卡博特 碳黑技术参数

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炭黑MSDS

炭黑MSDS

blacks. The foregoing are registered trade names of Cabot Corporation, and denote
physical differences in carbon black grades.
Manufacturer抯 Product Code: Not applicable.
MSDS
Page 2 of 6
MATERIAL SAFETY DATA SHEET
Swallowed: None expected.
Eye: Mechanical irritant with no adverse effects.
Skin: None expected but may dry skin with prolonged exposures. Use of quality barrier cream can prevent skin dryness.
Inhaled: None expected. Temporary discomfort to the upper respiratory tract may occur due to inhalation of dust concentrations above the OEL.
Human Studies: Epidemiological studies of workers in the carbon black producing industries of North America and Western Europe show no evidence of clinically significant, adverse health effects due to occupational exposure to carbon black.

卡博特化工(山东)有限公司

卡博特化工(山东)有限公司

卡博特化工(山东)有限公司年产21万吨优质新工艺炭黑工程环境影响报告书(简本)1拟建工程简介卡博特化工(化工)有限公司21万吨优质新工艺工程属于新建项目。

拟建工程厂址位于济宁高新技术产业开发区内,国际大道以南,西浦路以东,兖州西站以北区域。

总投资9800万美元。

占地330000m2。

预计2009年12月投产。

拟建工程主要建设3条湿法造粒炭黑生产线及能源中心系统。

炭黑生产原料油采用蒽油、乙烯焦油、炭黑油、Decant Oil(进口油)、Carbon Black Oil(进口油)按一定比例的混合油,燃料采用天然气。

尾气发电锅炉燃料为炭黑尾气,来自拟建的炭黑生产线,用管道送至锅炉。

拟建工程劳动总定员110人,年工作时间计8208小时。

拟建工程用水由济宁市高新技术产业开发区建设局负责供给,自来水公司水源来自兖西水源地。

目前济宁市高新技术产业开发区内供水管网已建设完毕,供水能力能够确保拟建工程生产生活用水需要。

拟建工程组成中环保工程主要有炭黑粉尘除尘系统、粉尘浓度连续在线监测装置、废气集气排气设施、脱硫系统、废水治理措施、噪声治理设施、厂区绿化等,环保投资7351万元。

2工程建设产业政策符合性拟建工程符合《资源综合利用目录(2003年修订)》、《国家鼓励发展的资源节约综合利用和环境保护技术》、《橡胶工业'十一五'科学发展规划意见》、《当前优先发展的高技术产业化重点领域指南(2007年度)》、《产业结构调整指导目录(2005年本)》鼓励类、《“十五”我国橡胶加工及炭黑工业环保技术及措施》等要求。

拟建工程不属于《关于进一步加强产业政策和信贷政策协调配合控制信贷风险有关问题的通知》当前部分行业制止低水平重复建设目录、《产业结构调整指导目录(2005年本)》淘汰类、限制类。

综上所述,拟建工程建设符合相关国家产业政策要求。

3工程建设城市总体规划符合性根据《济宁高新技术产业开发区总体规划(2003-2020)》,济宁高新技术产业开发区功能定位为:以高新技术产业和外向型经济为主的综合性工业园区和集商贸、科研、生活服务于一体的现代化城市新区。

