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1.
内蒙古草原作为全球干旱、半干旱区的重要组成部分,是诸多研究关注的热点区域。家庭牧场作为内蒙古草原基本的生产和管理单元,探析其可持续发展有助于为实现区域可持续发展提供科学依据。本研究阐述了内蒙古草原家庭牧场的形成历程及定义;并分别侧重自然生态系统、社会经济系统、自然-经济-社会复合生态系统3个方面总结了其研究进展;最后分别在坚持草牧业发展理念、依托景观可持续性科学指导、加强3个界面耦合研究、扩展沙地草原、关注未来发展模式、重视技术支撑等6个方面就内蒙古草原家庭牧场进行了研究展望。希望本研究在为内蒙古草原可持续发展提供科学支撑的同时,亦能为全球干旱、半干旱草原区的可持续发展提供参考。 相似文献
2.
不同吸附特性的稻草生物炭对稻田氨挥发和水稻产量的影响 总被引:1,自引:1,他引:0
秸秆生物炭具有改善土壤生态环境、土壤蓄水保肥和减少温室气体排放等正效应,但其石灰效应会加大稻田氨挥发损失。为充分发挥生物炭吸铵特性,降低其石灰效应的不利影响,对不同热解温度(300、500、700℃)和酸化水平(pH值=5、7、9)稻草生物炭处理下的田面水NH_4~+-N浓度、氨挥发和水稻产量进行了研究。结果表明:偏酸性(pH值=5)、中性(p H值=7)生物炭处理在基肥期和分蘖肥期均能显著降低田面水NH_4~+-N峰值浓度(P0.05),降幅达16.90%~35.60%。全生育期稻田氨挥发损失占施氮量的15.14%~26.05%(2019年)、15.10%~19.00%(2020年)。稻田增施热解温度为700℃、酸化水平为5(p H值=5)的生物炭(C700P5)降氨效果最好,两年氨挥发分别显著降低22.93%、12.61%(P0.05)。高温热解配合偏酸性、中性生物炭(C700P5、C700P7)增产效果显著,增产率达9.92%~13.50%,结构方程模型表明,其增产原因是生物炭酸化处理降低了稻草生物炭的石灰效应,而热解温度调整提高了生物炭阳离子交换量(CationExchange Capacity,CEC),进而降低了田面水NH_4~+-N浓度和氨挥发损失,最终提高了水稻地上部氮素积累和水稻产量。研究可揭示不同热解温度和酸化水平制备的生物炭在稻田中的应用潜力,并为稻田合理施用生物炭和减少化肥施用量提供理论依据。 相似文献
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Perennial live paddy planting rice on the basis of conventional fertilization, by basal + can, tillering, closed herbicide + company + can, can (20% less nitrogen) basal + partner, 100% of nitrogen in the whole stages base + can with different processing, performance from the growth of rice, rice tillering, leaf chlorophyll value, yield and increasing costs, unit yield inceement, VCR, etc, with increasing can improve rice leaf chlorophyll content, promote rice tillers, makes the rice growth, significantly increase rice yield and output value, according to labor saving, has demonstrated and value. 相似文献
5.
我国稻米加工起步于大规模采集野生稻的时期,最初是采用稻谷直接制成米的“稻出白”工艺,后来采用稻谷先制成糙米、糙米再制成米的“糙出白”工艺,两者构成了沿用几千年的古代稻米加工工艺;19世纪60年代开始,增加稻谷清理、白米整理等工段,构成了近代稻米加工工艺;到20世纪末,增加稻谷分级、下脚整理、稻壳整理、副产品整理、糙米精选、白米精选、白米色选、白米抛光等工序,构成现代稻米加工工艺;进入21世纪以来,新增了回砻谷净化、糙米净化、刷米与抛光组合、多道色选、留胚粒分选等工序,构成了当代稻米加工工艺;今后通过增加多等级大米联产、多等级大米与留胚米联产等专利加工工艺,将构成加工过程更加精准且智能化、低破碎、低能耗和环境友好的未来稻米加工工艺。 相似文献
6.
