“粉垄科学”理论及其内涵初探
“Fenlong Science” Theory and Its Connotation
DOI: 10.12677/HJAS.2019.92022, PDF,  被引量    科研立项经费支持
作者: 韦本辉*:广西农业科学院经济作物研究所,广西 南宁
关键词: 粉垄粉垄科学粉垄科学理论粉垄科学内涵Fenlong Fenlong Science Fenlong Science Theory Fenlong Science Connotation
摘要: 首次在粉垄耕作与栽培技术的基础上,创建“粉垄科学”新的学科平台;阐明包括“超深耕深松不乱土层”的“全层耕”、“底层耕”等耕作技术体系,并有25个省35种作物应用具10%~50%增产和提质保水生态功效,初步阐明“粉垄科学”的理论有价值取向理论、农耕变革效应理论、自然力理论、作物“库”“源”双扩増产提质理论等“粉垄科学”创建基础;指出“粉垄科学”可解决土地及天然降水、太阳光能等自然资源如何高效活化利用的前沿科学问题,能对耕地及盐碱地、退化草原、荒漠化土地生态重建、宜耕果树行间、宜耕林木行间、海绵城市草坪和土地整治工程等进行全覆盖的耕作利用,可由传统“耕地农业”向“粉垄耕地 + 盐碱地、退化草原、荒漠化土地生态重建、江河水体渔业”的“大格局绿色农业”转变。
Abstract: We created a new discipline platform “Fenlong science”, based on the Fenlong tillage and cultivation techniques for the first time. We clarified new cultivation technique system including “super deep tillage and deep loosening but not disorderly soil” of “Full-plough layer farming” and “Bottom plough layer farming”. Fenlong cultivation had the characteristics of yield increase of 10%~50%, quality improvement and doubled land water holding capacity in over 35 crops in more than 25 provinces. We clarified that “Fenlong science” theory had the value orientation theory, the agricultural revolution theory, the forces of nature theory, the crop farming “library” + “source” double expansion increasing production and improving quality theory, etc. We pointed out that “Fenlong science” can resolve the science problem that how land and natural rainfall, the sun light energy and other natural resources, can be effectively activated and utilized, used in arable, saline-alkali soil, degradation of grassland, land desertification, orchard, forest, sponge urban lawn and land reclamation engineering. We transformed traditional “land agriculture” to “Fenlong cultivated land + saline-alkali soil, degradation of grassland, land ecological reconstruction, the rivers water fishery” of “big green agriculture”.
文章引用:韦本辉. “粉垄科学”理论及其内涵初探[J]. 农业科学, 2019, 9(2): 131-136. https://doi.org/10.12677/HJAS.2019.92022

参考文献

[1] 韦本辉. 中国发明第四套农耕方法“粉垄” (英文) [J]. Agricultural Science & Technology, 2017, 18(11): 2045-2048, 2052.
[2] 韦本辉, 甘秀芹, 陈保善, 申章佑, 俞建, 宁秀呈, 陆柳英, 韦广泼, 胡泊, 莫润秀, 李艳英, 吴延勇. 粉垄整地与传统整地方式种植玉米和花生效果比较[J]. 安徽农业科学, 2011, 39(6): 3216-3219.
[3] 韦本辉, 甘秀芹, 李艳英, 申章佑, 周灵芝, 周佳, 刘斌, 劳承英, 胡泊. 稻田粉垄一次持续7年对土壤性状和水稻产量品质的影响(英文) [J]. Agricultural Science & Tech-nology, 2017, 18(12): 2365-2371.
[4] 甘秀芹, 周灵芝, 刘斌, 周佳, 李艳英, 申章佑, 吴延勇, 韦本辉. 粉垄栽培水稻减施化肥的产量及经济效益[J]. 湖南农业科学, 2017(11): 17-20+24.
[5] Zhai, L., Xu, P., Zhang, Z., Li, S., Xie, R., Zhai, L. and Wei, B. (2017) Effects of Deep Vertical Rotary Tillage on Dry Matter Accumulation and Grain Yield of Summer Maize in the Huang-Huai-Hai Plain of China. Soil & Tillage Research, 170, 167-174. [Google Scholar] [CrossRef
[6] Nie, S.-W., Egrinya, E.A., Huang, S.-M., Zhang, S.-Q., Zhang, Q.-P., Zhang, Y.-T. and Wei, B.-H. (2013) Smash-Ridging Tillage Increases Wheat Yield and Yield Components in the Huai-He Valley, China. Journal of Food, Agriculture & Environment, 11, 453-455.
[7] 韦本辉, 刘斌, 甘秀芹, 申章佑, 胡泊, 李艳英, 吴延勇, 陆柳英. 粉垄栽培对水稻产量和品质的影响[J]. 中国农业科学, 2012, 45(19): 3946-3954.
[8] 韦本辉, 甘秀芹, 申章佑, 宁秀呈, 陆柳英, 韦广泼, 李艳英, 胡泊, 刘斌, 吴延勇. 粉垄栽培甘蔗试验增产效果[J]. 中国农业科学, 2011, 44(21): 4544-4550.
[9] 李轶冰, 逄焕成, 李华, 李玉义, 杨雪, 董国豪, 郭良海, 王湘峻. 粉垄耕作对黄淮海北部春玉米籽粒灌浆及产量的影响[J]. 中国农业科学, 2013, 46(14): 3055-3064.
[10] 刘贵文, 黄樟华, 韦本辉, 莫振茂, 容林熙. 粉垄技术对木薯生长发育和产量的影响[J]. 南方农业学报, 2011, 42(8): 975-978.
[11] 赖洪敏, 林北森, 罗刚, 周文亮, 韦忠, 高华军, 韦本辉. 粉垄耕作对烤烟生长发育的影响[J]. 浙江农业科学, 2017, 58(5): 736-738.
[12] 聂胜委, 张玉亭, 汤丰收, 黄绍敏, 张巧萍, 韦本辉, 张水清, 何宁. 粉垄耕作对潮土冬小麦生长及产量的影响初探[J]. 河南农业科学, 2015(2): 19-21+43.
[13] 韩锁义, 秦利, 刘华, 张忠信, 齐飞艳, 臧秀旺, 王素霞, 王忠于. 粉垄耕作技术在饲草种植上的应用与展望[J]. 草业科学, 2014, 31(8): 1597-1600.
[14] 申章佑, 韦本辉, 甘秀芹, 陆柳英, 宁秀呈, 韦广泼, 李艳英, 胡泊, 刘斌, 吴延勇. 粉垄技术栽培木薯中后期结薯情况及产量品质分析[J]. 作物杂志, 2012(4): 157-160.
[15] Wei, B., Shen, Z., Zhou, J., Gan, X., Lao, C., Zhou, L., Liu, B., Hu, P. and Li, Y. (2017) Initial Exploration on Effect of Saline-Alkali Land Rebuilding and Utiliza-tion by Fenlong Cultivation. Agricultural Science & Technology, 18, 2396-2400.
[16] Wei, B. (2017) Efficient Green Modern Agri-culture of Fenlong Cultivation and Its Application Prospects. Agricultural Science & Technology, 18, 2658-2663+2666.