卡博特炭黑技术资料

卡博特炭黑技术资料

2Table of contents252000 561515Introduction Hig h jet masstone is a requirement of hig h-end performancecoating applications such as automotive OEM or automotiverefinish. The demand for increased jetness has heightened with theemerg ence of new resin technolog y. For this reason, raw materialand dispersion equipment suppliers have looked for ways to improvetheir products. In this respect, Cabot Corporation is no exceptionand continues to supply the market with innovative ideas for blackpigments that meet current market needs.This technical paper presents a summary of information reg ardingthe effect certain fundamental properties of carbon black may haveon coatings performance.It also outlines information on Cabot’s core line of hig h-colorcarbon black pig ments, including the well-established MONARCH1300 and MONARCH 1400 carbon blacks. Also covered aretwo new pigments, MONARCH 1500 carbon black and the revolu-tionary EMPEROR 2000 carbon black. While MONARCH 1300,MONARCH 1400, and MONARCH 1500 carbon blacks areoxidized pig ments, EMPEROR 2000 carbon black is based onCabot’s proprietary surface modification technology.This brochure demonstrates the ability of EMPEROR 2000 carbonblack to impart superior jetness in high performance coating applica-tions. The test criteria used to collect and to compare performancedata on these grades are highlighted in Section II of this brochure.3High-Color Carbon Blacks for High Performance Coating ApplicationsI. Carbon Black Properties and Coating PerformanceOne of the major reasons carbon black is used in coating applications isfor its color properties. Color development can be measured by conver-ting the color spectral reflectance data into three-dimensional colorspace, as provided by the Hunter Color formula measurements, asshown here.In automotive topcoat applications, extreme black (low L* values) anddeep blue undertones (low b* values) are the desired colors. The keyproperties of carbon black that can affect this color goal are:1. Primary particle size/surface area2. Primary aggregate shape/morphology3. Surface chemistry■ Effect of Primary Particle SizeMost pigments absorb and scatter portions of the visible light spectrum.The color of paint depends on how well the pigment is able to absorband scatter light. Carbon black can be used to help increase the amountof light absorbed by a coating because it can absorb and scatter lightmore effectively than many other pigments.As a carbon black’s primary particle size decreases, more surface areabecomes available to incident light.Also, primary aggregates tend to be smaller, assuming a constantstructure level, resulting in a finer carbon black. The overall effect of thefiner carbon black particle size is increased light absorption and moreefficient light scattering, giving a blacker or “jetter” color.Hunter Color Definition■ Effect of StructureA carbon black characterized by aggregates composed of many pri-mary particles with considerable branching or chaining is referred to asa “high structure” black. Conversely, an aggregate having relatively fewparticles forming a more compact unit is a “low structure” black.As structure increases, the absorption and scattering efficiencies aredecreased. Thus, in primary particles of the same size, a high structureblack will exhibit lower jetness than a black having low structure.■ Effect of Surface ChemistryIncreasing the volatiles content (that is, chemisorbed oxygen complex-es) on the surface of carbon black will generally increase dispersibilityand lower viscosity in liquid systems. The dispersibility of carbon blackcan also be enhanced through the adsorption of a limited amount ofmoisture on its surface.To some extent, both the volatiles content and adsorbed moisture canfunction as surfactants, whereby the surface is more readily “wetted” bythe vehicle. However, as the volatiles content of carbon black increases,its surface becomes more acidic. Thus, care should be taken whenformulating coatings systems.■ Physical formMost commercial high-color carbon blacks are available in either fluffyor pellet form. The pellet form handles more easily (reduced dusting) andnormally costs less than the fluffy form. However, the process of densi-fication, which is used to create the pellet form, tends to pack carbonblack agglomerates more closely, making dispersion more difficult thanwith the fluffy form.4II. High-Color Carbon Blacks: Cabot MONARCH/ BLACK PEARLS 1300 & 1400, MONARCH 1500, and EMPEROR 2000 Carbon Blacks■ Properties of an ideal high-color black for coatingsAn ideal high-color carbon black should provide superior “jetness” in high-color enamels or lacquer coatings. As explained above, key properties of such a carbon black would include sufficiently fine-sized primary particles for increased light absorption and lower structure for increased light scat-tering.The volatiles content and moisture level also can be adjusted to improve dispersibility. When these properties are obtained, superior “jetness” in high performance coating systems can be achieved.