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Expanded algal cultivation can reverse key planetary boundary transgressions

机译:扩大的藻类种植可以逆转关键的行星边界

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摘要

Humanity is degrading multiple ecosystem services, potentially irreversibly. Two of the most important human impacts are excess agricultural nutrient loading in our fresh and estuarine waters and excess carbon dioxide in our oceans and atmosphere. Large-scale global intervention is required to slow, halt, and eventually reverse these stresses. Cultivating attached polyculture algae within controlled open-field photobioreactors is a practical technique for exploiting the ubiquity and high primary productivity of algae to capture and recycle the pollutants driving humanity into unsafe regimes of biogeochemical cycling, ocean acidification, and global warming. Expanded globally and appropriately distributed, algal cultivation is capable of removing excess nutrients from global environments, while additionally sequestering appreciable excess carbon. While obviously a major capital and operational investment, such a project is comparable in magnitude to the construction and maintenance of the global road transportation network. Beyond direct amelioration of critical threats, expanded algal cultivation would produce a major new commodity flow of biomass, potentially useful either as a valuable organic commodity itself, or used to reduce the scale of the problem by improving soils, slowing or reversing the loss of arable land. A 100 year project to expand algal cultivation to completely recycle excess global agricultural N and P would, when fully operational, require gross global expenses no greater than $2.3 × 1012 yr−1, (3.0% of the 2016 global domestic product) and less than 1.9 × 107 ha (4.7 × 107 ac), 0.38% of the land area used globally to grow food. The biomass generated embodies renewable energy equivalent to 2.8% of global primary energy production.
机译:人类正在潜在地不可逆转地破坏多种生态系统服务。对人类最重要的两个影响是淡水和河口水中过量的农业养分含量,以及海洋和大气中过量的二氧化碳。需要大规模的全球干预来减缓,停止并最终扭转这些压力。在可控的开放式光生物反应器中培养附着的混养藻类是一种实用技术,可利用藻类的普遍性和高初级生产力来捕获和回收将人类带入生物地球化学循环,海洋酸化和全球变暖的不安全状态的污染物。藻类栽培在全球范围内进行了适当的分配,能够从全球环境中去除多余的养分,同时还能隔离大量的过量碳。尽管显然是一项重大的资本和运营投资,但该项目的规模可与全球道路运输网络的建设和维护相媲美。除了直接缓解关键威胁外,扩大藻类耕作还将产生大量新的生物量商品流,既有可能用作有价值的有机商品本身,又可以通过改善土壤,减缓或逆转耕地流失而减少问题的规模。土地。一个为期100年的扩大藻类种植以完全回收全球过量农业N和P的项目,如果全面投入运营,将需要不超过$ 2.3×10 12 yr -1 ,(占2016年全球国内生产总值的3.0%)且小于1.9×10 7 公顷(4.7×10 7 ac),占全球使用土地的0.38%种菜产生的生物量体现了可再生能源,相当于全球一次能源产量的2.8%。

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