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    • 5. 发明申请
    • AN ANTI-MICROBIAL FABRIC IMPREGNATED WITH THE CONJUGATE OF SILVER NANO PARTICLES AND ALOE VERA COLLOIDAL SOLUTION AND A METHOD OF PRODUCING SAME
    • 用纳米银颗粒和芦荟胶体溶液共轭物浸渍的抗微生物织物及其生产方法
    • WO2018011822A1
    • 2018-01-18
    • PCT/IN2017/050279
    • 2017-07-07
    • SHRI A.P.D. JAIN PATHASHALA (TRUST)
    • SHARON, MadhuriPHADKE, Chinmay
    • D06M15/00
    • D06M23/08A01N59/16D06M16/00D06M2101/06D06M2101/12D06M2101/32A01N25/04A01N25/24A01N25/26A01N25/34
    • The invention relates to an anti-microbial fabric impregnated with a conjugate of silver nano particles and Aloe vera (AgNP+Aloe) colloidal solution having anti-microbial property and size of 15-20nm made by synthesizing 2.5 mL of 30% ammonia solution was added to 5 mL of 10-2 M AgNO3 solution followed by addition of 5 Ml of the Aloe vera extract and a method of producing antimicrobial silver nano-particle and Aloe vera conjugated multi-purpose nano-fabric. The said method comprises steps of: a) preparation of Aloe vera gel extract and preparing required dilution with pure water; b) addition of silver nitrate stock to gel extract of step (a) for synthesis of silver nano particles (SNP); c) visual observation of color change to confirm completion of reaction in step (b); d) selecting desired shape of spherical monodispersed colloidal SNP-aloe having more active facets (electron dense facets) and strongest biocidal action and size of silver nanoparticles ranges from 20 – 40 nm. e) making visual, spectrophotometric & XRD characterization of synthesized SNP- aloe for synthesis of silver nanoparticles confirmed by its yellow colour formation; f) confirming the formation of silver nanoparticles by UV-Vis spectrophotometric characterization of SNP- aloe; g) coating SNP- aloe on desired fabric such as fabrics coated are cotton (a plant derived fabric), silk (an animal fabric) and polyester (a synthetic fabric).
    • 本发明涉及用银纳米粒子和芦荟(AgNP +芦荟)胶体溶液的缀合物浸渍的抗微生物织物,所述胶体溶液具有抗微生物性质和尺寸为15-20nm,通过合成2.5 mL的30%氨溶液加入到5mL的10-2M AgNO 3溶液中,然后加入5ml芦荟提取物和生产抗微生物银纳米颗粒的方法, 芦荟凝胶多用途纳米织物。 所述方法包括以下步骤:a)制备芦荟凝胶提取物并用纯水制备所需的稀释液; b)将硝酸银原料加入步骤(a)的凝胶提取物中以合成银纳米颗粒(SNP); c)目测观察颜色变化以确认步骤(b)中的反应完成; d)选择具有更多活性小平面(电子密度小平面)和最强的杀生物作用和银纳米粒子尺寸的球形单分散胶态SNP-芦荟的期望形状为20-40nm。 e)制作视觉,分光光度& 合成SNP-芦荟的合成银纳米粒子的XRD表征通过其黄色形成证实; f)通过UV-Vis分光光度法表征SNP-芦荟确认银纳米颗粒的形成; g)在期望的织物上涂布SNP-芦荟,例如涂布的织物是棉(植物衍生的织物),丝(动物织物)和聚酯(合成织物)。
    • 8. 发明申请
    • 自己水面拡散型省力化薬剤
    • 自来水表面扩散式节能剂
    • WO2017159296A1
    • 2017-09-21
    • PCT/JP2017/007119
    • 2017-02-24
    • 清水 愼一
    • 清水 愼一
    • A01N25/00A01N25/02A01N25/04A01P9/00A01P13/00
    • A01N25/00A01N25/02A01N25/04
    • 【課題】水流、水流及び水の移動がなくても或いは少なくても、水環境の水面に滴下することで、水面全面に短時間で自己拡散する薬剤であって、ジャンボ剤及び水面展開剤よりもさらに水環境への薬剤散布作業の省力化、均一拡散化を図ることができる、従来の薬剤型に分類されない、自己水面拡散型省力化薬剤(スプレッディング・サスペンション(SS:Spreading Suspension)剤)を提供する。 【解決手段】本発明は、上記課題を解決するため、少なくとも、液状、粒又は粉状の薬品成分と、前記薬品成分に溶解又は吸着し、或いは前記薬品成分を被覆し、水面で前記薬品成分を拡散させる液状の拡散作用成分を含んでなる流動性の混合物で、かつ、前記流動性の混合物が20倍の重量の、0℃より高く40℃より低い温度範囲の水中に一様に、溶解、懸濁又は乳化しないことを特徴とする自己水面拡散型省力化薬剤の構成とした。
