Journal of Agricultural Science and Technology ›› 2024, Vol. 26 ›› Issue (8): 84-92.DOI: 10.13304/j.nykjdb.2023.0376
• INTELLIGENT AGRICULTURE & AGRICULTURAL MACHINERY • Previous Articles Next Articles
Chenglong LYU1(), Lihua YU1(
), Le ZHENG1, Xuemei WU1, Jianrong ZHANG2, Huaicheng YANG1
Received:
2023-05-16
Accepted:
2023-08-30
Online:
2024-08-15
Published:
2024-08-12
Contact:
Lihua YU
吕成龙1(), 喻丽华1(
), 郑乐1, 吴雪梅1, 张简荣2, 杨怀诚1
通讯作者:
喻丽华
作者简介:
吕成龙 E-mail:1040090659@qq.com;
基金资助:
CLC Number:
Chenglong LYU, Lihua YU, Le ZHENG, Xuemei WU, Jianrong ZHANG, Huaicheng YANG. Current Situation of Mechanization Technology and Countermeasures for Whole Production of Radix Pseudostellariae in Guizhou[J]. Journal of Agricultural Science and Technology, 2024, 26(8): 84-92.
吕成龙, 喻丽华, 郑乐, 吴雪梅, 张简荣, 杨怀诚. 贵州太子参生产全程机械化技术现状及对策[J]. 中国农业科技导报, 2024, 26(8): 84-92.
生产环节 Production link | 租地、种子、肥料 Rent land, seed, fertilizer | 机械耕整地 Tillage equipment | 播种 Sowing | 田间管理 Field management | 采收 Harvesting | 合计 Sum |
---|---|---|---|---|---|---|
用工 Ployment/(hm-2) | 0.00 | 4.95 | 120.00 | 73.50 | 210.00 | 408.45 |
费用/(元·hm-2) Cost/(yuan·hm-2) | 26 880 | 1 800 | 18 960 | 11 610 | 33 300 | 92 550 |
Table 1 Labor and cost for Radix pseudostellariae planting
生产环节 Production link | 租地、种子、肥料 Rent land, seed, fertilizer | 机械耕整地 Tillage equipment | 播种 Sowing | 田间管理 Field management | 采收 Harvesting | 合计 Sum |
---|---|---|---|---|---|---|
用工 Ployment/(hm-2) | 0.00 | 4.95 | 120.00 | 73.50 | 210.00 | 408.45 |
费用/(元·hm-2) Cost/(yuan·hm-2) | 26 880 | 1 800 | 18 960 | 11 610 | 33 300 | 92 550 |
微耕机类型 Micro-cultivator type | 工作幅宽 Working width/cm | 整机尺寸 Machine size/cm | 功率 Power/kW |
---|---|---|---|
1WGCZ5.3-135 | 135 | 164×136×97 | 5.3 |
1WG4.05-100FC-ZC | 100 | 161×103×92.5 | 4.0 |
1WGQZ5.4-105 | 105 | 166×106×103 | 5.4 |
1WG5.5-135FQ-ZC | 135 | 177×136×94 | 5.5 |
1WG4.0 | 90~110 | 160×90×110 | 4.0 |
Table 2 Information of small-scale land preparation machinery commonly used for Radix pseudostellariae planting in Guizhou
微耕机类型 Micro-cultivator type | 工作幅宽 Working width/cm | 整机尺寸 Machine size/cm | 功率 Power/kW |
---|---|---|---|
1WGCZ5.3-135 | 135 | 164×136×97 | 5.3 |
1WG4.05-100FC-ZC | 100 | 161×103×92.5 | 4.0 |
1WGQZ5.4-105 | 105 | 166×106×103 | 5.4 |
1WG5.5-135FQ-ZC | 135 | 177×136×94 | 5.5 |
1WG4.0 | 90~110 | 160×90×110 | 4.0 |
1 | 宋荣晶,卢先文,董静.太子参栽培技术措施探究[J]. 南方农业,2020,14(15):20-22. |
2 | 康传志,周涛,江维克,等.我国太子参栽培资源现状及药材品质的探讨[J]. 中国现代中药,2014,16(7):542-546. |
KANG C Z, ZHOU T, JIANG W K, et al.. Status and quality discussion of cultivated Pseudostellaria heterophylla resource in China [J]. Mod. Chin. Med., 2014,16(7):542-546. | |
3 | 顾吉伦.太子参的特征特性及栽培技术[J]. 现代农业科技,2019(6):42, 44. |
4 | 陈玲,张和喜,王永涛,等.贵州旱坡地作物设施灌溉现状及发展的适宜模式探讨[J]. 中国农村水利水电,2014(6): 39-41. |
