Khan Shahbaz, Irshad Sohail, Mehmood Kashf, Hasnain Zuhair, Nawaz Muhammad, Rais Afroz, Gul Safia, Wahid Muhammad Ashfaq, Hashem Abeer, Abd Allah Elsayed Fathi, Ibrar Danish
Colorado Water Center, Colorado State University, Fort Collins, CO 80523, USA.
Department of Agronomy, MNS-University of Agriculture, Multan 64200, Pakistan.
Plants (Basel). 2024 Jan 8;13(2):166. doi: 10.3390/plants13020166.
Rapid urban expansion and a booming population are placing immense pressure on our agricultural systems, leading to detrimental impacts on soil fertility and overall health. Due to the extensive use of agrochemicals in agriculture, the necessity to meet the expanding demand for food has also resulted in unsustainable farming practices. Around the world, biochar, a multipurpose carbonaceous material, is being used to concurrently solve issues with enhancing soil fertility, plant growth, and development under both normal and stressful circumstances. It improves water retention, fosters nutrient absorption, and promotes microbial activity, creating a fertile environment that supports sustainable and resilient agriculture. Additionally, biochar acts as a carbon sink, contributing to long-term carbon sequestration and mitigating climate change impacts. The major benefit of biochar is that it helps the adsorption process with its highly porous structures and different functional groups. Understanding the elements involved in biochar formation that determine its characteristics and adsorptive capacity is necessary to assure the viability of biochar in terms of plant productivity and soil health, particularly biological activity in soil. This paper focuses on the development, composition, and effects of biochar on soil fertility and health, and crop productivity.
快速的城市扩张和不断增长的人口给我们的农业系统带来了巨大压力,对土壤肥力和整体健康产生了不利影响。由于农业中大量使用农用化学品,满足不断增长的粮食需求的必要性也导致了不可持续的耕作方式。在全球范围内,生物炭这种多功能含碳材料正被用于同时解决在正常和压力环境下提高土壤肥力、促进植物生长和发育的问题。它能改善保水性、促进养分吸收并增强微生物活性,营造出有利于可持续和有韧性农业的肥沃环境。此外,生物炭充当碳汇,有助于长期碳固存并减轻气候变化的影响。生物炭的主要优点在于其高度多孔的结构和不同的官能团有助于吸附过程。了解生物炭形成过程中决定其特性和吸附能力的元素,对于确保生物炭在植物生产力和土壤健康(特别是土壤生物活性)方面的可行性至关重要。本文重点关注生物炭的发展、组成及其对土壤肥力和健康以及作物生产力的影响。