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1

Szulc, Wiesław. Potrzeby nawożenia roślin uprawnych siarką oraz metody ich wyznaczania. Wydawn. SGGW, 2008.

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2

National Seminar on Soil Testing for Balanced and Integrated Use of Fertilizers and Manures (1999 Indian Institute of Soil Science). Soil test based fertilizer recommendations for targeted yields of crops: Proceedings of the National Seminar on Soil Testing for Balanced and Integrated Use of Fertilizers and Manures. Edited by Subba Rao A, Srivastava Sanjay, and All India Coordinated Research Project for Investigations on Soil Test Crop Response Correlation. All India Coordinated Research Project for Investigations on Soil Test Crop Response Correlation, Indian Institute of Soil Science, 2001.

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3

Kuo, Shiou. Nitrogen and phosphorus requirements for sweet corn in western Washington. Agriculture Research Center, College of Agriculture and Home Economics, Washington State University, 1985.

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4

Zougmoré, Robert B. Integrated water and nutrient management for sorghum production in semi-arid Burkina Faso. Wageningen University and Research Centre, 2003.

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5

PDA and POTASH DEVELOPMENT ASSOCIATION, eds. The Potash Development Association: 17 forage maize - fertiliser requirements. PDA, 1996.

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6

Institute, Sulphur, ed. Sulphur: Its role and place in balanced fertiliser use for Indian agriculture : a comprehensive review of plant nutrient sulphur in India--agronomics, economics, and fertilizer requirements. The Institute, 1994.

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7

Robinson, Susan. Pasture production. Ontario Ministry of Agriculture and Food, 1990.

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8

Sidorenko, Oleg. Microbiology. INFRA-M Academic Publishing LLC., 2024. http://dx.doi.org/10.12737/2122973.

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The textbook presents modern data on general microbiology, a comprehensive analysis of the industrial biotechnology industry and the bioconversion of renewable resources. For the first time, agricultural waste is considered as a raw material for obtaining useful products: organic fertilizers, feed additives, medicinal preparations, energy sources, etc. Meets the requirements of the federal state educational standards of higher education of the latest generation. For students of higher educational institutions studying in the field of training "Technology of production and processing of agricul
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9

Sidorenko, Oleg. Biological systems in the processing of secondary products and agricultural waste. INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1102076.

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The manual describes technologies for processing secondary products and agricultural waste using macro-and micro-organisms. The regulations of modern biotechnologies of microbial synthesis, bioconversion of secondary raw materials are briefly presented, methods of its processing and characteristics of the obtained target products of bioconversion are described.
 Practical classes introduce students to modern methods of improving environmental quality and production waste from commercial products (organic fertilizers, bacterial preparations, feed additives, etc.), as well as obtain the che
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10

International Workshop on Current and Future Plant Nutrient Sulphur Requirements, Availability, and Commercial Issues for China (1995 Beijing, China). Proceedings of the International Workshop on Current and Future Plant Nutrient Sulphur Requirements, Availability, and Commercial Issues for China, March 9, 1995, Beijing, China. The Institute, 1995.

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11

Sidorenko, Oleg. Bioconversion of secondary raw materials and waste of the agro-industrial complex. INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1896453.

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For the first time, promising biological technologies for processing secondary raw materials and waste from crop production, animal husbandry and the processing industry of the agro-industrial complex (AIC) have been generalized. The main attention is paid to the bioconversion of agricultural raw materials and waste, as well as products of their processing. The technologies in question have an undoubted advantage — they are safe, economical and environmentally friendly. Waste transformation products find practical application in agriculture, industry and medicine. Waste from a dangerous source
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12

International, Symposium on Present and Future Raw Material and Fertilizer Sulphur Requirements for China (1993 Beijing China). Proceedings of the International Symposium on Present and Future Raw Material and Fertilizer Sulphur Requirements for China: June 15-17, 1993, Beijing, China = [Zhongguo liu zi yuan he liu fei xu qiu de xian zhuang he zhan wang : guo ji xue shu tao lun hui lun wen ji]. The Institute, 1993.

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13

National Research Council (U.S.). Committee on Water Implications of Biofuels Production in the United States., National Research Council (U.S.). Water Science and Technology Board., and National Academies Press (U.S.), eds. Water implications of biofuels production in the United States. National Academies Press, 2008.

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14

Estimating fertilizer requirements: A quantitative approach. CAB International, 1994.

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15

Huelsen, W. A. 1892, and Merl Conrad Gillis. Fertilizer Requirements of Sweet Corn. Creative Media Partners, LLC, 2018.

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16

Fertilizer Requirements in 2015 and 2030. Food & Agriculture Org, 2000.

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17

Nibler, Francis J. Fertilizer requirements of wheat grown under conservation tillage. 1986.

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18

Noulas, Christos, Shahram Torabian, and Ruijun Qin, eds. Crop Nutrient Requirements and Advanced Fertilizer Management Strategies. MDPI, 2024. http://dx.doi.org/10.3390/books978-3-7258-0631-7.

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19

The Estimate of fertilizer demand for 1988-89 and import requirements. National Fertilizer Development Centre, Planning and Development Division, Govt. of Pakistan, 1988.

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20

Fertiliser Usage and the Mineral Requirements of Grazing Livestock (Proceedings of the International Fertiliser Society S.). International Fertiliser Society, 2001.

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21

Ali, Safdar. Growth, yield and water use of rainfed wheat and maize influenced by tillage and fertilizer in Pothwar, Pakistan. 1993.

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22

Improving Water And Nutrientuse Efficiency In Food Production Systems. Iowa State University Press, 2013.

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23

Oakley, Stewart M. Integrated Wastewater Management for Health and Valorization: A Design Manual for Resource Challenged Cities. IWA Publishing, 2022. http://dx.doi.org/10.2166/9781789061536.

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Abstract Adequate wastewater treatment in low to medium income cities worldwide has largely been a failure despite decades of funding. The still dominant end-of-pipe paradigm of treatment for surface water discharge, focusing principally on removal of organic matter, has not addressed the well-published problems of pathogen and nutrient release with continued contamination of surface waters. This book incorporates the new paradigm of integrated wastewater management for valorization without surface water discharge using waste stabilization pond systems and wastewater reservoirs. In this paradi
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