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储能系统技术 储能系统 工商业光伏 ★ 5.0

生物添加剂在水合物基能源技术中的研究进展:应用场景、分类、功能及作用机制

Research progress on bio-additives in hydrate-based energy technologies: Application scenarios, classification, functions and mechanisms

作者 Kang Tan · Jingyu Lv · Zhichao Yin · Manli Ren · Fei Wang · Mengting Sun
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 394 卷
技术分类 储能系统技术
技术标签 储能系统 工商业光伏
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Reviews cutting-edge research on bio-based additives for gas hydrate formation.
语言:

中文摘要

摘要 气体水合物技术在天然气储存与运输以及气体分离等领域具有广阔的应用前景。然而,水合物生成动力学缓慢的问题限制了该技术在上述场景中的工业化应用,亟需加以改善。与此同时,在海上油气开采与输送过程中,水合物的形成可能引发管道堵塞,必须加以抑制以保障运行安全。因此,在不同的水合物基能源技术中,通常采用具有促进或抑制水合物生成作用的适当添加剂,以调控水合物的生成动力学,实现促进或抑制的目的。目前,大多数添加剂为不可再生且难以生物降解的石油化工衍生物,会对环境造成严重污染,并对生态系统构成威胁。相比之下,生物添加剂来源于生物质,因而来源广泛、可再生、无毒且易于生物降解,更加环境友好,有望作为绿色调节剂用于气体水合物生成过程,具有巨大的应用潜力。本文综述了用于调控气体水合物生成动力学的生物添加剂,列举了四种不同应用场景下的生物添加剂类型,评估了其对水合物生成动力学的影响,分析了其功能作用机制,评价了其应用潜力,并进一步探讨和展望了未来的研究方向。

English Abstract

Abstract Gas hydrate technology has broad application prospects in fields of natural gas storage & transportation and gas separation. However, the slow formation kinetics restrict the industrial applications of gas hydrate technology in these scenarios, which need to be improved. At the same time, hydrates can cause blockage in offshore oil-gas exploitation & transportation, which need to be avoided to guarantee security. Accordingly, proper additives, possessing with promoting or inhibiting effects on hydrate formation, have been employed for regulating hydrate formation kinetics in different hydrate-based energy technologies, for achieving the promotion or inhibition purpose. Currently, the majority of additives are non-renewable and non-biodegradable petrochemical derivatives, which cause severe pollutions on environment and pose threats on ecosystem. Comparatively, bio-additives are derived from biomass, and thereby are easily available, renewable, nontoxic and easily biodegradable, which are more eco-friendly and reasonably hold great potentials for serving as green regulators for gas hydrate formation process. This review aims at bio-additives for regulating gas hydrate formation kinetics, lists the types of bio-additives for four different application scenarios, evaluates their effects on hydrate formation kinetics, analyzes their function mechanisms, assesses their application potentials, and furthermore, discusses and prospects the future research directions.
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SunView 深度解读

该气体水合物动力学调控技术虽聚焦天然气储运领域,但其相变储能机理对阳光电源储能系统具有借鉴意义。生物添加剂的环保可再生特性与公司ESS绿色发展理念契合,其促进/抑制相变的动力学调控思路可启发PowerTitan液冷系统中相变材料(PCM)的优化设计。特别是生物基添加剂在传热传质过程的调控机制,可为ST系列PCS热管理系统提供新型环保型导热介质研发方向,助力工商业储能系统在高温环境下的安全性与循环寿命提升。