■ MONARCH/BLACK PEARLS 1300 & 1400,MONARCH 1500 and EMPEROR 2000 Carbon BlacksMONARCH/BLACK PEARLS 1300 & 1400, MONARCH 1500 and EMPEROR 2000 are commercially available Cabot highcolor carbon blacks. Because of their properties, Cabot believes that they are able to impart superior “jetness” for high performance coating applications. They exhibit a very fine primary particle size (9-13 nanometers) for increased light absorption combined with a low structure (90-100 DBP) for increased light scattering. Together, these properties help to achieve superior color “jetness” and improved gloss in high performance coating systems. Additionally, the specifications for volatiles content and moisture levels of these Cabot carbon blacks are optimized to help maintain dispersibility. MONARCH/BLACK PEARLS 1300 & 1400, MONARCH 1500 are Cabot oxidized high-color carbon blacks. These high-color carbon blacks are produced through the process of chemisorption of oxygen complexes onto the carbon black surface.EMPEROR 2000 carbon black is Cabot’s newest pigment black and is produced using an innovative chemical modification technology. This patented technology allows specific functional groups to be grafted onto the surface of the carbon black particle. F or EMPEROR 2000, the function of the attached groups is twofold: first, it helps to anchor adsorbed surfactants and dispersants that otherwise can float free of the carbon black surface and affect coating performance, and secondly, it improves the ease of dispersion and dispersion stability of the carbon black yielding the desired coating jetness with a strong blue undertone. The new technology is illustrated here.Conventional Commercial Carbon Black After-treatmentsCabot's New Surface Treatment (Chemical Modification)5■ Performance Comparison StudyCabot’s MONARCH 1300, 1400 & 1500, and EMPEROR 2000 carbonblacks were first tested in high-solids automotive topcoat acrylic formu-las for this comparison study. An in-house Cabot application develop-ment group developed the formulations based on high-solids acrylicpolyol resin suitable for one-component thermoset coatings. The formu-lation also contained a reactive melamine formaldehyde crosslinker. Thecarbon black dispersing agent used was a solution of high molecularweight blocked copolymer with cationic activity. A mixture of aromaticand ester solvents was used to help control the viscosity of the coatingformulation.The above carbon blacks were evaluated also in water-borne acryliclatex automotive base-coat formulas. This formulation also was devel-oped by our in-house applications development group. In addition tothe acrylic resin, the formulation consisted of a melamine formaldehyderesin as a crosslinker, a non-ionic low molecular weight dispersing agentand, for film formation, a mixture of propylene glycol n-butyl ether anddipropylene glycol n-butyl ether solvents.The formulations, performance properties and test results of both thehigh-solids acrylic and water-borne acrylic enamels are described in thesections A and B below. Additionally, accelerated weathering results aregiven for the water-borne acrylic enamel.High-Solids Acrylic EnamelMillbase Formulation:Butyl acetate, DisperBYK 161 and carbon black were premixed usinggood agitation to wet-out the pigment. Setalux 27.1597 was thenadded under good agitation. Once the resin was incorporated, the mill-base was premixed at 4,000 RPM for 20 minutes. The millbase wasthen charged to a horizontal mill along with 0.6-0.8 mm zirconium sili-cate media. The millbase was ground at 10m/sec. tip-speed to achieveparticle sizes of <5 microns on the Hegman Scale.6Letdown Masterbatch Formulation:The following materials were mixed together under good agitation.Finish masstone formulation:To prepare the finish formulation, 10 parts of the millbase and 50 parts ofthe letdown masterbatch were added together using good agitation forapproximately 20 minutes before application.Finish Masstone Formulation Constants:Carbon back loading in millbase (%) 10Dispersant/Carbon black solids ratio 0.975/1.00Pigment/Binder solids ratio 0.028/1.00Crosslinker %, solids 25Carbon black loading on total formulation (%) 1.67Performance Properties of High-Solids Acrylic EnamelPaint viscosities were adjusted with Aromatic 100 to 30 seconds with aNo.4 F ord cup. The paints were then sprayed out with a 665SX66SDnozzle using air assist applied at 35 psi. The final coating film thicknessand curing schedule were as follows:Monocoat Application:MasstoneAfter curing, the high-color pigment black panels were measured forcolor development and gloss. Color measurements were determinedusing a Hunter Labscan colorimeter using (45,0) geometry, CIELabequation, D-65 illuminant, and 10 degree observer. Gloss measurementswere determined using BYK Gardner Glossmeter. Similar gloss readingswere obtained for each of the carbon black formulations. The colordevelopment results are shown in the following table and in the chartsbelow. The results illustrate the increased jetness achieved when usingMONARCH 1500 and especially EMPEROR 2000 carbon blacks. Both L*values and Mc values are improved over those of MONARCH 1300 &1400 carbon blacks.781.41.210.80.60.40.2-0.2-0.4300275250225200Masstone9Finish masstone formulation:To prepare the finish formulation, 20 parts of the millbase and 182.9 partsof the letdown masterbatch were added together using good agitation forapproximately 20 minutes before application.Finish tinting formulation (10/90):To prepare the finish tinting formulation, 5 parts of the millbase concentrateformulation and 45 parts of the finish white base (TrueValue Weatherall100% Acrylic Latex GHP-9 White) were add