日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Non-invasive screening for laryngeal cancer using the oral cavity as a proxy for differentiation of laryngeal cancer versus leukoplakia: A novel application of ESS technology and artificial intelligence supported statistical modeling

利用口腔作为鉴别喉癌与白斑的替代指标进行无创喉癌筛查:ESS技术和人工智能支持的统计模型的新应用

Sakharkar, M; Spokas, G; Berry, L; Daniels, K; Nithagon, P; Rodriguez-Diaz, E; Tracy, L; Noordzij, J P; Bigio, I; Grillone, G; Krisciunas, G P

A biochar selection method for remediating heavy metal contaminated mine tailings

生物炭筛选方法在重金属污染矿山尾矿修复中的应用

Ippolito, J A; Ducey, T F; Spokas, K A; Trippe, K M; Johnson, M G

Correction: 2-Methyl-4-chlorophenoxyacetic acid (MCPA) sorption and desorption as a function of biochar properties and pyrolysis temperature

更正:2-甲基-4-氯苯氧乙酸 (MCPA) 的吸附和解吸与生物炭性质和热解温度的关系

Niaz, Abdullah; Spokas, Kurt A; Gámiz, Beatriz; Mulla, David; Arshad, Khaliq R; Hussain, Sarfraz

2-Methyl-4-chlorophenoxyacetic acid (MCPA) sorption and desorption as a function of biochar properties and pyrolysis temperature

2-甲基-4-氯苯氧乙酸 (MCPA) 的吸附和解吸与生物炭性质和热解温度的关系

Abdullah Niaz, Kurt A Spokas, Bea Gámiz, David Mulla, Khaliq R Arshad, Sarfraz Hussain

The Role of Nanoengineered Biochar Activated with Fe for Sulfanilamide Removal from Soils and Water

铁活化纳米工程生物炭在土壤和水中去除磺胺类药物中的作用

Beatriz Gámiz, Pilar Velarde, Kurt A Spokas, Lucía Cox

Microbial response to designer biochar and compost treatments for mining impacted soils

微生物对矿区污染土壤中人工生物炭和堆肥处理的响应

Ducey, Thomas F; Novak, Jeffrey M; Sigua, Gilbert C; Ippolito, James A; Rushmiller, Hannah C; Watts, Donald W; Trippe, Kristin M; Spokas, Kurt A; Stone, Kenneth C; Johnson, Mark G

Microbial Response to Phytostabilization in Mining Impacted Soils Using Maize in Conjunction with Biochar and Compost

利用玉米结合生物炭和堆肥对采矿影响土壤进行植物稳定化处理的微生物响应

Ducey, Thomas F; Sigua, Gilbert C; Novak, Jeffrey M; Ippolito, James A; Spokas, Kurt A; Johnson, Mark G

Phytostabilization of acidic mine tailings with biochar, biosolids, lime, and locally-effective microbes: Do amendment mixtures influence plant growth, tailing chemistry, and microbial composition?

利用生物炭、生物固体、石灰和局部有效微生物对酸性矿山尾矿进行植物稳定化:改良混合物是否会影响植物生长、尾矿化学性质和微生物组成?

Trippe, Kristin M; Manning, Viola A; Reardon, Catherine L; Klein, Ann M; Weidman, Clara; Ducey, Thomas F; Novak, Jeff M; Watts, Donald W; Rushmiller, Hannah; Spokas, Kurt A; Ippolito, James A; Johnson, Mark G

Biochar reduces the efficiency of nitrification inhibitor 3,4-dimethylpyrazole phosphate (DMPP) mitigating N2O emissions

生物炭降低了硝化抑制剂 3,4-二甲基吡唑磷酸盐 (DMPP) 减轻 N2O 排放的效率

T Fuertes-Mendizábal, X Huérfano, I Vega-Mas, F Torralbo, S Menéndez, J A Ippolito, C Kammann, N Wrage-Mönnig, M L Cayuela, N Borchard, K Spokas, J Novak, M B González-Moro, C González-Murua, J M Estavillo

Remediation of an acidic mine spoil: Miscanthus biochar and lime amendment affects metal availability, plant growth, and soil enzyme activity

酸性矿山废弃地的修复:芒草生物炭和石灰改良剂对金属有效性、植物生长和土壤酶活性的影响

Novak, Jeffrey M; Ippolito, James A; Ducey, Thomas F; Watts, Donald W; Spokas, Kurt A; Trippe, Kristin M; Sigua, Gilbert C; Johnson, Mark G