| Breeding progress and preparedness for mass-scale deployment of perennial lignocellulosic biomass crops switchgrass, miscanthus, willow and poplar |
21 |
| Consensus, uncertainties and challenges for perennial bioenergy crops and land use |
18 |
| Serious mismatches continue between science and policy in forest bioenergy |
16 |
| Ulva rigida in the future ocean: potential for carbon capture, bioremediation and biomethane production |
15 |
| Pyrogenic carbon capture and storage |
13 |
| Biomass production of herbaceous energy crops in the United States: field trial results and yield potential maps from the multiyear regional feedstock partnership |
12 |
| Phytolith-rich biochar: A potential Si fertilizer in desilicated soils |
12 |
| Life cycle assessment of ethanol production from miscanthus: A comparison of production pathways at two European sites |
12 |
| Pressurized extraction of unsaturated fatty acids and carotenoids from wet Chlorella vulgaris and Phaeodactylum tricornutum biomass using subcritical liquids |
12 |
| Mapping land use changes resulting from biofuel production and the effect of mitigation measures |
12 |
| Quantifying the climate change effects of bioenergy systems: Comparison of 15 impact assessment methods |
11 |
| Volatile fatty acids (VFAs) and methane from food waste and cow slurry: Comparison of biogas and VFA fermentation processes |
11 |
| Natural climate solutions versus bioenergy: Can carbon benefits of natural succession compete with bioenergy from short rotation coppice? |
11 |
| Effects of nitrogen fertilization in shrub willow short rotation coppice production - a quantitative review |
10 |
| The multi-feedstock biorefinery - Assessing the compatibility of alternative feedstocks in a 2G wheat straw biorefinery process |
10 |
| Policy support for biochar: Review and recommendations |
9 |
| Carbon sequestration and turnover in soil under the energy crop Miscanthus: repeated C-13 natural abundance approach and literature synthesis |
9 |
| Methane yield and species diversity dynamics of perennial wild plant mixtures established alone, under cover crop maize (Zea mays L.), and after spring barley (Hordeum vulgare L.) |
9 |
| A comparison in product-value potential in four treatment strategies for food waste and faeces - assessing composting, fly larvae composting and anaerobic digestion |
9 |
| Global advanced bioenergy potential under environmental protection policies and societal transformation measures |
9 |
| Assessing lignocellulosic biomass production from crop residues in the European Union: Modelling, analysis of the current scenario and drivers of interannual variability |
9 |
| Economic and environmental performance of miscanthus cultivated on marginal land for biogas production |
9 |
| BETYdb: a yield, trait, and ecosystem service database applied to second-generation bioenergy feedstock production |
8 |
| Poplar and shrub willow energy crops in the United States: field trial results from the multiyear regional feedstock partnership and yield potential maps based on the PRISM-ELM model |
8 |
| Virginia mallow (Sida hermaphrodita (L.) Rusby) as perennial multipurpose crop: biomass yields, energetic valorization, utilization potentials, and management perspectives |
8 |
| Willow production during 12 consecutive years-The effects of harvest rotation, planting density and cultivar on biomass yield |
8 |
| Soil greenhouse gas, carbon content, and tree growth response to biochar amendment in western United States forests |
7 |
| Dominance of bacterial ammonium oxidizers and fungal denitrifiers in the complex nitrogen cycle pathways related to nitrous oxide emission |
7 |
| Soil microbial community structure and enzymatic activity responses to nitrogen management and landscape positions in switchgrass (Panicum virgatum L.) |
7 |
| Lignocellulosic-based bioenergy and water quality parameters: a review |
7 |
| Characterization of Miscanthus cell wall polymers |
7 |
| Fractionation of three different lignins by thermal separation techniques-A comparative study |
7 |
| Study of the electrical conductivity of biobased carbonaceous powder materials under moderate pressure for the application as electrode materials in energy storage technologies |
7 |
| Variability of in vitro ruminal fermentation and nutritional value of cell-disrupted and nondisrupted microalgae for ruminants |
7 |
| Soil quality indicator response to land-use change from annual to perennial bioenergy cropping systems in Germany |
7 |
| Biomass production and energy balance of Miscanthus over a period of 11 years: A case study in a large-scale farm in Poland |
7 |
| A global meta-analysis of soil organic carbon response to corn stover removal |
7 |
| The relative importance of the bacterial pathway and soil inorganic nitrogen increase across an extreme wood-ash application gradient |
6 |
| Genotypic variation in transpiration of coppiced poplar during the third rotation of a short-rotation bio-energy culture |
6 |
| Growth of engineered Pseudomonas putida KT2440 on glucose, xylose, and arabinose: Hemicellulose hydrolysates and their major sugars as sustainable carbon sources |
6 |
| Land management change greatly impacts biofuels' greenhouse gas emissions |
6 |
| Global relative species loss due to first-generation biofuel production for the transport sector |
6 |
| Targeted subfield switchgrass integration could improve the farm economy, water quality, and bioenergy feedstock production |
6 |
| Idaho forest growth response to post-thinning energy biomass removal and complementary soil amendments |
5 |
| Crop residue harvest impacts wind erodibility and simulated soil loss in the Central Great Plains |
5 |
| Project level assessment of indirect land use changes arising from biofuel production |
5 |
| Impact of increased wood pellet demand on biodiversity in the south-eastern United States |
5 |
| Biorefinery for combined production of jet fuel and ethanol from lipid-producing sugarcane: a techno-economic evaluation |
5 |
| Assessing seed priming, sowing date, and mulch film to improve the germination and survival of direct-sown Miscanthus sinensis in the United Kingdom |
5 |
| Environmental effects of short-rotation woody crops for bioenergy: What is and isn't known |
5 |