together under goodagitation for approximately 20 minutes before application.Formulation Constants:Carbon back loading in millbase (%) 13.5Dispersant/Carbon black solids ratio 0.25/1.00Total solids by weight in final letdown (%) 35.0Pigment/Binder solids ratio 0.04/1.00Crosslinker %, solids 15Carbon black loading on total formulation (%) 1.33Performance Properties of Water-borne Acrylic LatexEnamelPaints were sprayed out using a 665SX66SD nozzle with air assistapplied at 35 psi. The final coating film thickness and curing schedulewas as follows:Monocoat Application:After curing, high-color pigment black panels were measured for colordevelopment and gloss. Color measurements were determined using aHunter Labscan colorimeter using (45,0) geometry, CIELab equation,D-65 illuminant, and 10 degree observer. Gloss measurements weredetermined using BYK Gardner Glossmeter. Similar gloss readings wereobtained for each of the carbon black formulations. The color develop-ment results are shown in the following table and in the charts below.The results illustrate the increased jetness achieved when usingMONARCH 1500 and especially EMPEROR 2000 carbon blacks. BothL* values and Mc values are improved over those of MONARCH 1300& 1400 carbon blacks. F urther, EMPEROR 2000 exhibits better bluetone than all other carbon blacks used in this formulation.1011Masstone21.510.50-0.5-130027525022520012TintingAccelerated weathering was performed with a QUV tester. The test wasbased on the ASTM 4587-91 method using UV-B fluorescent lamps. The tester was set at 4 light cycles followed by 4 condensation cycles. After 1000 hours of exposure, the panels were removed for evaluation. Weathering results are shown in the table below. Similar results are obtained for MONARCH 1300, 1400 and 1500, while EMPEROR 2000showed improved resistance to whitening and color retention.454035302520151050-5III. Formulation Guide■ The following modifiers were also used in our evaluationsof carbon black color performance:Dispersion AgentSince high-color blacks consist of small particle sizes, high surface areas,and high structures, dispersion and stability are much more difficult toachieve than with other carbon black grades. Dispersion agents arehighly recommended for dispersion and stability of high-color blacks incoating systems.The following dispersion agents and usage levels were used in ourevaluation:For Solvent-Borne Systems:Or a combination of Solsperse 32500 (0.50 - 0.60) and Solsperse 5000(0.10 - 0.20 parts per 1 part carbon black) may be used.For Water-Borne Systems:SurfactantSurfactant addition is also required in order to increase the dispersibilityand stability of water-borne formulations. The following surfactants wereused in our study of the water-borne acrylic latex system:13Leveling AgentSince substrates can be difficult to wet-out, especially withwater-borne coatings, wetting agents are required for waterborneformulations so that good, continuous film formation maybe achieved. Wetting (or leveling) agents can also eliminate filmdefects, such as orange peel, cratering or shrinkage. Thefollowing leveling agents were used in our comparison study:For Solvent-Borne Systems:For Water-Borne Systems:DefoamerF oaming in water-borne formulations is extremely difficult to control.Adding defoamer is a must to minimize the foaming effect in thesesystems. The following defoamers were used in our evaluation of water-borne acrylic latex systems:Dispersion ProcessOptimum dispersion of carbon black is necessary in order to achievesuperior color development in coatings formulations. All agglomeratesmust be broken down to primary aggregates to realize the full potentialof the optically functional units. Any degree of dispersion less than theoptimum will result in poorer jetness. The energy required for optimumdispersion must be supplied in the form of some type of media mill.14Definitions:DFT = Dry Film ThicknessL* is a measure of the lightness/darkness (lower numbers indicate darker color)b*is a measure of blue/yellow (lower numbers indicate bluer color)a* is a measure of red/green (lower numbers indicate a greener color) Mc: Mc is the Color Dependent Black Value and was developed by K. Lippok-Lohmer (Farbe + Lack, (1986), vol. 92, p. 1024). It is defined by the equation Mc = 100[log(Xn/X) - log (Zn/Z) + log (Yn/Y)], where X, Y, and Z are measured tristimulus values. The Mc value correlates well with the human perception of increased jetness. As the Mc value increases, the jetness of the masstone increases.Raw Material Suppliers*Setalux™ 27.1597 Akzo Nobel800.292.2308Solsperse® 5000 AveciaSolsperse® 32500 704.672.9920BYK® 024 BYK-ChemieBYK® 346 203.265.2086BYK® 348 BYK® 358DisperBYK® 161DisperBYK® 180DisperBYK® 2000Triton™ X-100 Dow ChemicalAMP-95™ 800.447.4369D-1441 Baker Petrolite781.335.6668Dehydran® 1293 CognisDehydran® 1620 215.628.1000Nopco® NS-1 Cymel® 202 Cytec Industries, Inc.Cymel® 373 847.652.6013EFKA® 3570 EFKA Additives440.943.4200Arcosolve™ PnB LyondellArcosolve™ DPnB 888-777-0232NeoCryl™ XK-100 NeoResins (Avecia)978.658.6600TEGO Dispers™ 760W TEGO Chemie800.446.1809* All raw materials used were North American versions.150908Europe +32 16 39 24 00+32 16 39 24 44North America )800 526 7591 Latin America+55 11 2144 6400(Middle East/Africa+971 4 8871 800Pacific/Asia+60 3 2096 3888China+86 21 5175 8800+86 21 6434 5532JapanA d d r e s s e s。

