生物净化
生物制品
生物炼制
农业
固碳
生产力
环境科学
生物燃料
自然资源经济学
业务
农林复合经营
废物管理
工程类
化学
经济
生态学
生物
宏观经济学
有机化学
二氧化碳
作者
Xiao Fu,Ze Zheng,Zhimin Sha,Hongliang Cao,Qiaoxia Yuan,Hongbo Yu,Qiang Li
标识
DOI:10.1016/j.tibtech.2022.09.013
摘要
Modern agriculture has evolved technological innovations to sustain crop productivity. Recent advances in biorefinery technology use crop residue as feedstock, but this raises carbon sequestration concerns as biorefining utilizes carbon that would otherwise be returned to the soil, thus causing a decline in crop productivity. Furthermore, biorefining generates abundant lignin waste that significantly impedes the efficiency of biorefineries. Valorizing lignin into advanced nanobiotechnologies for agriculture provides a unique opportunity to balance bioeconomy and soil carbon sequestration. Integration of agricultural practices such as utilization of agrochemicals, fertilizers, soil modifiers, and mulching with lignin nanobiotechnologies promotes crop productivity and also enables advanced manufacturing of high-value bioproducts from lignin. Lignin nanobiotechnologies thus represent state-of-the-art innovations to transform both the bioeconomy and sustainable agriculture.
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