CHEN L, ZHANG H X, WANG Y T, et al.. A study of the current situation and appropriate development mode of irrigation facilities of dry sloping field crop in Guizhou [J]. China Rural Water Hydropower, 2014 (6): 39-41. | |
5 | 邓灵稚,杨振华,苏维词.贵州喀斯特地区农作物种植结构优化对策[J]. 经济地理,2017,37(9):160-166. |
DENG L Z, YANG Z H, SU W C. Optimization countermeasures for crops planting structure in Karst area of Guizhou [J]. Econ. Geograp., 2017, 37(9): 160-166. | |
6 | 武孔云,谢彩香,黄林芳,等.贵州省太子参适生地等级划分的研究[J]. 中国农业资源与区划,2017,38(10):81-86. |
WU K Y, XIE C X, HUANG L F, et al.. The land hierarchical classification of Guizhou Heierpphylla [J]. Chin. J. Agric. Resour. Region. Plan., 2017,38(10):81-86. | |
7 | 康传志,周涛,江维克,等.贵州栽培太子参质量评价及生长区划[J].中国中药杂志,2016,41(13):2391-2396. |
KANG C Z, ZHOU T, JIANG W K, et al.. Quality evaluation and growing regionalization of Pseudostellaria heterophylla in Guizhou [J]. Chin. J. Chin. Mater. Med., 2016,41(13):2391-2396. | |
8 | 王雨田,何玉成,闫桂权,等.我国中药材产地市场整合研究——以金银花、枸杞子、板蓝根和太子参为例[J]. 中草药,2020,51(6):1669-1676. |
WANG Y T, HE Y C, YAN G Q, et al.. Study on Chinese medicinal materials origin market integration——taking Lonicerae japonicae flos, Lycii fructus, Isatidis radix and Pseudostellariae radix for examples [J]. Chin. Tradit. Herbal Drugs, 2020,51(6):1669-1676. | |
9 | 付君.太子参高产栽培管理技术[J].农村新技术,2021(11):15-16. |
10 | 李学运.太子参繁殖与栽培技术[J].科学种养,2021(5):24-26. |
11 | 刘保财,陈菁瑛,黄颖桢,等.太子参规范化生产技术与发展思考[J].福建农业科技,2020(10):37-42. |
LIU B C, CHEN J Y, HUANG Y Z, et al.. Thought on production technology for standardized planting of Pseudostellaria heterphylla and its development [J]. Fujian Agric. Sci. Technol., 2020(10):37-42. | |
12 | 王福花,陈香艳,丁文静.药食兼用中药材太子参的特征特性及优质高效栽培技术[J].农业科技通讯,2019(10):266-267, 281. |
13 | 王磊,赵锋,沈亮.无公害太子参栽培技术探索[J]. 世界科学技术:中医药现代化,2018,20(7):1123-1129. |
14 | 李宁宁,李丝雨,刘国秀,等. 基于道地属性的中药材产地初加工规范标准构建探讨[J]. 中国现代中药,2022,24(4):559-563. |
LI N N, LI S Y, LIU G X, et al.. Development of standard for primary processing of Chinese medicinal materials at producing areas: based on authentic properties [J]. Mod. Chin. Med.,2022,24(4):559-563. | |
15 | 吴潍.产地初加工方法对中药材质量的影响[J]. 中医药管理杂志,2020,28(1):90-94. |
16 | 周丽娟.中药材的产地初加工技术[J]. 现代园艺,2021,44(13):96-97, 99. |
17 | 周丕东,刘春波,张佩.贵州山地农业机械化发展现状及对策建议[J]. 中国农机化学报,2020,41(7):231-236. |
ZHOU P D, LIU C B, ZHANG P. Present situation and countermeasures of agricultural mechanization in mountainous areas of Guizhou province [J]. J. Chin. Agric. Mechan.,2020,41(7):231-236. | |
18 | 陈玲.对贵州山区农业机械化发展中的制约因素及对策措施探讨[J]. 中国农机化学报,2012(4):24-27. |
CHEN L. Discussion on the constrain factors and countermeasures during the development of agricultural mechanization in Guiyang mountainous area [J]. J. Chin. Agric. Mechan., 2012(4):24-27. | |
19 | 张浪,陈永生,胡桧,等. 1ZL-140蔬菜联合精整地机具的研制[J].中国农机化学报,2015, 36(1): 7-9. |
ZHANG L, CHEN Y S, HU H, et al.. Desion of 1ZL-140 combined fine soil preparation machine for vegetable [J]. J. Chin. Agric. Mech., 2015, 36(1): 7-9. | |
