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场地修复异位热脱附碳排放核算、优化与预测

陈汐昂 王文兵 李瑞飞 李春阳 范淇峰 张梦 相明辉 李辉

环境工程学报2024,Vol.18Issue(4):1073-1082,10.
环境工程学报2024,Vol.18Issue(4):1073-1082,10.DOI:10.12030/j.cjee.202310085

场地修复异位热脱附碳排放核算、优化与预测

Accounting,optimization and prediction of carbon emission in ex-situ thermal desorption for site remediation

陈汐昂 1王文兵 1李瑞飞 1李春阳 1范淇峰 1张梦 1相明辉 1李辉1

作者信息

  • 1. 上海大学环境与化学工程学院,上海 200444
  • 折叠

摘要

Abstract

Carbon emissions from site remediation have been steadily increasing in tandem with market development,necessitating urgent implementation of carbon reduction measures to alleviate the pressure on China's pursuit of its"double carbon"goal.This study focused on the ex-situ thermal desorption remediation technology for carbon emission accounting,carbon reduction synergistic optimization and potential prediction.The carbon emission in the process of ex-situ thermal desorption was quantitatively analyzed in the field of organic contaminated soil remediation.Based on the life cycle assessment theory,this study also explored variations in carbon emission accounting using different factors from domestic and foreign institutions(IPCC,EP A,EEA,UK,CPC,etc.).It investigated differences in carbon emission accounting and the potential for carbon emission reduction under strategies such as technology optimization,clean power energy optimization(from thermal power to wind power,solar energy),and energy type adjustment(from fossil energy to electricity).Additionally,this study used China's 2000-2022 power grid energy structure data to construct a Prophet time series prediction model to predict and analyze carbon emissions from ex-situ thermal desorption technology for organic contaminated sites in China in the next five years(2023-2028).Therefore,this study is expected to improve the accuracy of carbon emission accounting for thermal desorption in site remediation,expand and enrich the path of carbon reduction synergies,and provide theoretical basis for carbon emission prediction and carbon emission reduction potential prediction methods under dynamic changes.

关键词

异位热脱附/碳排放核算/技术优化/碳减排潜力/碳排放预测

Key words

ex-situ thermal desorption/carbon emission accounting/technology optimization/carbon reduction potential/carbon emission prediction

分类

资源环境

引用本文复制引用

陈汐昂,王文兵,李瑞飞,李春阳,范淇峰,张梦,相明辉,李辉..场地修复异位热脱附碳排放核算、优化与预测[J].环境工程学报,2024,18(4):1073-1082,10.

基金项目

国家重点研发计划资助项目(2020YFC1808200,2019YFC1805800) (2020YFC1808200,2019YFC1805800)

环境工程学报

OA北大核心CSTPCD

1673-9108

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