College of Forestry, Henan Agricultural University, Zhengzhou, China.
College of Forestry, Henan Agricultural University, Zhengzhou, China.
Bioresour Technol. 2021 Mar;324:124686. doi: 10.1016/j.biortech.2021.124686. Epub 2021 Jan 9.
Hydrothermal carbonization (HTC), as one of thermal conversion techniques, shows promising commercial potential for hydrochar production from wet biowaste. This technique was re-discovered and regraded as artificial coalification to mimic natural process. In recent years, researchers concern more about hydrochar obtained from HTC, since large amount of organic waste including sludge, algae, food waste, manure etc. are generated with high moisture, which can be directly used as reaction medium, and hydrochar has high carbon density and energy retention. With this regard, application of hydrochar as biofuel is a renewable and sustainable way for biowaste recycling. In this review, HTC process and pathways about hydrochar formation from (N-free/N-rich biowaste), carbon-skeleton structure, critical elements on clean properties, and hydrochar pelletization for biofuel production were presented. Potential applications and challenges for HTC as green and sustainable way were presented, which will provide prospect for hydrochar as clean and renewable biofuel.
水热碳化(HTC)作为一种热转化技术,在从湿生物废物中生产水炭方面显示出有希望的商业潜力。该技术被重新发现并重新归类为人工煤化,以模拟自然过程。近年来,研究人员更加关注从 HTC 获得的水炭,因为大量的有机废物包括污泥、藻类、食物废物、粪便等,具有高水分含量,可以直接用作反应介质,并且水炭具有高密度碳和能量保留。在这方面,水炭作为生物燃料的应用是生物废物回收的可再生和可持续方式。在这篇综述中,介绍了(无氮/富氮生物废物)水炭形成的 HTC 工艺和途径、碳骨架结构、清洁特性的关键元素以及用于生物燃料生产的水炭颗粒化。介绍了 HTC 作为绿色和可持续方法的潜在应用和挑战,这将为水炭作为清洁和可再生生物燃料提供前景。