China has developed its own “CDM”, i.e., the China Certified Emission Reduction (CCER) scheme. International carbon organizations and individuals are interested in the CCER mechanism. We searched “CCER” in the web of science and, unfortunately, found no previously published studies that provide a detailed description of CCER, especially CCER forestry projects. This paper reviews the history, development, and current status of the CCER forestry projects. We introduced the components of the CCER program, including the CCER methodology system, the CCER registration system, the CCER trading system, and DOEs. In addition, we further introduced the development process, including project design, project validation and registration, project implementation, project monitoring, emission reduction accounting, emission reduction verification, and registration. Recommendations are proposed, including expanding methodologies, incorporating advanced technologies, optimizing monitoring frameworks, and pursuing international collaboration. This study provides policy and technical guidance for the sustainable development of China’s forest carbon market.
All-solid-state batteries (ASSBs) using solid-state electrolytes, replacing flammable liquid electrolytes, are considered one of the most promising next-generation electrochemical energy storage devices because of their improved, inherent safety and energy density. A family of solid electrolytes incorporating halogens has attracted attention because of their potentially high ionic conductivity, good deformability and wide electrochemical windows. Although progress has been made for halogen-containing solid electrolytes (HSEs) in ASSBs, challenges in the preparations, characterizations and low-cost industrial scalability remain. In this Review, we focus on the development of halide battery chemistry, the preparation, modification and properties of HSEs, and issues with HSEs in ASSBs. The chemical action of halogen and ion transport mechanisms are discussed. Moreover, the main challenges and future development directions of halide-based ASSBs are discussed to pave the way for practical applications of HSEs for next-generation rechargeable batteries.
With the Clean Energy for all Europeans legislative package, the European Union (EU) aimed to put consumers “at the heart” of EU energy policy. The recast of the Renewable Energy Directive (RED II) acknowledged the importance of energy communities for the energy transition and introduced new provisions for renewable energy communities (RECs), empowering them to participate in the energy market. This article analyses the progress of transposing and implementing key provisions of the RED II that apply to RECs in nine European countries and focuses on timeliness and completeness of transposition. It comprises both a qualitative and quantitative assessment covering (1) the definition, rights, and market activities of RECs; (2) key elements of enabling frameworks; and (3) consideration of REC specificities in support schemes for renewable energy. The analysis shows considerable variation in transposition performance between the analysed countries. The authors investigate the reasons for this variation and relate them to findings of European implementation and compliance research. Key factors identified include actor-related and capacity-related factors, institutional fit, and characteristics of the RED II itself. Future research in this field needs multi-faceted avenues and should pay particular attention to the influence of national governments and incumbents, not only in the transposition process, but already in upstream policy formulation at the European level.