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환경 분석

Bettersize에서 제공하는 기기는 토양 및 퇴적물 샘플의 입자 크기 분석 및 모래 함량 분석을 수행할 수 있습니다. Bettersizer 시리즈 입자 크기 분석기는 토양 및 퇴적물 과학 분야의 실험실에서 널리 사용되고 있습니다.

 

입자 크기 분포 측정은 토양 질감을 분석하는 데 널리 사용되는 방법으로, 농업 기술에서 토양 질서를 분류하는 데에도 일반적으로 활용됩니다. 또한, 토양의 입자 크기 분포를 기반으로 다른 수리학적 특성을 추정하는 중요한 연구 분야로 자리잡고 있습니다. 입자 크기 분석기는 입자 크기 분포를 결정할 수 있는 능력 덕분에 이 분야에서 주요한 연구 도구로 사용되고 있습니다.

 

또한, 입자 크기 분포제타 전위에 대한 지식은 미세한 실트 및 점토 입자의 이동을 예측하고, 강과 바다가 만나는 지점에서 모래톱 형성을 예측하는 데 도움이 될 수 있습니다.

 

Bettersizer 시리즈 입자 크기 분석기는 토양의 입자 크기 및 입자 형태 데이터를 신속하게 얻을 수 있도록 도와 여러 분야에서 토양 특성을 효과적으로 평가할 수 있게 해줍니다.

 

이 측정 기술은 다음과 같은 용도로 활용할 수 있습니다:

  • 점토, 실트, 모래 입자의 함량을 빠르게 측정하고 토양 질감을 분류
  • 입자 간 상호작용 평가
  • 입자 축적, 다공성 및 투과성 평가
  • 입자 구조 평가

 

Bettersize의 입자 크기 분석 기술은 토양의 물리적 특성 평가와 관련된 다양한 응용 분야에서 중요한 역할을 합니다.

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Citations

  • Bettersizer 2600

    Functional redundancy as an indicator for evaluating functional diversity of macrobenthos under the mussel raft farm near Gouqi Island

    DOI: 10.1016/j.aquaculture.2023.740024 Read Article Go logo
    Zhejiang Ocean University | 2024
    Biological traits analysis (BTA) helps to evaluate the effects of different environmental variables on the traits-based functional composition of macrobenthos. However, research on functional traits of macrobenthos under mussel farming is limited. We investigated the spatial and temporal response of the benthic system in terms of taxonomic and functional diversity to environmental variables of farming and natural stressors resulting from suspended mussel farming near Gouqi Island of eastern China Sea. The functional traits of macrobenthic assemblages under mussel farming were characterized by “medium adult body size”, “vermiform body form”, “high flexibility”, “infauna”, “semi-motile”, “gonochoristic”, “surface deposit-feeders”, “carnivores”, “semi-motile burrowers”, and “tube-dwellers”. Functional redundancy was stable in response to mussel farming stresses among seasons, whereas species diversity showed efficient to evaluate natural variables. Functional diversity was significantly affected by farming stressors rather than natural variables, Further analysis using multivariate methods together with continuous monitoring were highlighted to evaluate the impacts of mussel farming. Our results reinforce the importance of macrobenthic species and functional traits analysis to evaluate human stresses driven impacts in offshore ecosystems. By analysing the environmental variables with different sources, independently, we concluded the main effects of human pressures on macrobenthic community. Such distinction could be particularly effective to isolate variable environmental descriptors and evaluate their effects on functional diversity, making the current approach promising for the evaluation of ecological effects of anthropogenic stressors in aquaculture areas.
  • Bettersizer 2600

    Degradation characteristics and utilization strategies of a covalent bonded resin-based solid amine during capturing CO2 from flue gas

    DOI: 10.1016/j.seppur.2023.125621 Read Article Go logo
    China University of Petroleum | 2024

    In this study, various types of degradation as well as attrition which are possibly encountered in a circulating fluidized bed temperature swing adsorption (CFB-TSA) process, were conducted experimentally to evaluate the stability of a resin-based solid amine sorbent. Other characterizations methods, such as elemental analysis (EA), Fourier transform infrared spectroscopy (FTIR) etc. were applied to further reveal the degradation mechanisms. The results showed that thermal degradation occurs from 140–160 °C due to the decomposition of amine group. The CO2-induced degradation occurs from a higher temperature of 160–180 °C accompanied by the production of urea. Hydrothermal stability is good below 130 °C, but the ionic impurities in steam crystalized on particle surface can accelerate the degradation. Oxidative degradation is the most harmful, which starts at a lower temperature of 70–80 °C with the formation of aldehyde. The existence of H2O in atmosphere can alleviate the oxidative and CO2-induced degradations. The employed sorbent has a very low attrition index of 0.05, which is 1–2 orders lower than typical commercial fluidized bed catalysts. Based on the results of stability evaluation, some design suggestions for proper utilization of this sorbent or other similar resin-based sorbents have been provided in an industrial CFB-TSA process.