炭黑msds

炭黑msds
呼吸系统防护
如果工作地通风不良,需配备合适的呼吸保护设备。
眼睛防护
使用眼部和面部防护:有两侧防护的安全眼镜。
身体防护
穿着合适的防护服,每天清洗服装。污染的工作服不允许带出厂。
手防护
戴手套防止手弄脏,反复接触可能造成皮肤干燥或开裂。在处理本产品前可用油膏护手。
其他防护
用良好工业卫生及安全实践相一致的处理/操作方法进行日常的操作。附近可设置京戏急洗眼和冲洗设备。
强氧化剂
分解产物
聚合危害
避免接触的条件
11.毒理学资料
急性毒性
LD50:致癌。 IARC评价:3组,未分类物质;人类资料不足;动物证据不充分 IDLH:1750mg/m3 OSHA表Z—1空气污染物:以炭黑提取物计 NIOSH标准文件:NIOSH 78—204LC50:
其他
12.生态学资料
其他有害作用
燃烧危险
4.急救措施
皮肤接触
用肥皂和水清洗,如果皮肤发红,水肿,发痒或灼伤。就医。
眼睛接触
用大量的水立即冲洗眼睛15分钟。如果发红,水肿,发痒,灼伤或视觉模糊就医。
吸入
不必催吐。如果清醒的,饮几杯水。不要通过嘴给不清醒的人任何东西。
食入
5.消防措施
危险特性
燃烧会产生刺激烟雾。本品不溶于水并浮于水。如可能,除去漂浮物,原因是漂浮物构成流动火灾的危险。
消除方法
7.操作处置与储存
操作
注意事项
储存
注意事项
避免接触禁忌物,严禁烟火。须贴“自燃”标签,严禁航空、铁路运输。 ERG指南:133 ERG指南分类:易燃固体
8.接触控制/个体防护
最高容许浓度
4mg/m3TWA 8mg/m3STEL

卡博特炭黑

卡博特炭黑

卡博特炭黑德固赛炭黑:普通色素槽法炭黑:特黑4, 特黑4a, printex u, printex v, printex 140u, printex 140vprintex u 和ppintex v 、140v中等黑度的主色和调色碳黑,用于涂料和油墨,印刷和复印油墨、复写纸、打印色带、塑料和合成纤维。

德固赛炭黑:普通色素槽法炭黑:特黑4, 特黑4a, printex u, printex v, printex 140u, printex 140v,50L,900Lprintex u 和ppintex v 、140v中等黑度的主色和调色碳黑,用于涂料和油墨,印刷和复印油墨、复写纸、打印色带、塑料和合成纤维。