20 | SARKAR P, UPADHYAY G, RAHEMAN H. Active-passive and passive-passive configurations of combined tillage implements for improved tillage and tractive performance: a review [J/OL]. Spanish J. Agric. Res., 2021, 19(4)18387 [2023-04-16]. . |
21 | BEHERA A, RAHEMAN H. Effect of peripheral to forward speed ratio on overall performance an active tillage implement: tractor drawn rotavator [J/OL]. J. Institution Eng. (India): Series A,2021,102(3):567-4 [2023-04-16]. . |
22 | 张欣悦, 李连豪, 汪春, 等. 1GSZ-350型灭茬旋耕联合整地机的设计与试验[J]. 农业工程学报, 2009, 25(5): 73-77. |
ZHANG X Y, LI L H, WANG C, et al.. Design and test of 1GSZ-350 stubble-breaking and rotary tilling combined cultivating machine [J]. Trans. Chin. Soc. Agric. Eng., 2009, 25(5): 73-77. | |
23 | 孙冬霞, 张爱民, 宫建勋. 1SZL-250A型深松旋耕施肥联合整地机的设计与试验[J]. 中国农机化学报, 2016, 37(4): 1-6. |
SUN D X, ZHANG A M, GONG J X. Design and experiment on 1SZL-250A type sub soiling rotary tillage fertilizer combined soil working machine [J]. J. Chin. Agric. Mechan., 2016, 37(4): 1-6. | |
24 | 张丽娜. 耕整地机械的作业现状及发展方向分析[J]. 农机使用与维修,2022(6):48-50. |
25 | 畅游. 农业耕整地机械的规范使用与保养注意事项[J]. 农机使用与维修,2021(11):62-63. |
26 | 许蓬勃,杨永发,崔月,等. 小型深耕机发展浅析[J]. 南方农机,2021,52(15):54-55. |
27 | 何德毅.丘陵山区微耕机的使用技术及对策建议[J]. 四川农业与农机,2022(4):49,51. |
28 | 佟军民,燕亚民,韩根发,等.1GKN系列旋耕机的研制[J]. 农机化研究,2018,40(3):115-119. |
TONG J M, YAN Y M, HAN G F, et al..The development of 1GKN series rotary tiller [J]. J. Agric. Mechan. Res., 2018,40(3):115-119. | |
29 | 路宏.1WGQ4型微耕机旋耕作业参数数值模拟试验研究[D]. 南宁: 广西大学, 2015. |
LU H. Numerical simulation experiment of rotary tillage operation parameters of 1WGQ4 micro-rotary cultivator [D]. Nanning: Guangxi University, 2015. | |
30 | 张龙,郑乐,张富贵,等.一种太子参直播播种机:CN114982425A[P].2022-09-02. |
31 | 喻丽华,苏文,郑乐,等.一种半自动太子参精密播种机: CN215735755U[P]. 2022-02-08. |
32 | 陈威.自走式太子参联合收获机的设计与试验[D]. 合肥:安徽农业大学,2021. |
CHEN W. Design and experiment of self-propelled Pseudostellaria heterophylla combine harvester [D]. Hefei:Anhui Agricultural University, 2021. | |
33 | 陈威,曹成茂,张远,等.太子参联合收获机挖掘铲的设计与试验[J]. 甘肃农业大学学报,2021,56(4):178-184, 194. |
CHEN W, CAO C M, ZHANG Y, et al.. Design and test of digging shovel of Pseudostellaria heterophylla combined harvesting machine [J]. J. Gansu Univ. Agric., 2021, 56(4):178-184, 194. | |
34 | 龚健枫.基于小型拖拉机的太子参振动挖掘机的研制[D]. 福州:福建农林大学,2017. |
GONG J F. The development of Pseudostellariae heterophylla vibration excavator based on small tractor [D]. Fuzhou:Fujian Agriculture and Forestry University, 2017. | |
35 | 许星,李浩,薄晓东,等.太子参收获机械的研究现状与发展趋势[J]. 机电技术,2019(5):117-120. |
36 | 许星,陈仕国,胡立华.太子参收获机挖掘机构设计及分析[J]. 中国农机化学报,2022,43(8):32-39. |
XU X, CHEN S G, HU L H. Design and analysis of harvester excavation mechanism of Radix Pseudostellariae [J]. J. Chin. Agric. Mechan., 2022,43(8):32-39. | |