    • 一个水流量,是没有水流和水,水环境的水表面,自扩散在水中的表面上很短的时间在整个表面上的药物滴加运动甚至或更低 ,撒肥型节约药剂(撒布悬浮液,不分类为常规药物类型,比大型药剂和水面撒布剂可节省药物对水环境的喷洒工作的劳动力,均匀撒布) (SS:Spreading Suspension)代理)。 在本发明中,为了解决上述问题,至少,液体,颗粒或粉末的化学成分,溶解或吸附于药物组分,或覆盖药物成分,所述在水中的化学成分 并且将可流动混合物均匀溶解于温度范围大于0℃且小于40℃的水中,其重量是可流动混合物的20倍 并且不会悬浮或乳化,这是一种自我表面扩散型劳动节省剂。

    • 9. 发明申请
    • SYNERGISTIC FUNGICIDAL COMPOSITION FOR CONTROLLING PLANT DISEASES
    • 用于控制植物病害的协同杀真菌组合物
    • WO2017155091A1
    • 2017-09-14
    • PCT/JP2017/009715
    • 2017-03-10
    • SUMITOMO CHEMICAL COMPANY, LIMITED
    • KIGUCHI, So
    • A01N43/54A01N43/56A01P3/00A01N25/00A01N25/04A01N25/14
    • A01N43/56A01N43/54A01N25/00A01N25/04A01N25/14
    • The present invention provides a composition for controlling a plant disease comprising a carboxamide compound represented by formula (1), and at least one 5-fluorouracil compound selected from the following Group (A), and a method for controlling a plant disease, comprising a step of applying each effective amount of the carboxamide compound represented by the above formula (1) and at least one 5-fluorouracil compound selected from the following Group (A) to a plant or soil for cultivating the plant, Group (A): a group consisting of 4-amino-5-fluoro-1-tosylpyrimidin-2(1H)-one, 5-fluoro-4-imino-3-methyl-1-tosyl-3,4-dihydropyrimidin-2(1H)-one, and 5-fluoro-3-methyl-4-(methylimino)-1-tosyl-3,4-dihydropyrimidin-2(1H)-one, the composition and method having excellent control efficacies against plant diseases.
    • 本发明提供了用于防治植物病害的组合物,其包含由式(1)表示的甲酰胺化合物和至少一种选自以下组(A)的5-氟尿嘧啶化合物,以及方法 包括将有效量的上式(1)所示的羧酰胺化合物和选自下述(A)组中的至少一种5-氟尿嘧啶化合物施用于植物或土壤以培养 植物,组(A):由4-氨基-5-氟-1-甲苯磺酰基嘧啶-2(1H) - 酮,5-氟-4-亚氨基-3-甲基-1-甲苯磺酰基-3,4-二氢异喹啉 (1H) - 酮和5-氟-3-甲基-4-(甲基亚氨基)-1-甲苯磺酰基-3,4-二氢嘧啶-2(1H) - 酮的组合物和方法, 植物病害。
    • 10. 发明申请
    • POTENTIATION OF FIXED COPPERS AND OTHER PESTICIDES
    • 固定铜和其他农药的潜力
    • WO2017131958A1
    • 2017-08-03
    • PCT/US2017/013113
    • 2017-01-12
    • SABIN, Robert
    • SABIN, Robert
    • A01N25/22A01N25/24A01N25/30A01N25/32A01N59/16A01N59/20
    • A01N59/20A01N59/16A01N25/04A01N25/32
    • A pesticide composition includes at least one biologically inert carrier; and at least one ferrite or at least one doped component including at least one fixed copper compound doped with at least one compound selected from the group consisting of iron compounds, zinc compounds, magnesium compounds, calcium compounds, and combinations and/or mixtures thereof. In one embodiment, the doped component has a particle size of about 0.5nm to about 30 microns. A method for the control of pests includes the step of applying to the pests or their growth habitat the aforementioned composition. The method also includes the control of fungal and other bacterial and viral diseases in banana plants, by applying the aforementioned composition to their growth habitat in banana plant groves.
    • 农药组合物包含至少一种生物惰性载体; 以及至少一种铁氧体或至少一种掺杂组分,其包括至少一种掺杂有选自铁化合物,锌化合物,镁化合物,钙化合物,以及它们的组合和/或其混合物的至少一种化合物的固定铜化合物。 在一个实施例中,掺杂组分具有约0.5nm至约30微米的粒度。 用于防治害虫的方法包括向害虫或其生长栖息地施用上述组合物的步骤。 该方法还包括通过将上述组合物应用于其在香蕉植物园中的生长栖息地来控制香蕉植物中的真菌和其他细菌和病毒疾病。