分散性能好,光泽度佳,耐高温。

环保,通过SGS认证。

卡博特炭黑M1400 BP1400 M1300 BP1300 M1000 BP1000 M900 BP900 M880 BP880 M800 BP800 XC-72 XC-72R M-L BP-L R660R R660 R400R R400M-H R330R R330 E-415 M430 BP430 D430R250R R250 R99R R99 M280 BP280 M120 BP120 M1100 M700 R300 R N115 E-12 E-8 ES90B M1500 XC-68 XC-200XC-305 N330 N774 N110 N375 N220 N347 N326 N762 N134 N66 0 N550 N717 N650 N234 N683 N772 SP5000SP6000 N339 N375 SP5000A N121 N539 SP6400 V1463BP2000 M570 BP470橡胶用炭黑N115,N220,N234,N330,N550,N660,N774,SP5000等涂料用炭黑M1300,M1100,M900,M-L,R660R,R400R等油墨用炭黑DL-430-,M-E,M-H,R400R,R99R,VXC72,VXC72R等塑料用炭黑DL-8,DL-3,DL430,V9A32,M717,BP800,BP900,BP2,BP7,BP280等导电炭黑 VXC305,VXC605,VXC72,VXC500,BP2000等原包装,高浓度,易分散韩国KCB 进口:HI BLACK 50L\HI BLACK 900L 高黑度 蓝色相 分散性好通用于塑料行业包括:LDPE 、HDPE 、PP 、EC 、PS 、SAN 、PMMA 、PU 及软\硬质PVC 塑料着色用色素炭黑色母粒吹膜母粒推荐使用 HIBLACK 30L 易分散的中色素碳黑,用于水性柔版印刷油墨,塑料和色母生产。

卡博特 碳黑技术参数

卡博特  碳黑技术参数
粒状
高色素
MONARCH 1400﹡
BLACK PEARLS 1400﹡
卓越的黑度,在溶剂性及水性涂料中有良好稳定性
560
90
82
13
114
336。4
432.5
MONARCH 1300﹡
BLACK PEARLS 1300﹡
560
100
91
13
114
320.4
400.5
MONARCH 1100
BLACK PEARLS 1100
M800
M L
涂料、油墨:极佳分散性和稳定性,黑度好导电性最低,适用中高档工业涂料、UV油墨
V9A32
塑料、涂料:具有高着色力、良好的颜色。
普通色调
M570/E570
塑料、涂料、油墨:具有良好黑度、着色力.
MH
塑料、油墨、涂料:具有高着色力和低黏度。油墨、涂料:具有良好的流动性、分散性和光泽的油墨。用于涂料中有好的稳定性和着色力。
200
122
117
18
148
144.2
304。4
导电炭黑
-
BLACK PEARLS 2000
添加量低,导电性高
1500
-
330
12
164

144。2
VULCAN XC72R
VULCAN XC72
可用于导电和防静电涂料
254
192
174
30
87
96.1
256。3
普通色素

VULCAN9A32
提供卓越的UV防护,黑度好
R660R
R400R
R330R
R250R
油墨:在高油墨填充情况下能保持低粘度、极佳的光泽和强蓝相.

卡博特炭黑

卡博特炭黑

卡博特炭黑德固赛炭黑:普通色素槽法炭黑:特黑4, 特黑4a, printex u, printex v, printex 140u, printex 140vprintex u 和ppintex v 、140v中等黑度的主色和调色碳黑,用于涂料和油墨,印刷和复印油墨、复写纸、打印色带、塑料和合成纤维。

德固赛炭黑:普通色素槽法炭黑:特黑4, 特黑4a, printex u, printex v, printex 140u, printex 140v,50L,900L printex u 和ppintex v 、140v中等黑度的主色和调色碳黑,用于涂料和油墨,印刷和复印油墨、复写纸、打印色带、塑料和合成纤维。

