在开发下一代环保肥料时,研究人员必须紧跟最新的农业实践、材料和工艺。配制既高效又符合环境可持续性的肥料,需要对日益增长的科学信息进行全面梳理。来自 CAS Content Collection™ 的数据显示,过去五年中,与可持续肥料相关的期刊和专利出版物数量有所增加。这凸显了研究团队在海量信息中寻找所需洞察的挑战。
来源:CAS Content Collection™
CAS SciFinder® 和 CAS Formulus® 可通过提供对科学文献、专利和监管数据庞大数据库的访问权限,并配备行业特定的过滤器和创新的配方设计工具,来简化这一流程。借助 CAS SciFinder Discovery PlatformTM,您可以在一个平台上找到加速文献综述所需的一切资源。
A carbon-rich product derived from organic waste through pyrolysis, biochar has gained significant attention for its ability to improve soil fertility, enhance water retention, and isolate carbon. Biochar has proven effective in reducing the leaching of essential nutrients like phosphorus and potassium, improving crop yield, and minimizing water pollution caused by runoff.3
Organic waste-based fertilizers
Derived from composted manure, plant residues, and food waste, organic waste-based fertilizers recycle organic materials back into the soil, enhancing soil organic matter and microbial activity, leading to healthier and more productive soils.4
Targeted delivery systems
Nano-fertilizers
Nanoscale nutrient delivery allows for more precise and controlled fertilizer release, reducing excess nutrient delivery and surface runoff.5
Slow-release fertilizers
Often coated with sulfur or polymers, slow-release fertilizers are designed to gradually release nutrients over time, aligning better with plant growth cycles, reducing nutrient runoff, and improving plant nutrient use efficiency.3
研究人员可以通过 CAS SciFinder 快速获取材料属性信息。通过与我们全面的材料数据库 CAS REGISTRY® 完全集成,您可以随时随地获取选择合适材料所需的所有材料属性、监管信息和商业来源。
农业的未来取决于可持续实践的开发与应用,包括支持长期土壤健康并减少环境影响的肥料。通过与 CAS 合作获取定制化解决方案,并利用 CAS SciFinder Discovery Platform 和 STN IP Protection Suite 等工具,研究人员和企业能够加速迈向更可持续、更具韧性的农业体系。