Results 1 to 10 of about 347,963 (158)
将用户侧电、热、气等多种形式能源集成构建微能源系统,能够综合考虑多能流的转换、存储与传输过程中的互补特性,有利于提升系统的整体能源利用效率。然而,系统中不同形式能量的物理属性和传输特性差异较大,现有模型在研究多能流的传输和转换过程时,难以完整考虑热量传输约束及其对能量转换的影响。针对微能源系统中的综合能量管理问题,构建了热力系统中换热器的非线性传热模型,并考虑了热量传输对能量转换效率的影响。同时,结合光伏电池、储能电池、热泵、燃气锅炉、太阳能集热器及相变储热装置建立了微能源系统中能量传输与转换的整体模型,
苟星 +5 more
doaj +1 more source
Study on Isolation, Purification and Thermal Stability of Cashew Allergen Ana o 3(腰果过敏原Ana o 3蛋白的分离纯化及热稳定性研究) [PDF]
Ana o 3 is one of the main allergens of cashew nuts (Anacardium occidentale Linn.). Using raw cashew nuts as raw materials, the crude protein was extracted by crushing and degreasing, low-salt extraction.
XIAO Zhiwen(肖志文) +4 more
doaj +1 more source
基于CNN-Bi-LSTM功率预测的海岛综合能源系统优化调度 [PDF]
合理构建海岛综合能源系统对沿海能源清洁化转型意义重大,其优化调度更是实现海岛能源供需平衡的有效途径。为此,提出了一种考虑风光功率预测的海岛综合能源系统优化调度方法。首先,搭建包含氢能设备、海水源热泵、海水淡化装置、波浪能发电装置等新型能源转换设备的系统模型。其次,海上气候多变会导致新能源发电不稳定,故采用含环境变量重要性排序的一维卷积神经网络和双向长短时记忆神经网络(convolutional neural network-bi-directional long short-term memory ...
王润治 +4 more
doaj +1 more source
Au-Ag@PDA纳米颗粒介导的光热作用通过RNF20泛素化途径引起皮脂腺细胞缩小
光热效应选择性作用于皮脂腺,抑制皮脂腺增生、抑制皮脂分泌,作为一种新的潜在的治疗痤疮的方法备受关注。Au-Ag@PDA纳米颗粒吸收近红外后具有良好的光热转换效率。本课题组首次发现干细胞膜载Au-Ag@PDA纳米颗粒,在808nm激光照射后显著缩小金黄地鼠皮脂腺斑大小并减少皮脂分泌[1]。本实验通过蛋白质组学分析方法,分析光热作用于皮脂腺后蛋白质谱的变化,进一步探讨机制。为新型光敏剂治疗痤疮提供理论依据。
金东成 +5 more
doaj +2 more sources
Study on Immobilization of Bromelain by Modified Pineapple Peel Residue Cellulose(改性菠萝皮渣纤维素固定化菠萝蛋白酶研究) [PDF]
In order to explore the feasibility of modified cellulose as immobilization enzyme carrier, the extracted pineapple peel residue cellulose was uniformly modified with L-serine in ionic liquid and used to immobilize bromelain.
CHEN Hui(陈辉) +1 more
doaj +1 more source
太阳能驱动界面蒸发(Solar-driven interfacial evaporation,SDIE)是以光热转换为原理,太阳能在光热材料表面转换为热能,使水由液态转化为气态,具有环境友好和高效蒸发的优点,在水处理中备受关注。但目前仍面临光热转换效率低,耐盐性差以及规模化应用成本偏高等问题。首先回顾了太阳能驱动界面蒸发技术的发展历程,系统介绍了碳基光热材料的光热转换机理与界面蒸发器的设计。综述了不同碳基光热材料在太阳能驱动界面蒸发中的研究进展,包括基础碳材料,如石墨烯、碳纳米管和炭黑,碳基复合材料 ...
任芝军, 张宗伟, 任铁真
doaj +4 more sources
Advances in Thermoelectric Cu2ZnSnS4: From Structure, Synthesis to Performance
ABSTRACT Thermoelectric technology has the capacity to directly convert waste heat into electricity and vice versa. For a long time, Cu2ZnSnS4 (CZTS) has been extensively researched in the domains of solar cells and photocatalysis due to its exceptional photovoltaic properties, but its wide bandgap prevents it from being favored in thermoelectrics ...
Xiaojun Li +3 more
wiley +1 more source
Visible‐Light‐Excited Optical Thermometry in Ca3Sc2Si3O12: Er3+ via an Efficient Eu2+ Bridge
ABSTRACT Er3+ ions are promising for optical thermometry due to their thermally coupled levels. However, their parity‐forbidden transitions result in weak and narrowband absorption, which restricts excitation to infrared lasers (e.g., 808, 980, or 1550 nm). Moreover, the single emission center inherently limits temperature sensitivity. In this work, we
Yi Liu +6 more
wiley +1 more source
太阳能热脱盐(Solar thermal desalination,STD)是一种极具潜力的低能耗、可持续海水淡化新方法,可用于在能源基础设施不完备的干旱地区生产清洁淡水。目前,通过改进太阳能吸收材料和系统设计来提高STD效率受到越来越多的关注。系统地介绍了各类高效光热转换材料的特点及其在利用太阳辐射进行海水淡化方面的应用,然后从隔热结构和冷凝结构设计等不同的角度讨论了STD系统的热能管控措施,并进一步阐明了潜热回收的重要性,最后,总结了STD系统工艺现有的局限性和提高STD系统脱盐效率的有效途径 ...
陈付爱, 牛纪娥
doaj +2 more sources
Enhanced Dual‐Modality CT Imaging for Evaluating Hematogenous Metastasis During Photothermal Therapy
Dual‐modality computed tomography (CT) nanoprobes, BPP, are developed for real‐time microscopic monitoring of microvessel morphology and vascular permeability to provide predictive insights into cancer progression and metastasis. ABSTRACT Dynamic assessment of hematogenous metastasis is crucial for the tumor during photothermal therapy.
Yanhong Sun +7 more
wiley +1 more source