分散性能好,光泽度佳,耐高温。

环保,通过SGS认证。

卡博特炭黑M1400 BP1400 M1300BP1300 M1000 BP1000 M900 BP900 M880 BP880 M800 BP800 XC-72 XC-72R M-L BP-L R660R R660 R400R R400 M-H R330RR330 E-415 M430 BP430 D430R250R R250 R99RR99 M280 BP280 M120 BP120 M1100 M700 R300R N115 E-12 E-8 ES90B M1500 XC-68 XC-200XC-305 N330 N774 N110 N375 N220 N347 N326 N762 N134 N66 0 N550 N717 N650 N234 N683 N772 SP5000SP6000 N339 N375 SP5000A N121 N539 SP6400 V1463BP2000 M570 BP470橡胶用炭黑N115,N220,N234,N330,N550,N660,N774,SP5000等涂料用炭黑M1300,M1100,M900,M-L,R660R,R400R等油墨用炭黑DL-430-,M-E,M-H,R400R,R99R,VXC72,VXC72R等塑料用炭黑DL-8,DL-3,DL430,V9A32,M717,BP800,BP900,BP2,BP7,BP280等导电炭黑VXC305,VXC605,VXC72,VXC500,BP2000等原包装,高浓度,易分散韩国KCB进口:HI BLACK 50L\HI BLACK 900L高黑度蓝色相分散性好通用于塑料行业包括:LDPE、HDPE、PP、EC、PS、SAN、PMMA、PU及软\硬质PVC 塑料着色用色素炭黑色母粒吹膜母粒推荐使用 HIBLACK 30L 易分散的中色素碳黑,用于水性柔版印刷油墨,塑料和色母生产。

炭黑 MSDS

炭黑 MSDS
材料安全数据表
1.化学品及企业信息
化学品中文名称
炭黑
编 码
111
俗名/商品名
炭黑
生效日期
化学品英文名称
calcium hypochlorite
企 业 名 称
上海卡博特化工有限公司
企业应急电话
地 址
邮 编
国家应急电话
传真
电子邮件地址
2.成分/组成信息
主要成分
■纯品 □混合物
危害成分
浓 度
CASNo.
1333-86-4
填表时间
2010-07-27
修改说明
重新编码
有害燃烧物
一氧化碳,二氧化碳硫的氧化物
灭火方法
及灭火剂
注意事项
使用与所在地环境情况相适合的灭火方法。如果用水,建议用喷雾水。不能用强力的直流水,直流水会分散火源。
粉尘爆炸的风险
粉尘与空气混合可能形成爆炸混合物,禁止使用掸,拂或者高压空气吹扫粉尘,避免形成粉尘团。
6.泄露应急处理
应急处理
须穿戴防护用具进入现场;排除一切火情隐患;用简便、安全的方法收集粉尘于密闭的容器内,待处理。 环境信息: 应急计划和社区知情权法:款313表R,最低应报告浓度 0.1%。
呼吸系统防护
如果工作地通风不良,需配备合适的呼吸保护设备。
眼睛防护
使用眼部和面部防护:有两侧防护的安全眼镜。
身体防护
穿着合适的防护服,每天清洗服装。污染的工作服不允许带出厂。
手防护
戴手套防止手弄脏,反复接触可能造成皮肤干燥或开裂。在处理本产品前可用油膏护手。
其他防护
用良好工业卫生及安全实践相一致的处理/操作方法进行日常的操作。附近可设置京戏急洗眼和冲洗设备。
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200
122
117
18
148
144.2
304.4
导电炭黑

BLACK PEARLS 2000
添加量低,导电性高
1500

330
12
164

144.2
VULCAN XC72R
VULCAN XC72
可用于导电和防静电涂料
254
192
174
30
87
96.1
256.3
普通色素

VULCAN9A32
提供卓越的UV防护,黑度好
140
114
19
120
352.4
MOGUL L﹡
BLACK PEARLS L﹡
在涂料中有极佳的分散性和稳定性。黑度好。导电性最低
138
62
60
24
130
240.3
496.6
REGAL 660R
REGAl 660
着色力高,粘度低
112
65
60
24
137
240.3
480.6