37 | 娄帅帅,曹成茂,李赞松,等.太子参联合收获机的设计[J]. 农机化研究,2016,38(10):105-108, 113. |
LOU S S, CAO C M, LI Z S, et al.. Design and test of Radix Pseudostellariae combine harvester [J]. J. Agric. Mech. Res., 2016,38(10):105-108, 113. | |
38 | 李赞松,曹成茂,娄帅帅,等.太子参联合收获机的设计[J]. 农机化研究,2017,39(10):93-97, 103. |
LI Z S, CAO C M, LOU S S, et al..Design of Radix Pseudostellariae combine harvester [J]. J. Agric. Mech. Res.,2017,39(10):93-97, 103. | |
39 | 陈堂.基于微耕机的太子参振动挖掘机的研制[D]. 福州:福建农林大学,2017. |
CHEN T. Based on the mini-tiller for the development of heterophylla vibration excavator [D]. Fuzhou: Fujian Agriculture and Forestry University,2017. | |
40 | 罗文敏,张家春,刘燕,等.多指标综合评价法优选黔产太子参最佳初加工方法[J]. 中药材, 2018,41(6):1335-1342. |
LUO W M, ZHANG J C, LIU Y, et al..Optimization of processing method for Pseudostellaria heterophylla of Guizhou by multi-index evaluation [J]. J. Chin. Med. Mater., 2018,41(6):1335-1342. | |
41 | 张简荣,周涛,江维克,等.一种用于太子参的去须机: CN211962631U[P]. 2020-11-20. |
42 | 贵州省第三次全国国土调查领导小组办公室贵州省自然资源厅贵州省统计局.贵州省第三次全国国土调查主要数据公报[N].贵州日报,2021-12-30(011). |
[1] | Fenfang XIAO, Conghe ZHANG, Hui WANG, Yafeng YE, Daolin ZHANG, Heting WANG, Bo LI, Yuejin WU, Binmei LIU. Simulation and Optimization of Pneumatic Conveying System for Hybrid Rice Pollen Collection Device [J]. Journal of Agricultural Science and Technology, 2023, 25(4): 110-122. |
[2] | Huibin KE, Yong ZHOU, Guozhong ZHANG, Wen LYU, Yan LIU, Lin HUANG. Design and Experiment of Pneumatic Fertilizer Collecting and Discharging Device for Ratooning Rice [J]. Journal of Agricultural Science and Technology, 2022, 24(6): 106-114. |
[3] | Huang HUANG, Yanyan CHEN, Pengyu CHEN, Rui LUO, Yadong LIU, Wei HU. Research Progress of Agricultural Machinery Scheduling Technology Based on Time Window [J]. Journal of Agricultural Science and Technology, 2022, 24(4): 93-106. |
[4] | Yu WANG, Ling WANG, Jianhua ZONG, Dongxiao LYU, Shumao WANG. Design and Experiment of Dynamic Loading Bench for Tractor [J]. Journal of Agricultural Science and Technology, 2022, 24(1): 91-97. |
[5] | SUN Jun-mao1, GUO Yan-zhi1, MIAO Shui-qing2*. Improvement of Potatoes Steamed Bread to Staple Foods Nutrition Structure of Chinese Resident [J]. Journal of Agricultural Science and Technology, 2015, 17(6): 64-69. |
[6] | HUANG Yong-bao1, JI Yan-guang2*. Studies and Analysis on Agricultural Machinery Development in China Based on Factor Analysis [J]. , 2014, 16(4): 95-101. |
[7] | WU Feiming, SUN Chuanfan, WANG Jinghua*. Assessment of Agricultural Science and Technology Achievement Transformation Fund Performance in Different Technological Fields [J]. , 2013, 15(4): 72-77. |
[8] | . [J]. , 2004, 6(6): 20-25. |
[9] | . [J]. , 2004, 6(6): 39-42. |
[10] | . [J]. , 2004, 6(1): 29-32. |
[11] | . [J]. , 2001, 3(2): 63-65. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||