  • Bettersizer 2600

    De-branching of starch molecules enhanced the complexation with chitosan and its potential utilization for delivering hydrophobic compounds

    DOI: 10.1016/j.foodhyd.2023.109498 Read Article Go logo
    Shihezi University | 2024
    The current study aimed to prepare the complexes between debranched-waxy corn starch and chitosan polymers (DBS-CS), and then investigated their corresponding structural characteristics, rheological property and potent application in Pickering emulsion. The results indicated that the existence of chitosan significantly inhibited starch short-range molecular rearrangement for all DBS-CS samples, which was manipulated by both debranching treatment and chitosan content. Interestingly, this is the first study to reveal that the outstanding peak at 1.8 ppm in 1H NMR spectrum for sample DBS-CS was gradually shifted towards a lower-field region following an increased chitosan content. Moreover, the debranching treatment shifted the crystallinity pattern from A-type to B-type and the relative crystallinity of DBS-CS decreased gradually with the increased content of CS. All samples had a pseudoplastic fluid and shear-thinning behavior with an enhanced shear resistance following the complexation. The DBS-CS was applied in a Pickering emulsion for showing a greater emulsifying stability and a lower gel strength than native NS-CS prepared emulsion. Importantly, the encapsulation ability of curcumin in the DBS-CS emulsion was significantly improved, followed by an increase of 15.45% for its corresponding bioavailability compared to the control. Therefore, this study might highlight a potential carrier for delivering the bioactive substances in a green pattern.
  • Bettersizer 2600

    Heat-induced aggregation behavior of wheat gluten after adding citrus pectin with different esterification degree

    DOI: 10.1016/j.foodhyd.2023.109420 Read Article Go logo
    Gansu Agricultural University | 2024
    Wheat gluten aggregation during heat treatment is beneficial to the final quality of gluten-based products. Exogenous pectin can affect gluten aggregation. However, the effect of pectin with different degrees of esterification on the heat-induced aggregation behavior of gluten and its possible mechanism are still unclear. Thus, the heat-induced aggregation behavior of gluten after adding pectin with different esterification degree was studied in this study. When the temperature was raised from 25 °C to 95 °C, pectin affected gluten aggregation and was related to the degree of esterification. Specifically, the results of rheological properties and particle size indicated that low-ester pectin improved the viscoelasticity of gluten and promoted gluten aggregation. Thermal properties revealed that enthalpy of gluten added with low-ester pectin (37%) increased from 92.96 J/g to 95.40 J/g during heating process. Structurally, the fluorescence intensity and surface hydrophobicity of gluten added with low-ester pectin (37%) were lower than those added with high-ester pectin (73%). In addition, low-ester pectin (37%) significantly increased the disulfide bond content (from 15.31 μmol/g to 18.06 μmol/g) and maintained β-sheet content of gluten compared with gluten alone at 95 °C, indicating that low-ester pectin was more likely to induce gluten aggregation. However, scanning electron microscope showed that the gluten added with low-ester pectin (46%) exhibited a denser network structure at 95 °C than that added with low-ester pectin (37%). These results will provide a theoretical base for the regulation of gluten aggregation and the quality of gluten-based products by pectin with different esterification degree.
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더 많은 리소스

관련 입자 크기 분석기

  • Bettersizer S3 Plus

    Bettersizer S3 Plus

    입자 크기 및 모양 분석기

    측정 범위: 0.01 - 3,500μm(레이저 시스템)

    측정 범위: 2 - 3,500μm(이미지 시스템)

  • Bettersizer ST

    Bettersizer ST

    원스톱 입자 크기 분석기

    분산 유형: 습식

    측정 범위: 0.1 - 1,000µm

    반복성: ≤1% 편차

  • Bettersizer 2600

    Bettersizer 2600

    레이저 회절식 입도 분석기

    습식 측정 범위: 0.02 - 2,600μm

    건식 측정 범위: 0.1 - 2,600μm

    이미지 분석 범위: 2 - 3,500μm

  • BeDensi T Pro Series

    BeDensi T Pro 시리즈

    비용 효율적인 탭밀도 측정기

    작업 스테이션 수: 1-3

    탭핑 속도: 100 - 300 탭/분

    반복성: ≤1% 변동

  • BeDensi B1 Bulk Density Tester

    BeDensi B1

    벌크 밀도 테스터

    측정: 벌크 밀도

    GB/T 16913 준수

  • HFlow 1 Flowmeter Funnel

    HFlow 1

    유량계 깔때기

    측정: 벌크 밀도 및 유량

    USP, Ph. Eur., ASTM 및 ISO 표준 준수

  • PowderPro A1

    PowderPro A1

    자동 분말 특성 시험기

    작동 모드: 자동

    탭 속도: 50 - 300 탭/분

    반복성: ≤3% 편차

  • BeVision D2

    BeVision D2

    동적 이미지 분석기

    분산 유형: 건조

    측정 범위: 30 - 10,000μm

    기술: 동적 이미지 분석

  • BeVision M1

    BeVision M1

    자동식 입자 이미지 분석기

    분산 방식: 건식

    측정 범위: 0.3μm ~ 10mm

    적용 기술: 정적 이미지 분석

  • Bevision-S1 Classical and Versatile Static Image Analyzer

    BeVision S1

    클래식하고 다재다능한 정적 이미지 분석기

    분산 유형: 건식 및 습식

    측정 범위: 1 - 3,000μm

    기술: 정적 이미지 분석

  • BetterPyc 380 Gas pycnometer

    BetterPyc 380

    진밀도 측정기

    기술: 가스치환법

    온도 범위: 10 - 65 ℃

    해상도: 0.0001g/cm³

  • BeDensi AR Angle of Repose Tester

    BeDensi AR

    안식각 측정기

    측정 종목: 안식각

    USP 및 Ph. Eur.표준을 준수

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    BeScan Lab

    안정성 측정기 솔루션

    0.01~1,000μm의 입자 크기 측정 범위

    비파괴 안정성 분석: 비접촉, 비희석, 비전단

    불안정화를 가속화하기 위해 최대 80°C까지 온도 제어