BLACK PEARLS 570
粒状
高色素
MONARCH 1400﹡
BLACK PEARLS 1400﹡
卓越的黑度,在溶剂性及水性涂料中有良好稳定性
560
90
82
13
114
336.4
432.5
MONARCH 1300﹡
BLACK PEARLS 1300﹡
560
100
91
13
114
320.4
400.5
MONARCH 1100
BLACK PEARLS 1100
电线电缆料
M717
良好的黑度,易分散,低吸油值,吸附性好,蓝色相。
电缆半导电屏蔽料
可选用导电炭黑:VXC72 VXC605 VXC305 BP-2 BP-7
卡博特碳黑900
颜料黑
用途
N2比表面积
DBP吸油值(cc/100g)
粒径
着色力ASTM
密度(g/l)
色度
粉状
粒状m2/gຫໍສະໝຸດ 粉状粒状(nm)
(%)
粉状
炭黑种类
牌号
用途和特性
导电和抗紫外光类
BP2000
吸油值:330M2/g,粒径:12nm,着色力:164塑料、涂料:在低炭黑填充情况下也能保持物理性能的高导电性炭黑。
VXC72
吸油值:174M2/g,粒径:30nm,着色力:87 塑料、涂料:用于导电和防静电的一种工业标准。
VXC605
VXC305
BP3200
448.5
ELFTEX 8

卓越的分散性和稳定性,中等着色力和蓝相
85
99
27
92
176.2
通用性
ELFTEX 12
卓越的分散性和稳定性,着色力中等,呈蓝相。推荐替代灯黑
43
95
37
80
160.2
BLACK PEARLS 280
容易分散,呈蓝相,可替代灯黑
42
121
45
60
352.4
BLACK PEARLS 130
黑度高,PH值呈中性
240
65
50
14
146
240.3
464.5
MONARCH 1000﹡
BLACK PEARLS 1000﹡
黑度高
343
110
105
16
146
208.2
384.4
中色素
MONARCH 900
BLACK PEARLS 900
黑度中等偏高
230
70
64
15
151
224.3
432.5
MONARCH 880
通用型号炭黑
110
114
24
114
352.4
REGAL 400R﹡
REGAL 400﹡
在涂料中具有良好的稳定性和着色力
96
71
69
25
115
224.3
480.6
REGAL 330R﹡
REGAL 330
良好的分散性,黑度和着色力
94
65
70
25
122
256.3
448.5
REGAL 300R

80
85
27
塑料:高质量的极纯碳黑,分散性好、高着色力、耐紫外光和抗静电等特性。
高色调类
S90B
涂料:在溶剂涂料中具有极高的黑度。
M1300
涂料:在溶剂和水性涂料中良好的黑度和高的黑度。
中色调类
M900
塑料、涂料:塑料、磁漆和喷漆用的中高色素。适用于皮革色浆,黑度卓越。
M880
塑料、涂料:具有良好分散性的中级黑度。
M800
M L
涂料、油墨:极佳分散性和稳定性,黑度好导电性最低,适用中高档工业涂料、UV油墨
V9A32
塑料、涂料:具有高着色力、良好的颜色。
普通色调
M570/E570
塑料、涂料、油墨:具有良好黑度、着色力。
MH
塑料、油墨、涂料:具有高着色力和低黏度。油墨、涂料:具有良好的流动性、分散性和光泽的油墨。用于涂料中有好的稳定性和着色力。
R660R
R400R
R330R
R250R
油墨:在高油墨填充情况下能保持低粘度、极佳的光泽和强蓝相。
R99R
油墨:油墨用的一般碳黑。提供好的分散性和蓝相,稳定性高。
M430
涂料、油墨:良好的黑度,易分散。
M470
水墨:易分散、较强着色力、较纯净。
DL430
涂料、油墨、色浆:具有易分散、低杂质、色泽均匀。
粒子大,容易分散,可添加量高。蓝相佳
25
70
75
54
496.6
MONARCH 120
BLACK PEARLS 120
25
72
64
75
58
240.3
512.6
BLACK PEARLS 880
黑度中等,880和800黑度接近。880较易分散。800的黑度比700高、700较易分散
220
112
105
16
153
128.1
336.4
MONARCH 800
BLACK PEARLS 800
210
74
68
17
148
240.3
432.5
MONARCH 700
BLACK PEARLS 700
113
192.2

BLACK PEARLS 460
高结构,分散容易,着色力好,呈蓝相
84
102
29
100
368.5

BLACK PEARLS 430
分散性好,呈蓝相。对涂料应用而言是平衡了蓝相和分散性的通用炭黑品种
80
72
27
109
464.5
REGAL 99R
REGAL 99I
46
65
63
38
97
256.3
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