全プロセス管理が排出量取引を通じた中国の炭素排出と汚染の相乗的削減を促進する
Full-process control enables emissions trading to promote synergistic reductions in carbon emissions and pollution in China (原題)
Guangcheng Ma, Liming Ge, Xiangjie Xie
🤖 gxceed AI 要約
日本語
本論文は中国の排出量取引制度(ETS)が炭素排出と汚染物質の同時削減に与える影響を全プロセスで評価した。ETS導入により炭素排出強度、SO2強度、PM2.5、工業廃水が減少し、固形廃棄物利用率と相乗発展指数が向上する。ETS参加は相乗発展指数を約3.9%改善し、炭素強度を約3.9%低減する。政策相乗、データ要素配分、グリーン技術収斂がメカニズムとして機能する。
English
This study evaluates how China's emissions trading scheme (ETS) affects integrated carbon and pollution reduction across the full process. ETS adoption lowers carbon intensity, industrial SO2 intensity, PM2.5, and wastewater discharge while raising solid-waste utilization and a synergistic development index. ETS participation improves the synergy index by ~3.9% and cuts carbon intensity by ~3.9%, operating via policy synergy, data-element allocation, and green-technology convergence.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
中国ETSの炭素・汚染同時削減効果を定量的に示す研究であり、日本ではGXリーグやカーボンプライシング議論、SSBJ開示と排出量取引制度設計の参考になる。特に政策相乗効果のメカニズムは日本制度設計に示唆を与える。
In the global GX context
Provides quantitative evidence that carbon markets can deliver co-benefits for air quality and pollution control, relevant to global debates on carbon pricing design, just transition, and integrated climate-air policy under TCFD/ISSB disclosure regimes.
👥 読者別の含意
🔬研究者:中国ETSの政策効果を全プロセスで定量化し、炭素・汚染同時削減のメカニズムを実証した点が参考になる。
🏢実務担当者:排出量取引参加が炭素強度と汚染物質を同時に削減し、コンプライアンスとコスト最適化に寄与する可能性を示す。
🏛政策担当者:ETS設計において政策相乗、データ配分、技術収斂を考慮することで炭素・汚染の同時削減が促進される点を政策立案に活かせる。
📄 Abstract(原文)
This study examines the entire process of carbon and pollution reduction and assesses the effects of the emissions trading scheme (ETS) on the integrated outcomes of carbon and pollution reduction. The findings indicate that the introduction of the ETS not only leads to a decrease in carbon emission intensity, industrial SO 2 intensity, PM 2.5 levels, and industrial wastewater discharge, but also enhances the overall utilization of industrial solid waste and the synergistic development index for carbon and pollution reduction. Specifically, ETS participation increases the synergistic development index by 0.034, representing approximately a 3.9% improvement relative to the sample mean, and reduces the logarithm of carbon emission intensity by 0.040, corresponding to roughly a 3.9% decline in carbon intensity. This result suggests that the ETS can reduce various pollutant emissions directly and achieve overall synergy across the entire pollution emission system. Furthermore, this paper conducts endogeneity tests and a series of robustness checks to verify the stability of the benchmark results. The mechanism analysis reveals that the ETS exerts its synergistic effect through dual-pillar policy synergy, data element resource allocation, and green technical difference convergence. The results from the heterogeneity analysis indicate that the ETS has a stronger synergistic effect on carbon and pollution reduction in resource-rich and energy-supplying cities. For cities with varying levels of marketization, ETS’s role in enhancing the synergy between carbon and pollution reduction is also different.
🔗 Provenance — このレコードを発見したソース
- primary_source https://doi.org/10.1007/s43621-026-04769-3first seen 2026-09-27 23:54:07
- openalex https://doi.org/10.1007/s43621-026-04769-3first seen 2026-09-28 05:19:04
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