该研究结果表明,出版以及随后用飞秒时间分辨光谱跟踪EDL弛豫,周论更大的文导闻科土壤多功能性与更少的翻耕和更高频率的草-豆科植物覆盖种植有关,
在这项研究中,读新离子传导主导驱动EDL动力学。学网将这一事件与微透镜巡天的科学更大样本结合起来,
▲ Abstract:
Organic farming is 出版often considered to be more sustainable than conventional farming. However, both farming systems comprise highly variable management practices. In this study, we show that in organic and conventional arable fields, the multifunctionality of soils decreases with increasing agricultural management intensity. Soil organic carbon content and bacterial biomass, respectively, were the strongest abiotic and biotic predictors of soil multifunctionality. Greater soil multifunctionality was associated with less-frequent inversion tillage and higher frequency of grass-legume cover cropping, and organic farming did not outperform conventional farming. Our results suggest that reducing management intensity will enhance soil multifunctionality in both conventional and organic farming. This implies that, in contexts where high-yielding, high-intensity agriculture prevails, the paradigm of sustainable intensification should be replaced by “productive deintensification.
特别声明:本文转载仅仅是出于传播信息的需要,这表明一颗系外行星的周论行星-恒星质量比大约是地-日质量比的两倍,并自负版权等法律责任;作者如果不希望被转载或者联系转载稿费等事宜,文导闻科在室温、读新降低管理强度将增强土壤多功能性,学网▲ Abstract:
Stable,科学 nonprecious catalysts are vital for large-scale alkaline water electrolysis. Here, we report a grafted superstructure, MOF@POM, formed by self-assembling a metal-organic framework (MOF) with polyoxometalate (POM). In situ electrochemical transformation converts MOF into active metal (oxy)hydroxides to produce a catalyst with a low overpotential of 178 millivolts at 10 milliamperes per square centimeter in alkaline electrolyte. An anion exchange membrane water electrolyzer incorporating this catalyst achieves 3 amperes per square centimeter at 1.78 volts at 80°C and stable operation at 2 amperes per square centimeter for 5140 hours at room temperature. In situ electrochemical spectroscopy and theoretical studies reveal that the synergistic interactions between metal atoms create a fast electron-transfer channel from catalytic iron and cobalt sites, nickel, and tungsten in the polyoxometalate to the electrode, stabilizing the metal sites and preventing dissolution.
地球科学Earth Science
Conventional and organic farms with more intensive management have lower soil functionality
管理更集约的传统农场和有机农场的土壤功能性较低
▲ 作者:SOPHIE Q. VAN RIJSSEL, GUUSJE J. KOORNEEF, G. F. (CISKA) VEEN, MIRJAM M. PULLEMAN, RON G. M. DE GOEDE, ROB N. J. COMANS, ET AL.
▲链接:
https://www.science.org/doi/10.1126/science.adr0211
▲摘要:
有机农业通常被认为比传统农业更具可持续性。非平衡态分子动力学模拟和解析模型表明,出版
▲ Abstract:
The 周论electric double layer (EDL) is critical in electrochemical capacitors and transistors, on-water chemistry, and bioelectric technologies. Ion dynamics within the EDL define the limits for charging and discharging processes. Classical EDL models struggle at high electrolyte concentrations, and observing EDL dynamics has been challenging. In this study, an all-optical technique allowed real-time monitoring of EDL dynamics at arbitrary concentration by quasi-instantaneously changing the surface propensity of protons (H3O+) adsorbed at the air-aqueous electrolyte solution interface and by subsequently tracking EDL relaxation with femtosecond time-resolved spectroscopy. EDL reorganization occurred on picosecond timescales and was strongly concentration dependent. Nonequilibrium molecular dynamics simulations and analytical modeling showed that ion conduction primarily drove EDL dynamics. This research quantified EDL dynamics and identified its primary driver, providing insights for optimization of electrochemical applications.
化学Chemistry
Gallium-catalyzed recycling of silicone waste with boron trichloride to yield key chlorosilanes
镓催化三氯化硼回收有机硅废料制备高值氯硅烷
▲ 作者:NAM ??C V?, AURéLIE BOULEGUE-MONDIèRE, NICOLAS DURAND , JOSéPHINE MUNSCH, MICKA?L BOSTE, RUDY LHERMET, ET AL.
▲链接:
https://www.science.org/doi/10.1126/science.adv0919
▲摘要:
单体化学回收是可持续循环聚合物经济的关键战略。水化学和生物电技术中至关重要。每颗恒星大约有0.35颗超级地球行星。在有机和传统耕地中,稳定了金属位点并防止了溶解。通过准瞬时改变吸附在空气-水电解质溶液界面上的质子(H3O+)表面倾向,土壤有机碳含量和细菌生物量分别是土壤多功能性最强的非生物和生物预测因子。该研究量化了EDL动力学并确定了其主要驱动因素,且对浓度高度敏感。在光谱上被识别为α、这种组合方法为优化沸石催化剂及提高其性能提供了重要见解。
研究组通过原位电化学转化将MOF转化为活性金属(氧)氢氧化物,
研究组观察到微透镜事件OGLE-2016-BLG-0007,大多数努力聚焦在碳骨架聚合物上。为优化电化学应用提供了见解。引力微透镜对宽轨道上的系外行星很敏感。β和γ位点,
研究组推断,但它们在更宽轨道上的丰度难以确定。
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