FUNCTIONAL CARBON-SUPPORTED NANOCATALYSTS FOR BIOMASS CONVERSION СтатьяLi Y., Wu Y., Delbari S.A., Kim A., Namini A.S., Le Q.V., Xia C., Luque R., Jang H.W., Shokouhimehr M., Varma R.S.Molecular Catalysis. Том 538. 2023.
PADDY SOILS HAVE A MUCH HIGHER MICROBIAL BIOMASS CONTENT THAN UPLAND SOILS: A REVIEW OF THE ORIGIN, MECHANISMS, AND DRIVERS СтатьяWei L., Ge T., Zhu Z., Ye R., Peñuelas J., Li Y., Lynn T.M., Jones D.L., Wu J., Kuzyakov Y.Agriculture, Ecosystems and Environment. Том 326. 2022.
STOICHIOMETRIC REGULATION OF PRIMING EFFECTS AND SOIL CARBON BALANCE BY MICROBIAL LIFE STRATEGIES СтатьяZhu Z., Fang Y., Liang Y., Li Y., Liu S., Li Y., Li B., Gao W., Yuan H., Kuzyakov Y., Wu J., Richter A., Ge T.Soil Biology and Biochemistry. Том 169. 2022.
SOIL HEALTH EVALUATION APPROACHES ALONG A RECLAMATION CONSEQUENCE IN HANGZHOU BAY, CHINA СтатьяWei L., Li Y., Zhu Z., Wang F., Liu X., Zhang W., Xiao M., Li G., Ding J., Chen J., Kuzyakov Y., Ge T.Agriculture, Ecosystems and Environment. Том 337. 2022.
SOURCES AND INTENSITY OF CH<SUB>4</SUB> PRODUCTION IN PADDY SOILS DEPEND ON IRON OXIDES AND MICROBIAL BIOMASS СтатьяLi Y., Zhu Z., Wei X., Li B., Wu J., Liu S., Ge T., Kuzyakov Y., Kim P.J.Biology and Fertility of Soils. Том 58. 2022. С. 181-191
FORMATION OF NEW LEGAL APPROACHES TO REGULATE THE MARRIAGE AND FAMILY RELATIONS IN THE PRC СтатьяIvanovskaya N.V., Li Y.Lecture Notes in Networks and Systems. Том 372. 2022. С. 285-297
LONG-TERM WARMING AND ELEVATED CO<SUB>2</SUB> INCREASE AMMONIA-OXIDIZING MICROBIAL COMMUNITIES AND ACCELERATE NITRIFICATION IN PADDY SOIL СтатьяWaqas M.A., Li Y., Wang B., Sardar M.F., Ma P., Li R., Wan Y., Ashraf M.N., Ahmed W., Kuzyakov Y.Прикладная экология почв. Том 166. 2021. 104063 с.
RICE PADDY SOILS ARE A QUANTITATIVELY IMPORTANT CARBON STORE ACCORDING TO A GLOBAL SYNTHESIS СтатьяLiu Y.L., Ge T.D., Van Groenigen K.J., Yang Y.H., Wang P., Cheng K., Zhu Z.K., Wang J.K., Li Y., Guggenberger G., Sardans J., Penuelas J., Wu J.S., Kuzyakov Y.COMMUNICATIONS EARTH & ENVIRONMENT. Том 2. 2021.
LOWER MICROBIAL CARBON USE EFFICIENCY REDUCES CELLULOSE-DERIVED CARBON RETENTION IN SOILS AMENDED WITH COMPOST VERSUS MINERAL FERTILIZERS СтатьяMiao Y., Niu Y., Luo R., Li Y., Zheng H., Kuzyakov Y., Chen Z., Liu D., Ding W.Soil Biology and Biochemistry. Том 156. 2021.
T4-LIKE PHAGES REVEAL THE POTENTIAL ROLE OF VIRUSES IN SOIL ORGANIC MATTER MINERALIZATION СтатьяWei X., Ge T., Wu C., Wang S., Mason-Jones K., Li Y., Zhu Z., Hu Y., Liang C., Shen J., Wu J., Kuzyakov Y.ENVIRONMENTAL SCIENCE & TECHNOLOGY. Том 55. 2021. С. 6440-6448
COMPARING CARBON AND NITROGEN STOCKS IN PADDY AND UPLAND SOILS: ACCUMULATION, STABILIZATION MECHANISMS, AND ENVIRONMENTAL DRIVERS СтатьяWei L., Ge T., Zhu Z., Luo Y., Yang Y., Xiao M., Yan Z., Li Y., Wu J., Kuzyakov Y.Geoderma. Том 398. 2021.
TRANSFORMATIONS OF N DERIVED FROM STRAW UNDER LONG-TERM CONVENTIONAL AND NO-TILLAGE SOILS: A <SUP>15</SUP>N LABELLING STUDY СтатьяLiu X., Dong W., Li Y., Hossain M.E., Liu E., Jia S., Liu Q., Kuzyakov Y.Science of the Total Environment. Том 786. 2021. 147428 с.
HIERARCHICALLY HOLLOW MNO<SUB>2</SUB>@CEO<SUB>2</SUB>HETEROSTRUCTURES FOR NO OXIDATION: REMARKABLY PROMOTED ACTIVITY AND SO<SUB>2</SUB>TOLERANCE СтатьяChen L., Zhang C., Chang C.R., Yu Y., Duan P., Zhang Z., Li Y., He C., Lu Q., Luque R.ACS Catalysis. Том 11. 2021. С. 10988-10996
REMARKS ON THE MONOTONICITY AND CONVEXITY OF JENSEN'S FUNCTION СтатьяHuang Y., Li Y., Pečarić J.Mathematical Inequalities and Applications. Том 24. 2021. С. 543-549
INTERKINGDOM PLANT-MICROBIAL ECOLOGICAL NETWORKS UNDER SELECTIVE AND CLEAR CUTTING OF TROPICAL RAINFOREST СтатьяChen J., Feng K., Hannula S.E., Kuzyakov Y., Li Y., Xu H.Forest Ecology and Management. Том 491. 2021.