| 注册
首页|期刊导航|水力发电|"双碳"目标下可再生能源项目用地用海复合利用实施路径研究

"双碳"目标下可再生能源项目用地用海复合利用实施路径研究

余坤 邹其会 黄谨 郭瑾瑜 韩燕

水力发电2026,Vol.52Issue(5):25-30,6.
水力发电2026,Vol.52Issue(5):25-30,6.

"双碳"目标下可再生能源项目用地用海复合利用实施路径研究

Implementation Path of Composite Land and Sea Use for Renewable Energy Projects under the"Dual Carbon"Target

余坤 1邹其会 2黄谨 1郭瑾瑜 1韩燕1

作者信息

  • 1. 水电水利规划设计总院,北京 100120
  • 2. 中国电建集团华东勘测设计研究院有限公司,浙江 杭州 311122
  • 折叠

摘要

Abstract

Against the strategic backdrop of the coordinated advancement of"Dual carbon"target and the high-quality development of economy and society,exploring the scientific and rational utilization paths of land and marine resources for renewable energy projects is not only a key driver for promoting the high-quality development of renewable energy industry,but also an important support for helping the"Dual carbon"target be achieved as scheduled,thus possessing significant practical significance and strategic value.Based on the domestic practice of renewable energy development,this paper takes typical engineering cases as the empirical foundation and combines the relevant policies and regulations on land and sea use issued by the state,to systematically sort out and analyze the diversified composite utilization models for cultivated land,oceans,forestry,grasslands,rivers and lakes,and other construction lands in current process of renewable energy development.On this basis,this paper deeply examines the core problems faced by current composite utilization projects in practice,and puts forward corresponding implementation path suggestions in a targeted manner,to provide theoretical reference and practical guidance for the standardized and efficient development of land and sea composite utilization in subsequent renewable energy projects.

关键词

可再生能源/用地/用海/复合利用/实施路径

Key words

renewable energy/land use/sea use/composite utilization/implementation path

分类

管理科学

引用本文复制引用

余坤,邹其会,黄谨,郭瑾瑜,韩燕.."双碳"目标下可再生能源项目用地用海复合利用实施路径研究[J].水力发电,2026,52(5):25-30,6.

基金项目

水电水利规划设计总院有限公司科研项目"双碳目标下可再生能源用地用海趋势及保障研究"(ZS-KJSK-20240010) (ZS-KJSK-20240010)

水力发电

0559-9342

访问量0
|
下载量0
段落导航相关论文