AbstractA study was carried out in sandy clay loam textured soil of Mymensingh, Bangladesh to evaluate weed control efficiency of pre-emergence herbicide pyrazosulfuron-ethyl either alone or in sequential application with post-emergence herbicide in transplanted rainy season rice under non-puddled strip-tilled (NPST) field condition and also to examine the residual effect of those herbicides on germination and growth of the subsequently grown wheat crop. Five treatment combinations of pyrazosulfuron-ethyl were tested against one weedy check and one weed-free check. The study revealed that NPST rice field was mostly infested by grass and sedge weeds and herbicide treatments offered a wide range of control (above 50% to 95%) on all types of weeds. Application of pyrazosulfuron-ethyl followed by (fb) orthosulfamuron fb butachlor plus propanil provided the most effective and economic weed control over two years of the study. Moreover, micro-plot bioassay study claimed germination and growth of subsequently grown wheat were not adversely affected by herbicides that were applied in rice. Therefore, application of pyrazosulfuron-ethyl followed by post-emergence herbicide could be effective and economic to control weeds in NPST rice under rice-wheat system, but proper rate and time of application should strictly be followed. 相似文献
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在自然因素和人类活动的共同作用下,生态系统格局和质量都发生变化,而生态系统格局和质量的变化直接影响生态系统服务和人类福祉。锡林郭勒盟位于内蒙古中部地区,是京津冀地区的重要生态安全屏障,也是主要的畜产品供应地,研究锡林郭勒盟生态格局演变及驱动因素对于构建内蒙古北方生态安全屏障有重要意义。本研究利用遥感影像,通过分析2000和2015年生态系统类型和质量的变化,探讨资源开发、城市化发展、政策实施等多重因素对生态系统格局演变的作用。研究结果表明: 2000-2015年间锡林郭勒盟生态系统质量整体好转,草地生态系统质量中东部地区提高最为明显;草地、灌丛、城镇、裸地、湿地、森林、矿区面积有所增加,农田、沙地、水域面积有所减少;锡林郭勒盟生态系统格局和质量受到人为和自然因素的共同影响,其中,与降水正相关,与温度负相关。GDP与采矿用地显著正相关,退耕还草政策促使农田向草原转移。 相似文献
9.
Gustavo Pereira Valani Aline Fachin Martíni Laura Fernanda Simes da Silva Renata Cristina Bovi Miguel Cooper 《Soil Use and Management》2021,37(1):22-36
Integrated crop–livestock–forest is a promising strategy to improve soil quality. It comprises four different integrated farming systems: crop–livestock, crop–forest, forest–livestock and crop–livestock–forest. This work systematically reviewed studies about integrated crop–livestock–forest systems and soil quality. A total of 92 papers were retrieved from the Web of Science—Clarivate Analytics platform, and the following information was analysed: publication year, institution, region of the studied site, type of integrated system, soil type, tillage system, maximum soil depth and the soil quality indicators assessed. Most studies were published in the second half of the 2010s. Brazil is a prominent focus of research about soil quality and integrated crop–livestock–forest systems, with significant contribution from its central and southern regions. The Embrapa was the main publishing institution, present in over one‐third of the studies. Crop–livestock was the most common integrated system, Ferralsols was the most common soil group, and most of the studied soils were clayey. No tillage was the main tillage system. Most studies focused on the topsoil, assessing physical and/or chemical soil quality indicators. More emphasis on biological indicators of soil quality is required, as well as assessments integrating biological, physical and chemical indicators of soil quality. Future works should compare different integrated systems, including assessments deeper in the soil profile, especially in systems with the forest component, and also in sandy and silty soils. Soil quality indicators that have been rarely used should be further tested. Novel indicators should be added to better understand the promotion of soil quality by integrated crop–livestock–forest systems. 相似文献
10.
Due to rapid urbanization and industrialization, many soils for crop production are contaminated by cadmium(Cd), a heavy metal highly toxic to many organisms. Cereal crops such as rice, wheat, maize, and barley are the primary dietary source of Cd for humans, and reducing Cd transfer from soil to their grains is therefore an important issue for food safety. During the last decade, great progress has been made in elucidating the molecular mechanisms of Cd transport, particularly in rice. Inter-and intraspecific variations in Cd accumulation have been observed in cereal crops. Transporters for Cd have been identified in rice and other cereal crops using genotypic differences in Cd accumulation and mutant approaches. These transporters belong to different transporter families and are involved in the uptake, vacuolar sequestration, root-to-shoot translocation, and distribution of Cd. Attempts have been made to reduce Cd accumulation in grains by manipulating these transporters through overexpression or knockout of the transporter genes, as well as through marker-assisted selection breeding based on genotypic differences in Cd accumulation in the grains. In this review, we describe recent progress on molecular mechanisms of Cd accumulation in cereal crops and compare different molecular strategies for minimizing Cd accumulation in grains. 相似文献