厨余垃圾,处理项目,碳排放,核算方法 ," /> 厨余垃圾,处理项目,碳排放,核算方法 ,"/> food waste,treatment project,carbon emissions,accounting method ,"/> 典型厨余垃圾资源化处理项目碳排放分析

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典型厨余垃圾资源化处理项目碳排放分析

  

  1. 1.深圳市城管宣教与发展研究中心;2.清华大学深圳国际研究生院

Carbon Emission Analysis of Typical Food Waste Resource Recovery Projects

  1. 1.Shenzhen urban management Education and development research Center;2.Tsinghua University Shenzhen International Graduate School

摘要:

厨余垃圾处理新技术相继出现并得到应用,其碳排放研究仍较为缺乏。为核算厨余垃圾处理的碳排放,该研究依据我国首个相关地方标准《厨余垃圾处理项目碳排放核算指南》,对直接混合焚烧、三相分离协同焚烧、厌氧消化、喂养黑水虻、发酵产酸五种处理方式的典型项目进行了碳排放分析,涵盖了三个范围和碳补偿部分。研究结果表明,五个项目的净碳排放量(以CO2当量计)由低到高依次为厌氧消化(-90.82 kgCO2/tFW)、发酵产酸(-81.10 kgCO2/tFW)、三相分离协同焚烧(-80.98 kgCO2/tFW)、喂养黑水虻(-41.83 kgCO2/tFW)、直接混合焚烧(-3.01 kgCO2/tFW)。范围一碳排放在0~52.43 kgCO2/tFW,主要源于厨余及废水、废渣处理的直接排放。范围二碳排放在19.32~67.17 kgCO2/tFW,主要源于厨余及废水处理的电耗。范围三碳排放在2.23~7.21 kgCO2/tFW,主要源于药剂消耗。碳补偿在-81.08~-185.75 kgCO2/tFW,源于输出电力(-123.75~-81.08 kgCO2/tFW)、生物柴油(-62 kgCO2/tFW)、生物碳源(-40.66 kgCO2/tFW)、有机肥料(-34.61kgCO2/tFW)、饲料原料(-19.80 kgCO2/tFW)。可通过提高气体控制水平、优化能源结构、提高资源化产物产率等措施实现技术的低碳发展。

关键词: 厨余垃圾')">

厨余垃圾, 处理项目, 碳排放, 核算方法

Abstract:

Novel food waste treatment technologies have been successively developed and implemented, yet corresponding carbon emission studies remain insufficient. To quantify the carbon emission of food waste treatment, this research adopts China's first local standard Guidelines for Carbon Emission Accounting for Food Waste Treatment Projects to conduct a comprehensive carbon emission analysis. Five representative treatment approaches were evaluated, including Direct incineration with other waste, Incineration after Tri-phase separation, Anaerobic digestion, Black soldier fly larvae rearing, Fermentation to Acid. The assessment encompassed Scope 1-3 emissions and carbon offset components. On the whole, net carbon emissions (in CO2 equivalent) demonstrate low levels. Anaerobic digestion had the lowest carbon emission of 90.82 kg CO2-eq/t, followed by Fermentation to Acid (-81.10 kgCO2/tFW), Incineration after Tri-phase separation (-80.98 kgCO2/tFW), Black soldier fly rearing (-41.83 kgCO2/tFW), and Direct co-incineration (-3.01 kgCO2/tFW). Carbon emission of Scope 1 (0-52.43 kgCO2/tFW) primarily attributes to direct emissions from waste processing and byproduct treatment. Carbon emission of Scope 2 (19.32-67.17 kgCO2/tFW) primarily attributes to Indirect emissions from electricity consumption. Carbon emission of Scope 3 (2.23-7.21 kgCO2/tFW) primarily attributes to chemical inputs. Carbon Offsets (-185.75-81.08 kgCO2/tFW) derives from power generation (-123.75~-81.08 kgCO2/tFW), biodiesel production (-62 kgCO2/tFW), bio-based carbon sources (-40.66 kgCO2/tFW), organic fertilizer (-34.61 kgCO2/tFW), feedstock materials (-19.80 kgCO2/tFW). Technical recommendations for low-carbon development include enhancing gas control systems, optimizing energy mix, and improving resource recovery efficiency.

Key words: food waste')">

food waste, treatment project, carbon emissions, accounting method

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