浙江工业企业苯酚处理降碳排放评价数据
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通过企业苯酚处理,减少化石能源消耗,提高固碳和碳捕捉技术水平,降低能耗,清洁环保,不产生二次污染,实现了近零排放和废弃物的循环利用。为同行业企业苯酚处理量转化碳排放量提供数据支持。1、数据来源:数据来源于本企业每日入库苯酚,以及处理苯酚的数据 2、废物处理量相关指标系数 :a=Y/X。Y:处理后吨数;X:入库吨计量。采用一元线性回归模型,其中Y是目标变量,X是输入特征,而a是模型需要学习的参数。通过以往采集到的数据,对模型进行训练得到a的值为0.98,使得Y尽可能准确地反映出X的实际影响。3、企业降低二氧化碳排放量指标系数:a=Y/X。Y:降低二氧化碳排放量;X:处理后吨数.本系数采用一元线性回归模型,其中Y是目标变量,X是输入特征,而a是模型需要学习的参数。通过以往采集到的数据,对模型进行训练得到a的值为0.4,使得Y尽可能准确地反映出X的实际影响。降低二氧化碳排放量=0.4*处理后吨数。4、通过对企业危险废弃物的高效处理,减少化石能源消耗,提高固碳和碳捕捉技术水平,降低能耗,实现碳排放达标。
This dataset provides data support for peer enterprises to convert their phenol treatment volume into carbon emissions. The implementation of enterprise-level phenol treatment reduces fossil energy consumption, upgrades carbon sequestration and carbon capture technologies, lowers energy consumption, and achieves clean, environmentally friendly operations with no secondary pollution, realizing near-zero emissions and waste recycling. 1. Data Source: The data is collected from the daily inbound phenol volume and phenol treatment data of this enterprise. 2. Waste treatment volume-related index coefficient: a = Y/X, where Y represents the post-treatment tonnage and X represents the inbound phenol tonnage measurement. A univariate linear regression model is adopted, with Y as the target variable, X as the input feature, and a as the model parameter to be learned. Based on previously collected data, the model is trained to obtain a value of 0.98, enabling Y to accurately reflect the actual impact of X. 3. Enterprise carbon dioxide emission reduction index coefficient: a = Y/X, where Y represents the reduced carbon dioxide emission amount and X represents the post-treatment tonnage. This coefficient also adopts a univariate linear regression model, with Y as the target variable, X as the input feature, and a as the model parameter to be learned. Based on previously collected data, the model is trained to obtain a value of 0.4, enabling Y to accurately reflect the actual impact of X. The reduced carbon dioxide emission amount = 0.4 * post-treatment tonnage. 4. Efficient treatment of the enterprise's hazardous wastes reduces fossil energy consumption, upgrades carbon sequestration and carbon capture technologies, lowers energy consumption, and helps meet carbon emission standards.




