作为估算农作物秸秆产量的基础数据,从而提高了农作物产量。秸秆产量的准确性和空间分布估计。 (2)地理信息系统(GIS)技术用于改进人工免疫系统(AIS),这是解决优化问题的一种有效且灵活的方法。选择了湖北省作为实验区域,以评估该模型的有效性。实验结果表明,湖北省每年生产3489万吨农用秸秆,其中1745万吨可用于发电。该模型产生的优化方案是可行的。我们的研究结果有望为湖北省秸秆发电厂的发展规划提供重要的决策依据。

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